Showing posts with label hair. Show all posts
Showing posts with label hair. Show all posts

Tuesday, May 18, 2010

Hair mats & booms & Oil spill


Gulf of Mexico Dead Zone, caused by Mississippi River effluents of Nitrates, Phosphates, Sulfates, from rural agricultural run-off and urban sewers producing eutrophication, overgrowth of algae blooms and reduced oxygen.
dead zone of Gulf

Below: massive crude oil spill in Gulf from offshore rig explosion, ongoing



article

Must see this video

Hair & fur sponge up oil in water, a lb. of hair retains a quart of oil from water.

video: how to make a hair boom

The ottimat and hair boom use the principle of high surface area of hair/fur adsorbs oil but not water. Synthetic product mats absorb the oil and can't be reused, while hair mats can be wrung out into oil barrels and reused 100 times.

volunteers needed at Florida Keys to protect mangroves

"Locks for Keys" donate locks of hair and pet fur to save the coastal regions of the Florida Keys and other island reefs from the second worst oil spill ever, the Deepwater Gulf spill, which is expected to be pulled into the Gulf loop current towards the Keys and Florida coastal mangroves.
mangroves

http://response.restoration.noaa.gov/topic_subtopic_entry.php?RECORD_KEY(entry_subtopic_topic)=entry_id,subtopic_id,topic_id&entry_id(entry_subtopic_topic)=8&subtopic_id(entry_subtopic_topic)=13&topic_id(entry_subtopic_topic)=1

If you want to construct a building you must file an Environmental Impact Statement, but British Petroleum did not file an EIS for their huge deepwater oil project, and they bypassed numerous safety measures.

Perhaps its time for another tea party? What say you, oil addicts? Care for a spot of petrol?

Friday, April 30, 2010

Sloths & jitterbugging heart & earth & dive foraging

marine sloth
outhouse sloth

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layers of the heart
rotary venticular blood flow & torsion of heart muscle similar to VE jitterbug transform, with opposing heart muscle groups (123 45 678) :
article
Note pic 14, similar to tao/dau symbol or rolling surf wave, and general similar form of heart to a marine snail, which filter feeds and breathes by pumping seawater through gills and gut tissue.

"Pettigrew14 performed careful dissection of the heart of mammals and man, demonstrating 7 muscle layers. The three outer layers spiral with an increasing angle from the perpendicular, while the fourth layer is horizontal. The three inner layers spiral in the opposite direction, increasing toward the vertical. The layers are arranged in opposition so that 1 opposes 7, 2 opposes 6, and 3 opposes 5, with the fourth layer being a connecting layer (tensional frame?)."

jitterbug

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6,000 year old human artifacts contains indications of 3/4 protein from marine diet

Quantitative evaluation of marine protein contribution in ancient diets
based on nitrogen isotope ratios of individual amino acids in bone collagen:
An investigation at the Kitakogane Jomon site
YI Naito, NV Honch, Y Chikaraishi, N Ohkouchi, M Yoneda 2010 AJPA

Nitrogen stable isotopes analysis of individual bone collagen amino acids
was applied to archeological samples as a new tool for assessing the
composition of ancient human diets and calibrating radiocarbon dates. We
used this technique to investigate human and faunal samples from the
Kitakogane shell midden in Hokkaido, Japan (5,300-6,000 cal BP). Using
compound-specific nitrogen isotope analysis of individual amino acids, we
aimed to estimate i) the quantitative contribution of marine and terrestrial
protein to the human diet, and ii) the mean trophic level (TL) from which
dietary protein was derived from marine ecosystems. Data were interpreted
with reference to the amino acid trophic level (TLAA) model, which uses
empirical amino acid 15N from modern marine fauna to construct mathematical
equations that predict the trophic position of organisms. The TLAA model
produced realistic TL estimates for the Kitakogane marine animals. However,
this model was not appropriate for the interpretation of human amino acid
15N, as dietary protein is derived from both marine and terrestrial
environments. Hence, we developed a series of relevant equations that
considered the consumption of dietary resources from both ecosystems. Using
these equations, the mean percentage of marine protein in the Kitakogane
human diet was estimated to be 74%.
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Diaphragmatic contractions pump oxygen to the brain during hypoxia, increasing the cerebral blood flow volume. Involuntary breathing movements improve cerebral o... [J Appl Physiol. 2009] - PubMed result

We investigated whether the involuntary breathing movements (IBM) during the struggle phase of breath holding, together with peripheral vasoconstriction and progressive hypercapnia, have a positive effect in maintaining cerebral blood volume. The central hemodynamics, arterial oxygen saturation, brain regional oxyhemoglobin (bHbO(2)), deoxyhemoglobin, and total hemoglobin changes and IBM were monitored during maximal dry breath holds in eight elite divers. The frequency of IBM increased (by approximately 100%), and their duration decreased ( approximately 30%), toward the end of the struggle phase, whereas the amplitude was unchanged (compared with the beginning of the struggle phase). In all subjects, a consistent increase in brain regional deoxyhemoglobin and total hemoglobin was also found during struggle phase, whereas bHbO(2) changed biphasically: it initially increased until the middle of the struggle phase, with the subsequent relative decline at the end of the breath hold. Mean arterial pressure was elevated during the struggle phase, although there was no further rise in the peripheral resistance, suggesting unchanged peripheral vasoconstriction and implying the beneficial influence of the IBM on the cardiac output recovery (primarily by restoration of the stroke volume). The IBM-induced short-lasting, sudden increases in mean arterial pressure were followed by similar oscillations in bHbO(2). These results suggest that an increase in the cerebral blood volume observed during the struggle phase of dry apnea is most likely caused by the IBM at the time of the hypercapnia-induced cerebral vasodilatation and peripheral vasoconstriction.
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Levant 800ka - (Hula/Jordan, fire, food prep) African Rift drought
doi 10.1016/j.jhevol.2010.03.007
The paleoclimate of the Eastern Mediterranean during the transition from
early to mid Pleistocene (900 to 700 ka) based on marine and non-marine
records: an integrated overview
Ahuva Almogi-Labin 2010 JHE

Climate change is frequently considered an important driver of hominin
evolution and dispersal patterns. The role of climate change in the last
phase (900­700 ka) of the Middle Pleistocene Transition (MPT) in the Levant
and northeast Africa was examined, using marine and non-marine records.
During the MPT the global climate system shifted from a linear 41 k.yr. into
a highly non-linear 100 k.yr. system, considerably changing its global
modulation. Northeast Africa aridity further intensified around 950 ka, as
indicated by a sharp increase in dust flux, and a jump to overall higher
levels thereafter, coinciding with a lack of sapropels in the deep eastern
Mediterranean (930­690 ka). The increased dust flux centering at 800 ka
corresponds to the minima in 400 k.yr. eccentricity, a minima in 65 °N solar
forcing and in the weakest African monsoon precession periodicity. This
resulted in expansion of hyper-arid conditions across North Africa, the
lowest lake levels in eastern Africa and the lowest rainfall in the Nile
River headwaters. In the eastern Mediterranean an increasing continental
signature is seen in glacial stages 22 (880 ka) and 20 (800 ka). Lower
arboreal pollen values also indicate arid conditions during these glacial
stages. The southern and eastern parts of the Negev Desert, unlike its
northern part, were hyper-arid during the MPT, making them highly
unsustainable. The fluctuations in the stands of Lake Amora follow global
climate variability but were more moderate than those of its last glacial
Lake Lisan successor. In the northern Jordan-Valley Hula Lake, frequent
fluctuations in lake level coincide with both global climate changes and
minor changes in water salinity varying from fresh to oligohaline. It
appears therefore that the most pronounced and widespread deterioration in
climate occurred in northeast Africa from 900 to 700 ka, whereas in the
Levant the corresponding climatic changes were more moderate.
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Warmbloodedness & respiration in dinosaurs and mammoths

A Clarke & H-O Poertner 2010 Biol.Rev.PRESS
Temperature, metabolic power, and the evolution of endothermy

Endothermy has evolved at least twice, in the precursors to modern mammals
and birds. The most widely accepted explanation for the evolution of
endothermy has been selection for enhanced aerobic capacity. We review this
hypothesis in the light of advances in our understanding of ATP generation
by mitochondria and muscle performance. Together with the development of
isotope-based techniques for the measurement of metabolic rate in
free-ranging vertebrates, these have confirmed the importance of aerobic
scope in the evolution of endothermy: absolute aerobic scope, ATP generation
by mitochondria, and muscle power output are all strongly
temperature-dependent, indicating that there would have been significant
improvement in whole-organism locomotor ability with a warmer body. New data
on mitochondrial ATP generation and proton leak suggest that the thermal
physiology of mitochondria may differ between organisms of contrasting
ecology and thermal flexibility. Together with recent biophysical modelling,
this strengthens the long-held view that endothermy originated in smaller,
active eurythermal ectotherms living in a cool but variable thermal
environment. We propose that rather than being a secondary consequence of
the evolution of an enhanced aerobic scope, a warmer body was the means by
which that enhanced aerobic scope was achieved. This modified hypothesis
requires that the rise in metabolic rate, and the insulation necessary to
retain metabolic heat, arose early in the lineages leading to birds and
mammals. Large dinosaurs were warm, but were not endotherms, and the
metabolic status of pterosaurs remains unresolved.

KL Campbell cs 2010 Nature Genetics PRESS
Substitutions in woolly mammoth hemoglobin confer biochemical properties
adaptive for cold tolerance

We have genetically retrieved, resurrected and performed detailed
structure-function analyses on authentic woolly mammoth hemoglobin to reveal
for the first time both the evolutionary origins and the structural
underpinnings of a key adaptive physiochemical trait in an extinct species.
Hemoglobin binds and carries O2; however, its ability to offload O2 to
respiring cells is hampered at low temperatures, as heme deoxygenation is
inherently endothermic (that is, hemoglobin-O2 affinity increases as
temperature decreases). We identify amino acid substitutions with large
phenotypic effect on the chimeric ¦Â/¦Ä-globin subunit of mammoth
hemoglobin
that provide a unique solution to this problem and thereby minimize
energetically costly heat loss. This biochemical specialization may have
been involved in the exploitation of high-latitude environments by this
African-derived elephantid lineage during the Pleistocene period. This
powerful new approach to directly analyze the genetic and structural basis
of physiological adaptations in an extinct species adds an important new
dimension to the study of natural selection.

Wednesday, November 18, 2009

Note to a colleague re. the ARC

A fine diving spot: Deans Blue Hole, Bahamas
Divers paradise
Myostatin protein regulates muscle build, effect on myoglobin, brain, jaws?
myostatin vs follistatin
nose nerves, inf conchae, PSR
Physis: a marine journal, CIEE in Bonaire
Physis
Blue planet divers site, diver list
Blue Planet Divers
Shoal/slow/shallow, sandbar, reef, wave patterns at shallows
Shoal, lagoon, Ayre/lake/laut/loch
Ayre

The derivation of the word ayre is from Old Norse. It refers to a shallow bay/lake being separate from the sea by a sandspit. This may partly cut off a sheltered stretch of water from the sea to form a shallow freshwater loch.[2] This word is still in use for the particular landform in the Northern Isles of Scotland.

In Malay/Indonesian, ayer or air means water, laut means lake or sea.


The post-coastal Hadza Hunter/Gatherer camps
Hadza

Isotope markers in bone: Seal (high) vs mollusk (low) in human diet, iris bulbs, at South African coastal Holocene sites
South Africa coastal hunting and gathering diet
Through chemical analysis of bone collagen from 69 skeletons dated from 4,500 to 2,000 years before present, what foods were you able to determine that Holocene populations in Robberg/Plettenberg and the Matjes River Rock Shelter were consuming?
In this area, people were able to choose from a long menu of foods including venison and the meat of other wild animals, berries, edible roots and corms, particularly of plants in the iris family, seafood including shellfish, fish, seabirds, stranded dolphins or whales, and much else. All these items have been identified in excavated food remains. It is, however, harder to know their relative importance. Neither conventional archaeological techniques nor isotope analysis (for different reasons) permit precise quantification of individual foods, but it is clear from the high ratios of 15N/14N in their bones that people buried at Robberg/ Plettenberg Bay ate unusually large quantities of high trophic level [animals high on the food chain] marine foods, very likely the meat of seals and large predatory fish caught in the deep waters surrounding the Robberg Peninsula. Bone tissue accumulates over many years, so this was a long-term dietary pattern. People buried at Matjes River Rock Shelter, on the other hand, ate much more mixed diets, with more terrestrial food or low trophic level [low on the food chain] marine foods, such as shellfish.

Why do you think their diets were different? Why is this finding important or surprising?
Today, there is a seal colony on the Robberg Peninsula, and it was probably there in the past as well. (This inference is based on the age distribution of seals that ancient people butchered and ate.) Mainland seal colonies are relatively rare (most colonies are on offshore islands, which offer protection from predators), so this would have been a special opportunity for hunter-gatherers--a type of living larder. In addition, the peninsula juts out into deep water, allowing access to fish not usually caught by shore-based anglers. People who lived at Robberg/Plettenberg Bay made the most of their good fortune, while people who lived at Matjes River Rock Shelter didn't have these advantages. What's surprising about it is the degree of specialisation in local resources, from which we can infer that these people were living within relatively small areas, rather than trekking regularly across large areas of landscape. This is unexpected, given the very mobile lifestyle of most recent southern African hunter-gatherers.

How does ethnographic research contribute to the analysis of Stone Age societies in South Africa?
Later Stone Age societies were the ancestors of communities who continued to live a foraging lifestyle, in the Kalahari and elsewhere, into the nineteenth and twentieth centuries. Studies of Kalahari foragers have been of enormous importance in anthropology in recent decades. In some respects, there are clear similarities between recent and ancient southern African hunter-gatherers, and the ethnographies have provided valuable insights into earlier societies. For example, aspects of belief systems recorded in the Kalahari in the twentieth century are also expressed in rock paintings that may be several thousand years old.

What does the painted seal scapula found in the cave at Knysna tell us about the hunter-gatherer society that created it?
This is a unique artifact--it's the only painted bone we have from South Africa, so interpretation must be cautious. Paintings on the walls of caves and rock shelters, however, expressed aspects of people's belief systems, including ideas about relationships between animals and humans in this world and in the spirit world. The animals depicted are usually larger species charged with symbolic power. The choice of a seal scapula and the images painted on it, of which the left-hand one, at least, looks very seal-like, hints that seals may have been important in a spiritual, as well as an economic sense.

You describe the societies as succumbing to "opportunistic sedentism." What do you mean by this, and why is it significant? How might being sedentary affect other aspects of life?
The idea is that people might initially have practiced a degree of sedentism in areas where there were rich resources, because there was no need to move. Early on, this is likely to have been a flexible pattern. When population densities rose, and there were limited options for moving, settlement patterns became more fixed--increasing our chances of recognizing them in the archaeology. Cross-culturally, more settled lifestyles require people to develop new methods of dealing with conflict, they allow storage of food or other commodities, opening up the possibility of differential access to resources and thus to social inequality. Southern Cape peoples probably didn't go very far down this road, but these are interesting questions.
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Owl monkeys, Aotus spp: nocturnal, huge tarsier/lemur-like eyes, thyroid, low metabolism, retro? Have same NeuA5 sialic acid as humans, so susceptible to human type malaria but brains small, and furry, retro? Original morph of NWM/OWM/apes, before malaria?
http://www.informaworld.com/smpp/content~db=all~content=a786187256
http://answers.yahoo.com/question/index?qid=20090427214059AAhcd0T
http://www.google.com/search?hl=en&client=firefox-a&rls=com.ubuntu:en-US:official&hs=ELV&q=owl+monkey+sialic+acid&start=10&sa=N

Java man
http://www.planetmole.org/indonesian-news/sangiran-museum-sragen-central-java.html
Prehistory of leprosy
http://johnhawks.net/weblog/reviews/genomics/disease/leprosy-monot-2009-phylogeography.html

"How long should a dive last? A simple model of foraging decisions by breath-hold divers in a patchy environment" Authors: Thompson D.; Fedak M.A.
Source: Animal Behaviour, Volume 61, Number 2, February 2001, pp. 287-296(10) Pub: Elsevier
http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6W9W-45BC899-7S&_user=10&_rdoc=1&_fmt=&_orig=search&_sort=d&_docanchor=&view=c&_acct=C000050221&_version=1&_urlVersion=0&_userid=10&md5=07b1166ce0f70cea4937c616fee8c25b

Effects of increased swimming costs on foraging behavior and efficiency of captive Steller sea lions: Evidence for behavioral plasticity in the recovery phase of dives
Journal of Experimental Marine Biology and Ecology, Volume 333, Issue 2, 13 June 2006, Pages 306-314 L.A. Cornick, S.D. Inglis, K. Willis, M. Horning
http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6T8F-4JBGKN3-3&_user=10&_coverDate=06%2F13%2F2006&_rdoc=1&_fmt=high&_orig=article&_cdi=5085&_sort=v&_docanchor=&view=c&_ct=34&_acct=C000050221&_version=1&_urlVersion=0&_userid=10&md5=05c93e6a3219bcfc6d5c4d49120eaba8

Why do macaroni penguins choose shallow body angles that result in longer descent and ascent durations? Authors: Katsufumi Sato, Jean-Benot Charrassin, Charles-André Bost, Yasuhiko Naito1
http://jeb.biologists.org/cgi/content/abstract/207/23/4057


http://www.ncbi.nlm.nih.gov/.../18987289
Repetitive paired stimulation of nasotrigeminal and peripheral chemoreceptor afferents cause progressive potentiation of the diving bradycardia.
Am J Physiol Regul Integr Comp Physiol. 2008 Nov 5;
Authors: Rozloznik M, Paton JF, Dutschmann M
The hallmarks of the mammalian diving response are protective apnea and bradycardia. These cardio-respiratory adaptations can be mimicked by stimulation the trigeminal ethmoidal nerve (EN5) and reflect oxygen conserving mechanisms during breath-hold dives. Increasing drive from peripheral chemoreceptors during sustained dives was reported to enhance the diving bradycardia. The underlying neuronal mechanisms, however, are unknown. In the present study, expression and plasticity of EN5-bradycardias after paired stimulation of the EN5 and peripheral chemoreceptors was investigated in the in situ working heart-brainstem preparation. Paired stimulations enhanced significantly the bradycardic responses compared to EN5-evoked bradycardia using sub-maxim…

http://www.immersionlibre.fr/

Bubbles and bubble rings:
bubblelogics

Prevalence and severity of external auditory exostoses in breath-hold divers
To explore the prevalence and severity of external auditory exostoses in a population of experienced breath-hold divers, and to compare these to the same parameters within surfing and self-contained underwater breathing apparatus diving populations.
http://www.ncbi.nlm.nih.gov/pubmed/18346299&dopt=Abstract

Indirect evidence for arterial chemoreceptor reflex facilitation
by face immersion in man
It is concluded that the intensification is caused by chemoreceptor reflex facilitation, due to stimulation of trigeminal receptors in the face.

The initiation and maintenance of bradycardia in a diving mammal
the muskrat, Ondatra zibethica
http://www.ncbi.nlm.nih.gov/pubmed/469759&dopt=Abstract

Extremes in human breath hold facial immersion bradycardia
Although the average human response to apneic facial immersion in ice water is a reduction in heart rate from 70 to 45 beats/min, a small proportion of healthy subjects develop diving bradycardia to less than 20 beats/min. Twenty-seven healthy subjects performed resting, seated, 30-s mid-inspiratory breath hold, facial immersion in a basin of water. Heart rate dropped more when the water temperature was 1 degree C than at 24 degrees C. Five subjects developed asymptomatic diving bradycardia to less than 15 beats/min. One physically active individual consistently had dive heart rates as low as 5.6 beats/min.

The nose is the source of many powerful reflexes, including the diving response, sneeze and sniff reflexes, and reflexes affecting autonomic nervous function to the cardiovascular system, airways in the lungs, the larynx, and other organs. The physiology of the nose 1986

The water content and glucose concentration in the whole blood of marine mammals were found to be correlated to red blood cell concentration. Because hematocrit (Hct) undergoes significant periodic shifts in these mammals during periods of apnea and/or diving, the measured values of whole blood glucose change due to alterations in Hct, independent of shifts in metabolite regulatory pathways. In contrast to humans, where red blood cell and plasma glucose concentrations are equivalent, in most other mammalian species red blood cell glucose concentration is much lower than that in plasma.
Influence of hematocrit on whole blood glucose levels: new evidence from marine mammals

Passive Flooding Of Paranasal Sinuses
And Middle Ears As A Method Of Equalisation In Extreme Breath-hold Diving
We describe a diver who, by training, is capable of allowing passive flooding of the sinuses and middle ear with (sea) water during descent, by suppressing protective (parasympathetic) reflexes during this process.
http://bjsm.bmj.com/content/early/2008/02/28/bjsm.2007.043679.abstract

Adaptations to deep breath-hold diving: respiratory and circulatory mechanics
Respiration and circulation in diving mammals are characterized by interrelated adaptations of structure, function, and behavior that are incompletely described and understood. This speculative survey touches some of them. a) Arterial blood flow can be controlled by vasoconstriction not only in arterioles but also in large arteries. The latter physiology is not well known. b) Mechanisms that might regulate and limit nitrogen uptake are not clear, although Scholander's suggestion that airspaces become gas-free during deep dives is still accepted. c) Systemic arterial retes may be able to store oxygenated blood in some diving mammals. If so, O2 in the lung might be 'skimmed off' early in a dive, leaving the N2 behind. d) Variable clusters of interdependent adaptations in diving mammals include compliant chest walls that avoid thoracic squeeze; inspiratory breath holds that maintain high lung volumes; large tidal volumes that nearly empty the lung at end-expiration...

Renal response to head-out water immersion in Korean women divers
Head-out water immersion (HOI) induces a profound diuresis and natriuresis, which may endanger the body fluid balance of breath-hold divers during prolonged diving work.
http://www.ncbi.nlm.nih.gov/pubmed/8507293&dopt=Abstract

An intact glutamatergic trigeminal pathway is essential for the cardiac response to simulated diving http://ajpregu.physiology.org/cgi/content/abstract/269/3/R669

Autonomic response to auditory stimulation
Autonomic and behavioral response to fear stimulation (sudden noise 80 dB) was studied in 12 sleeping infants at ages 8-50 weeks. The aim of the present study was to identify a possible passive defense response in infants. The response, which is widespread in birds and mammals, is characterized by apnea and bradycardia with circulatory changes as seen during the forced diving response.

Trigeminal mediation of the diving response in the muskrat
These data implicate trigeminal neurons in the medullary dorsal horn as modulators of autonomic activity, especially in the cardiorespiratory adjustments after nasal stimulation.
PMID: 1760738 [PubMed - indexed for MEDLINE]
h/t Ivo @ http://apnea.cz/media.html?Lang=EN&
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Hello (...) [slightly modified]

Do you have an opinion on these?

Chromosome 2 is unique to humans amongst hominoids, it contains the genes/SNP (Single Nucleotide Polymorphism) for:
- Photic sneeze (Dark adaptation, O2/CO2 apnea regulation?)
- Hypothyroidsm (Ecto/endo-thermic adipocity, Iodine regulation?)
- Hemochromatosis (Bone density, Iron regulation?)

I do not view that as mere coincidence.

Regarding baby backfloating in warm sunlit lagoons:
Human babies have full envelope of SC white fat (insulatory) but dorsal brown fat, which provides warmth to the only sun-shaded area that also is exposed to the coolest proximal water, infant humans (and seals) AFAIK don't shiver for warmth (not useful for hydrostatic backfloating in water). Breastfeeding human infants produce/accumulate Hydrogen (nature's most buoyant material) in the gut, and this, combined with (otherwise healthy) infant colic (GI gas entrapment while backfloating and associated crying) and abundant white SC fat, would provide sufficient buoyancy in dense warm calm saltwater to allow parental foraging without hindrance, in part resulting in loss of fur coat.

Regarding human endurance locomotion: At lagoons, dive foraging would be typical, but in between optimal lagoons, shoreline walking/wading/jogging would be typical due to hazards of rough surf, cold water, box jellyfish, sharks/crocs, etc. This would be maintained during inland seasonal migrations where diving was limited.

Regarding islanding: I think that similar to how Gibralter functioned as a gateway for EurAsian macaques into north Africa, I think the Afar-Eritrea-Yemen region functioned as a gateway to and from EurAsia. The 'bridge' linking Yemen is about 100m deep, about the depth of sea level drop at various glacial periods, (disregarding lack of data on local tectonic changes). I do not view the Danakil alps region as "the refuge", but rather as a periodic gateway, similar to Gibralter and Sinai, though it may have been a stopover with a residual population, similar to today's Barbary macaques at Gibralter.

I haven't found any evidence to contradict the dark adaptation-dive / sunlight surface exhale idea (Aquaphotic Respiratory Cycle), except that it is not used today by modern human divers. I consider it plausible that during the MSC human ancestors separated from the other apes due to being trapped in the Medit. basin, where a unique environment produced selection for a unique hominid different from the others. The low UV present, similar to today's Dead Sea, may have selected for light skin tone or less fur, and unusual eyes (exposed white eye sclerae), and plausibly the sun sneeze, and also increased availability of stone, both for tools and climbing. Later filling of the basin would send various human-types in different directions, to adapt to local conditions with different morphotypes, many would go extinct later.

DD

ps. I've stepped away from AAT yahoogroup for a bit, but continue to skim the threads.

MSC refill
5.6 - 5.33ma MSC may have refilled in 2 years, H/P split 5 - 7ma
picture of Medit MSC refill 5.33ma

Thursday, October 1, 2009

Marine-Rift Conduit



Ardi at Yardi: fossil hominin http://blogs.discovermagazine.com/loom/2009/10/01/ardipithecus-we-meet-at-last/
http://www.npr.org/templates/story/story.php?storyId=113387960

Proconsul, Morotopith: Uganda, 21-20ma, upright spine
Orangs split 20ma
Gorilla split 8ma
Oreopithecus: Sardinia island, 9 - 7ma, very long arms, tree climbing, stilted biped.
Sahelanthropus: Chad, 7 - 6ma (SN: 7/13/02, p. 19)
Orrorin: 6ma (SN: 7/14/01, p. 20)
Ardipithecus ramidus: 4.4ma Rift - Afar
Kenyanthropus 3.5ma: (SN: 3/24/01, p. 180)
Ardipithecus kadabba: 5.8 - 5.2ma
Australopithecus afarensis: 3.2ma Lucy, Selam
Homo 2.4ma
ardi pic
http://www.sciencenews.org/view/feature/id/52228/title/Evolution%E2%80%99s_Bad_Girl
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Best article on MSC: MSC

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Shallow-water habitats as sources of fallback foods for hominins
R Wrangham, D Cheney, R Seyfarth & E Sarmiento 2009 AJPA 140:630-642

Underground/underwater Storage Organs (rhyzomes) consumed
by hominins could have included both underwater and underground storage
organs, ie, from both aquatic and terrestrial habitats. Shallow aquatic
habitats tend to offer high plant growth rates, high densities, and
relatively continuous availability throughout the year.

This study differs from traditional savanna chimpanzee models
of hominin origins by proposing that access to aquatic habitats was a
necessary condition for adaptation to savanna habitats. It also raises the
possibility that harvesting efficiency in shallow water promoted adaptations
for habitual bipedality in early hominins.
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Similarities of African apes and dolphins in group behavior
http://escholarship.org/uc/item/5gv9w4jw#


But note this from Molly: Why is the discussion always between chimps and humans? Orangs are more intelligent than chimps and we share a type C viral gene with them that other apes don’t have. How do they fit in the ancestor picture?
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Scientists have tallied up genes that were accidentally duplicated in our lineage, for example, so that we now have more copies of them than do other primates. They've also identified genes that became pseudogenes. And some genes in humans got their start as noncoding DNA in other primates. Recently Aoife McLysaght of the Smurfit Institute of Genetics at Trinity College Dublin discovered three proteins produced by humans that aren't found in our closest non-human relatives. McLysaght then discovered that the genes for these three human proteins correspond almost precisely to stretches of noncoding DNA in the other species. It appears that mutations transformed these pieces of genetic material into genes capable of making proteins. (per Carl Zimmer) http://www.pbs.org/wgbh/nova/beta/evolution/ten-great-advances-evolution.html




This image was added by magellan on Aug 2, 2003 7:55 AM, Dave's Garden http://davesgarden.com/guides/pf/showimage/21902/
"Hardy Water Lily \\\'Arc en Ceil\\\' best known for its unusual variegated green leaves mottled with pink, cream and sometimes red. Produces many blooms which open light pink and change to off white."


Goubbat al Kharab (Gebt/Gulf from Indian Ocean) to Awash (A!k'wa'sh) River to Rift Valley, recent volcanic uplift changed watersheds
http://www.volcano.si.edu/world/volcano.cfm?vnum=0201-126&volpage=photos&photo=104004
http://scienceblogs.com/eruptions/2009/09/mvp_5_ardoukoba_djibouti.php
http://earthobservatory.nasa.gov/NaturalHazards/view.php?id=12065

http://fotobank.ru/image/JW00-5676.html
Women with ornate shell hairstyles harvesting water lily bulbs at Awash River ("nymphs from Afar?") gather nymphaea (water lilies) in the presence of dragonfly nymphs (larvae) which feed on pond mosquito larvae, see story about remarkable journey taken by these Dragonflies from India over the Indian Ocean to Africa: http://the-arc-ddeden.blogspot.com/2009/07/migration-lemurs-dragons-wings.html

Backfloating on Awash River
http://herc.berkeley.edu:16080/jdesmond_clark_memorial/jdc03.jpg
http://www.panoramio.com/photo/10877665
Post-volcanic Awash R watershed
http://gridnairobi.unep.org/chm/waterbasins/Awash%20River%20Basin-11-03-08.jpg
Post-volcanic Abbe R / Tana L watershed in Ethiopia
http://gridnairobi.unep.org/chm/waterbasins/Abbay_River_Basin-11-03-08.jpg

Note: Lake Tana & Blue Nile (Abbay) River, Ethiopia is NOT Tana river delta, Kenya coast. They are different regions. Lake Abbe (Abhe Bad) also differs, being the final depository of the Awash River on the border between Ethiopia and Djibouti.

Lake Abbe, end of Awash River
Lake Abbe, Djibouti

Tana river-delta on the Kenya coast:
Tana delta, Kenya

Lake Tana: highland source of Ethiopia Blue Nile (Abbay) River:
Lake Tana, Ethiopia

Both are linked to early human evolution and civilization.

Homo sapiens developed cane canoes, rafts, boats
Lake Tana papyrus canoe
Lake Baringo ambatch canoe

But before these composite boats evolved, simple bundles of reeds were used as floats, and wood-hafted stone axes as weights, during cyclic submersion while foraging for plant rhyzomes, cichlids, catfish, crustaceans, shellfish etc.

Kelp Highway, Blue Highway
http://the-arc-ddeden.blogspot.com/2008/05/human-ancestors-at-waterside.html
http://www.sciencenews.org/view/generic/id/48574/title/Droughts_gave_early_h

University of Texas at Austin anthropologist John Kappelman presented this counterintuitive idea October 19 in a talk titled “Blue Highways,” which followed his fossil digs along the Blue Nile tributaries in Ethiopia. Early humans are thought to have taken one of two routes out of Africa: along the Red Sea, or along the Nile Valley and out across Eurasia. But “there’s been very little testing on the ground, recovering fossils and sites that actually permit us to evaluate either one of those two hypothetical migration events,” Kappelman said. Most fossils found to date come from the rift valley on the eastern side of the continent, where dry, flat, exposed land makes for good fossil hunting. In the late 1990s, Kappelman started exploring the tributaries on the western side of the Nile, where no one had looked for fossils before. The last record of western exploration there was from British naturalist Sir Samuel Baker in the 1860s.

“This area that was a blank slate for Africa is finally starting to fill in,” Kappelman said.
Samuel Barker noticed something key: The rivers are dry for most of the year, but every summer the water rushes back “like freight cars,” Kappelman said. The torrent of water gouged out deep holes that retained water even during the dry season, leaving a necklace of isolated pools.

And the pools were full of fish. “The fish were literally in a bucket,” Kappelman says. If early humans stayed near these water holes, they could feast all through the dry season without working too hard. “We think of dry seasons as a time of adversity. We’re proposing that these were the easy times,” Kappelman says.

Kappelman and his team found double-edged blades that were probably used as arrow heads and evidence of hearth fires in several sites around the Nile. He thinks using these water holes could have taught early humans crucial skills, like fishing with nets or bow and arrow, that helped them survive seasonal and climate changes after migration to other parts of the world.
“It honed the behavioral foraging habits of early humans, and taught them to exploit a wide range of food,” Kappelman said.





(Ainu culturally derived) coastal Ama divers

The traditional Ama divers of Japan south coast spent part of the year tending freshwater rice paddies and part diving at the seashores with pry tools and basket floats.

The Moken (okeos) Andaman Sea people have wooden boat communities, children dive for shellfish. http://en.wikipedia.org/wiki/Moken

Notes on tropical/fragrant water lily: Seed, tuber, buds as food

http://www.innvista.com/health/foods/seeds/waternut.htm

In times of drought in the waterlilies natural habitat what happens is the pads will die off and the tuber will remain below the soil and becomes quite nut-like, protecting the tuber through the dry season. Once the rains return and the tuber becomes moist again it will send up new growth from the terminal crown and a new plant will be born. http://www.victoria-adventure.org/waterlilies_images/sean_tuber_tutorial/page1.html

Water lilies reproduce by seed and also by new plants sprouting from the large spreading roots (underground stems called rhizomes). A planted rhizome will cover about a 15-foot diameter in about five years.

Fragrant water lily has an interesting pollination strategy. Each white or pink flower has many petals surrounding both male and female reproductive parts, and is only open during the daytime for three days. On the first morning, the flowers produce a fluid in the cup-like center and are receptive to pollen from other flowers. However, they are not yet releasing pollen themselves. Pollen-covered insects are attracted by the sweet smell, but the flower is designed so that when they enter the flower, they fall into the fluid. This washes the pollen off their bodies and onto the female flower parts (stigmas) causing fertilization. Usually the insects manage to crawl out of the fluid and live to visit other flowers, but occasionally the unfortunate creature will remain trapped and die when the flower closes during the afternoon. On the second and the third days, the flowers are no longer receptive to pollen, and no fluid is produced. Instead, pollen is released from the stamens (the flexible yellow match-shaped structures in the flower center). Visiting insects pick up the pollen and transport it to flowers in the first day of the flowering cycle. After the three days the flowers are brought under water by coiling their stalks. The seeds mature under water and after several weeks are released into the water. Water currents or ducks, which eat the seeds, distribute them to other areas. This flowering regimen is followed nearly throughout the summer, producing many eye-pleasing blooms and a large supply of seeds.

In addition to reproducing by seeds, water lilies spread by rhizomes. Anyone who has tried to curtail this plant's growth in front of their dock knows how tenacious these root systems are. Also, if pieces of the rhizome are broken off during control efforts, they will drift to other locations and establish a new patch of lilies.

The fragrant water lily was utilized in many ways by Native Americans in the eastern United States. Roots of this and other water lilies were used medicinally as a poultice for sores and tumors, internally for many aliments including digestive problems, and rinse made for sores in the mouth. The leaves and flowers were also used as cooling compresses. In addition, the rhizomes were occasionally used as food and the young leaves and lower buds were eaten as a vegetable. Even the seeds were fried and eaten or ground into flour. Wildlife, including beaver, muskrat, ducks, porcupine, and deer also will eat the leaves, roots, or seeds. http://www.ecy.wa.gov/Programs/wq/plants/weeds/lily.html

Jordan Valley frog bit Hydrocharis morsus-ranae
http://www.wildflowers.co.il/english/plant.asp?ID=750

Jordan Valley white water lily
http://www.flowersinisrael.com/Nymphaeaalba_page.htm

Jordan Valley yellow pond lily
http://www.flowersinisrael.com/Nupharlutea_page.htm

India pink lotus
http://en.wikipedia.org/wiki/Nelumbo_nucifera

Egyptian blue water lily
http://www.egyptianmyths.net/lotus.htm
The Egyptian Blue Water-lily, N. caerulea, opens its flowers in the morning and then sinks beneath the water at dusk, while the Egyptian White Water-lily, N. lotus, flowers at night and closes in the morning.

Tana river delta nymphaea
http://www.feow.org/ecoregion_details.php?eco=567

http://answers.yahoo.com/question/index?qid=20070604230442AA91zkq

Okavango Delta: termite, tree, hippo
http://ngm.nationalgeographic.com/ngm/0412/feature3/fulltext.html

Congo Mbeli bai, Ndoki swamp lowland gorilla eat floating frogbit hydrocharis (92%) & some sedges (8%)
http://www.springerlink.com/content/d66v4990r452721p/fulltext.html

http://www.arkive.org/western-gorilla/gorilla-gorilla/video-go08.html

http://sci.tech-archive.net/Archive/sci.anthropology.paleo/2008-08/msg00063.html
http://books.google.com/books?id=ZcTP7Kb01NAC&pg=PA365&lpg=PA365&dq=Hydrocharis+chevalieri&source=bl&ots=b6deCmBDmQ&sig=vhg4uBxNyqaoMfZFmBNaw9t4SM0&hl=en&ei=dnnFSon1HJHcsgOA7OGhBQ&sa=X&oi=book_result&ct=result&resnum=3#v=onepage&q=Hydrocharis%20chevalieri&f=false
Picture shows superficial resemblance of Hydrocharis and water lily, but hydrocharis roots float free with stolons at surface (easily dredged from above surface by gorilla standing or sit-floating upright with inflated laryngeal air sacs), while the water lily has anchored benthic roots and horizontal rhyzomes at a depth 6"-10" below soil substrate far below the water surface, often requiring facial submersion and combined with benthic shellfish foraging).

Nassarius marine mud snail shells used for ornamentation inland
http://www.pnas.org/content/106/38/16051.full

http://taos-telecommunity.org/epow/EPOW-Archive/archive_2009/EPOW-090119.htm

Hydrocharis storage turion buds into new plant
http://commons.wikimedia.org/wiki/File:HydrocharisBaby.jpg


Comparatives:

Butterfly (Nymphalids) 90ma & Angiosperm (flowering plants) 100ma evolution
http://www.abhishek-tiwari.com/2009/10/butterfly-phylogenetics.html

Frog 125ma & Archeafructus 125ma (water lily predecessor?) North East China
(see earlier posts)

Human ancestors: India 3ma (see Yohn & Todaro: African primate-only viruses between 3-5ma) (also see India origin of malaria 3ma), Djibouti (unique Tuberculosis 2ma), myosin mutation 2.4ma reduced jaw muscles & brain size constraint
2ma Asian pseudogene RRm2p4 nucleotide polymorphism on human X chromosome
http://mbe.oxfordjournals.org/cgi/content/abstract/22/2/189

http://www.eurekalert.org/pub_releases/2004-03/uopm-mmp032204.php
In an effort to find the remaining genes that govern myosin--the major contractile protein that makes up muscle tissue Penn researchers have found one small mutation that undermines an entire myosin gene. Their estimated dating for the appearance of this mutation places it at about 2.4 million years ago, just prior to a period of major evolutionary changes in the hominid fossil record. These include the beginning of larger brain size, so important in making us human. Anthropologists have long debated how humans evolved from ancestors with larger jaw muscles and smaller brains. This newly discovered mutation seems responsible for the development of smaller jaw muscles in humans as compared to non-human primates. Did this genetic mutation lift an evolutionary constraint on brain growth in early humans? MYH16 on chromosome 7 They found the gene-inactivating mutation in all modern humans sampled, with the same inherited muscle "disease." However, the mutation was not present in the DNA of seven species of non-human primates, including chimpanzees. macaque chewing and biting muscles are nearly ten times as large as in humans, which correlates with the fact that MYH16 protein is made in macaques and not in humans. researchers calculated that the inactivating mutation appeared in a hominid ancestor about 2.4 million years ago, after the lineages leading to humans and chimpanzees diverged. Shortly thereafter, roughly 2.0 million years ago, the less muscled, larger brained skulls of the earliest known members of the genus Homo start to appear in the fossil record.

From this the investigators postulated that the first early hominids born with two copies of the mutated MYH16 gene would show many effects from this single mutation--most notably a reduction in size and contractile force of the jaw-closing muscles, some of which exert tremendous stress across and/or cause deposition of additional bone atop growth zones of the braincase. "The coincidence in time of the gene-inactivating mutation and the advent of a larger braincase in some early Homo populations may mean that the decrease in jaw-muscle size and force eliminated stress on the skull, which 'released' an evolutionary constraint on brain growth,

Ice age glacial sea level 100m drops as Yemen gateway to south Asia and Sahara-Sinai desert gateway to Europe.
http://tech.groups.yahoo.com/group/AAT/message/54756

Based on this, we know that Ardi & Lucy were not likely to have been direct human ancestors, but possible chimp ancestors or extinct relatives which shared many phenotypical traits with early human ancestors.
---
other items

Neandertals at Gibralter, Anglo Saxons of eastern England feasted on dolphin
http://groups.google.co.uk/group/sci.archaeology/browse_thread/thread/ea500d5e8628fcce#
http://anthropology.net/2009/09/16/neanderthal-hearths-at-el-salt-reveal-plant-and-fish-remains/#comment-15042


Stone/wood beaters used on tree bark cloth felt (cf Mongolian wool felt pulled/bounced behind horse, egyptian papyrus pith paper) in China, Vietnam, Tonga, Mexico.
Judith Cameron, Archaeology and Natural History, Australian National Univ.
http://dspace.anu.edu.au:8080/bitstream/1885/47191/1/ch13.pdf

Flora and fauna, fish hook and sewn plank canoe transmission between Asia and America pre-Colombian
ON LINGUISTICS AND CASCADING INVENTIONS: A COMMENT ON
ARNOLD’S DISMISSAL OF A POLYNESIAN CONTACT EVENT IN
SOUTHERN CALIFORNIA
Terry L. Jones and Kathryn A. Klar

http://cla.calpoly.edu/~tljones/AQ74(1)%20Jones%20+%20Klar.pdf


http://books.google.com/books?hl=en&lr=&id=8-OilJCX1moC&oi=fnd&pg=PA238&dq=archaeology+%22pre-Columbian+contact%22&ots=PB_vZlY7vy&sig=NKJwE9osSyqBM8UMjEN__3G4zFk#v=onepage&q=archaeology%20%22pre-Columbian%20contact%22&f=false

Zizyphus fruit tree of Eurasia, short stemmed: http://www.citizendia.org/Jujube

Nutrition at waterside: http://tech.groups.yahoo.com/group/AAT/message/54785

Cattle domestication at Mehrgarh, Indus above Indus delta.
http://www.citizendia.org/Mehrgarh
-

Plausible? He only at rift & coast, not interior, Hs pre-domesticated along Levant-Indus coast, then returned to Africa as pastoralist/agriculturalist H&G only (pygmy/san/onge/kusunda?)...explains why megafauna remained in Africa long after mammoths and other megafauna all extinct throughout EurAsia.

Parallel: Further north, the Rift in the Jordan Valley, at paleo-lake Ubeidiya (3 km So of Sea of Gallilee), a large shallow freshwater lake at 100m below sea level, many acheulean hand axes found from 1.5ma. "Originally the site was on the edge of a small sweet-water lake; this accounts for the abundance of bones of mammals, reptiles, fish and birds. The hominids living at the site were hunters and scavengers. They made distinctive chopping tools of flint and spheroids of limestone, as well as hand-axes of flint and to lesser degree of basalt" (also almond and pond lily nuts). 20? km east of the Medit. along Jezreel valley, north of Dead Sea. During the Neogene, the Mediterranean penetrated into the Jordan Valley. The end of the Pliocene marks the creation of the Rift valley, cover basalt from 5ma to 3ma underlie the interesting layers. See page 11/31 at this pdf:
www.paleoanthro.org/dissertations/Miriam%20Belmaker.pdf
http://www.sitesandphotos.com/catalog/images/455911.jpg
http://adsabs.harvard.edu/abs/1966Natur.209.1268M
IN 1959 Dr, G. Haas, of the Department of Zoology of the Hebrew University of Jerusalem, was sent some fossil animal bones which had been turned up by a bulldozer levelling a field near Tell Ubeidiya in the Jordan Valley near Lake Tiberias. In this material, Dr. Haas identified bones of extinct mammalia and ``a human incisor and two small fragments of a hominid calvarium of very great thickness''1.

http://www3.interscience.wiley.com/journal/118911262/abstract?CRETRY=1&SRETRY=0

The large carnivores from ‘Ubeidiya (early Pleistocene, Israel)
Of specific importance is the presence of the African origin saber tooth Megantereon cf. M. whitei and the Eurasian origin canids Canis moschbachensis and Lycaon lycoanoides. Hippo tusk, mammoth molar at Ubeidiya:
http://digitool.haifa.ac.il/R/?func=dbin-jump-full&object_id=88799&local_base=GEN01
http://digitool.haifa.ac.il/R/?func=dbin-jump-full&object_id=88785&local_base=GEN01

http://www.gsi.gov.il/Eng/_Uploads/141Reactivation-of-the-Levant-passive.JPG
http://www.topo-europe.eu/3-the-natural-laboratory-concept/3-7-the-caucasus-and-levant/3-7-4-crustal-structure-and-physiography

Peritethyan and Pannonian Seas of Europe 10ma
http://images.google.com/imgres?imgurl=http://upload.wikimedia.org/wikipedia/commons/thumb/a/a8/MSC_basin_hypotheses.svg/350px-MSC_basin_hypotheses.svg.png&imgrefurl=http://en.wikipedia.org/wiki/Messinian_salinity_crisis&usg=__DZ63mmr9Wjv7sZ9LyhOuf7dsN5w=&h=364&w=350&sz=14&hl=en&start=34&sig2=Q1CH8sJ688ieeTITF3depQ&um=1&tbnid=81PvmHgYbY8IXM:&tbnh=121&tbnw=116&prev=/images%3Fq%3Dlevant%2Bbasin%26ndsp%3D20%26hl%3Den%26client%3Dfirefox-a%26rls%3Dorg.mozilla:en-US:official%26sa%3DN%26start%3D20%26um%3D1&ei=XwflSqKRDpDQswPlvqCwBA

The Pannonian Sea existed for about 9 million years. Its last remains disappered in the middle of Pleistocene Epoch, about 600,000 years ago. The water of the Pannonian Sea actually ruptured its way through the modern Đerdap Gorge on the Danube river and flowed through the gorge leaving behind a large plain known as the Pannonian Plain.
-

Snail fossils suggest semiarid eastern Canary Islands were wetter 50,000 years ago

Isotopic measurements performed on fossil land snail shells resulted in oxygen isotope ratios that suggest the relative humidity on the islands was higher 50,000 years ago, then experienced a long-term decrease to the time of maximum global cooling and glaciation about 15,000 to 20,000 years ago, according to new research by Yurena Yanes, a post-doctoral researcher, and Crayton J. Yapp, a geochemistry professor, both in the Roy M. Huffington Department of Earth Sciences at Southern Methodist University in Dallas, Texas. With subsequent post-glacial climatic fluctuations, relative humidity seems to have oscillated somewhat, but finally decreased even further to modern values.

Consequently the eastern Canary Islands experienced an overall increase in dryness during the last 50,000 years, eventually yielding the current semiarid conditions. Today the low-altitude eastern islands are characterized by low annual rainfall and a landscape of short grasses and shrubs, Yanes says. The research advances understanding of the global paleoclimate during an important time in human evolution, when the transition from gathering and hunting to agriculture first occurred in the fertile Middle East and subsequently spread to Asia, North Africa and Europe.
http://www.eurekalert.org/pub_releases/2009-10/smu-sfs102709.php#at

Via Elaine at AAT, from Dawkins site: [Recall that Queen Hatsheput, Pharaoh of Egypt that voyagedd the Red Sea to Punt met Queen Ati there who had steatopygya as did her daughter, showing a continuum from South African Namakwa KhoiSan to Andamaners, also seen in early Hs Euro mother Venus sculptures]

"One very interesting feature is Steatopygia -- extreme obesity in women during
pregnancy, often occur in Andamanese. It's considered as a disorder, but i
suspect it's an aquatic "adaptaion" -- for that pregnant women need more energy
storage and buoyancy (u may link it to water birth), or also, as the photo show,
a "platform" for the baby staying near water surface. (well this sounds
ridiculous, but it could contribute to higher survival rate if they were that
aquatic)" The photo shows and infant standing on the protuding buttocks of the mother
hanging on to her neck... and re. buoyancy: "Human buoyancy is very close to optimal for aquatic mammals. More importantly perhaps, our center of buoyancy is compatible with marine, not terrestrial mammals (Slijper 1976). This gives us the ability to maintain a horizontal attitude near the surface of the water with minimal energy expenditure."

Asian genes
Parallel: East Asian people have reduced body and facial hair with fu manchu beard, West Asian & African people have facial hair with full beard. East Asian tigers have only small fu manchu beard, West Asian & African lions have large mane and full beard.
India/Tibet has both types of people and lions-tigers. Why? Tigers more aquatic-arboreal or colder climate?

Marcel on marine kidneys, oreopith, AHV: http://www.bautforum.com/science-technology/94562-elaine-morgan-says-we-evolved-aquatic-apes-3.html

MSC: 6ma - 5.5ma Mediterranean dried out. Last common ancestor of chimpanzee and Homo is dated to around 5.5 Mya. Papio/gelada divergence at 4 (3.99) Mya.

Wood eating crabs at depth, as well as wood boring molluscs and isopods, there are crustaceans which eat plant matter which sinks to the ocean floor, including old wooden boats and tools (so its even harder to get evidence of ancient coastal tool use!).
http://www.oceanleadership.org/2009/the-deep-sea-crab-that-eats-trees/

Seeing fish at depth: http://www.fishbase.org/photos/depth.cfm?PicName=Lamer_j0.jpg

Tuesday, April 7, 2009

Bio-convergent parallel: Anuroid & Hominoid

Arkive Video: Gorillas vertical wading and wet-sit-eating

left: dryland gelada, long-tailed, vertical-trunk, dry-sit-eat grasses, no air sac
right: lowland gorilla, tail-less, vertical-trunk, wet-sit-eat sedges, air sac


Another Video: Lowland Gorillas eating sedge rhyzomes and high-protein AHV (Aquatic Herbaceous Vegetation) while sitting-floating in forest open wetland Arkive video link

DD: The question is not "do air sacs always cause loss of tail?", but "is the complete loss of tail in hominoids due (in part) to laryngeal air sac?" The answer is clear, yes, float-sit-feeding with inflatable air sac selects for tail loss.

MV: Not so clear IMO: may depend on body size, size of airsacs, terrestrial vs aquatic milieu, salt vs fresh water milieu, time spent in trees & water, arm-hanging vs hopping vs above-branch, etc.

DD: parallel convergence at forest-waterside (swamp, wetland, shore):

left: Axlotl, long-tailed 'tadpole' with external gills and legs, swims but doesn't sit
right: Macaque, long-tailed, with lungs and legs, swims but doesn't feed sit-floating



Tadpoles with long tail swim, they don't sit partially feeding in water, they don't have prehensile tongue; frogs with no tail sit partially in water, and use long prehensile tongue to eat. Some frogs then evolved more arboreal traits (better climbing skills, less swimming), others spend much time on lake bottoms and developed more aquatic traits (skin 'gill' breathing)

left: tree frogs have since further specialized to arborealty, more 'spidery' and colorful
right: aquatic frog with hydrodynamic red external gills re-adapted to full submersion



Monkeys with long tails swim (Nasalis, Long-tailed macaque); while Ndoki swamp gorillas
(~LCA H-oid) with no tail sit partially in water while feeding.

left: tree apes have since further specialized to arborealty, more 'spidery' and colorful
right: aquatic apes (humans) with hydrodynamic hair re-adapted to submersion diving



AFAIK, neither spidery tree frogs nor deep-submersion frogs inflate their throat air sacs as much as forest-waterside frogs.

AFAIK, neither spidery tree apes (gibbon) nor deep submersion apes (humans) inflate their throat air sacs as much as forest-waterside apes.

Parallel pattern. Partial sit-float eating -> air sac -> tail lost; eventually species body size may enlarge at forest-waterside, OR become full-time spidery at arboreal canopy OR adapt deep submersion with active skin glands* or skin gills* as per photos.

DD: Complete loss of tail = vertical-trunk float-sitting while plucking-foraging. Laryngeal air sacs. Compare to long tailed gelada sitting while plucking-foraging grass on dry ground. No air sacs there, of course.

MV: Some baboons have short tails IIRC?

DD: None lost their tail, many highland monkeys (cold nights select for short tails) with non-prehensile tails have short tails. Tail covers peri-anal region, in water, muscle valves and tissue close peri-anal region.

Dry-sit-eating (no air sac, long-tailed) savanna gelada vs wet/float-sit-eating (air sac, tail-less) Ndoki swamp gorilla
http://tech.groups.yahoo.com/group/AAT/message/49817

* frogs and salamanders may respire via gills, lungs or skin. I conjecture that the eccrine skin glands of humans (inactive in African apes except volar eccrines) function in very limited respiration. link

Evolution Canyon European-African micro-climates in Jordan Rift Valley

Flowering plants & veination 140ma:
http://www.eurekalert.org/pub_releases/2009-12/w-hdf120109.php
The study, by Dr Tim Brodribb and Dr Taylor Field of the University of Tasmania and University of Tennessee, used plant physiology to reveal how flowering plants, including crops, were able to dominate land by evolving more efficient hydraulics, or 'leaf plumbing', to increase rates of photosynthesis.

"Flowering plants are the most abundant and ecologically successful group of plants on earth," said Brodribb. "One reason for this dominance is the relatively high photosynthetic capacity of their leaves, but when and how this increased photosynthetic capacity evolved has been a mystery."

Using measurements of leaf vein density and a linked hydraulic-photosynthesis model, Brodribb and Field reconstructed the evolution of leaf hydraulic capacity in seed plants. Their results revealed that an evolutionary transformation in the plumbing of angiosperm leaves pushed photosynthetic capacity to new heights.

The reason for the success of this evolutionary step is that under relatively low atmospheric C02 conditions, like those existing at present, water transport efficiency and photosynthetic performance are tightly linked. Therefore adaptations that increase water transport will enhance maximum photosynthesis, exerting substantial evolutionary leverage over competing species.

Tuesday, October 30, 2007

Teeth & Armor Speculations

[further discussion on this at:]
http://forums.deeperblue.net/674527-post20.html

Introversion of external hair (armor) to internal "teeth"

Baleen whales (blue, humpback, right whales) developed their baleen (whalebone stringy teeth) on the upper jaw, because their fish & mollusc eating ancestors had had walrus-like mustache whiskers which gradually migrated from the upper lip into the upper gums (over a period of a million years), changing from nerve-rich sensory bristles to long net-like filters, straining krill and small fish while allowing water to escape the mouth. (This is one of my hypotheses, haven't seeen any confirmation from others.)

Extroversion of internal teeth to external scales (armor):

Lamphrey (and hagfish?) types lack jaws, but have replaceable teeth which are used to grasp. Is it possible that fish scales derived from multiple teeth replacing (like in sharks, but non-jawed) in a previously non-scaled lamphrey-like ancestor? Various fish scales do resemble teeth in some way, although many have become ultra-smooth for high-speed hydrodynamics. Do fish embryos develop their scales in a cephalo-caudal direction starting at the head? Do primitive scaled fish have more dental-like scales?
Is this a new idea, or has anyone heard of it before? (This is another hypothesis)

Anyway, just seems cool that the opposite actions may have happened in fish and whales.

[Now consider that birds have feathers, which have bloodflow in the plume, do feathers derive from vestigial teeth in early aves which were developing beaks and bills and reducing their ancestral dentition? Are feathers malformed teeth with roots? Where did the beak come from? I don't know.]


DDeden
__________________
"Dive well and come up for more"

The-Arc-of-a-Diver: http://the-arc.wikispaces.com/ / http://the-arc-ddeden@blogspot.com

Monday, August 27, 2007

Human head hair & hydrodynamics

Olympic swim suit: http://scienceblogs.com/pharyngula/2008/08/honey_wheres_my_supersuit.php


Straight hair shafts are ( ) round (didn't change from our long ago ancestors that lived and dove for shellfish on tropical pocket beaches), while curly hair was later derived (the hair shaft became oval (curly) or () elliptical, not round) which protected people who lived inside tropical rain forests from lice (which carry typhus disease), lice lay their eggs (nits) in hair, but in very curly hair the eggs can't stay attached. People with curly head hair also have curly body hair (but straight eyelashes).
Beard, armpit and pubic hair are called coarse secondary hair, it is fluffy and developed during the diving era, where it gave a smooth rounded linear hydro-dynamic profile when diving, filling the body voids in places that skin fat couldn't fill. Below there is more info.


----- Original Message -----
From: DDeden
To: AAT@yahoogroups.com
Sent: Monday, August 27, 2007 5:38 AM

Hydrodynamic Head Hair => AAT

There are many arguments that can be made for and against AAT, but the one that convinced me was the long straight/wavy head hair for hydrodynamics. Since no other aquatic animal has very long hair, it is not a comparable trait, but I can think of no other reason for 1+ m long head hair except fluid diving and swimming in a mammal which did not become very tube-shaped (unlike most other aquatics) because of pre-existing sessile plucking during feeding. The plucking had existed
during the LCA H-oid as part of the vertical floating/wading and tree food collection, the brain had hard-wired for that feeding style, allowing the face and jaw to reduce prognathism, compared to monkeys and other primates. Modern humans have even less prognathism, indicating even stronger plucking feeding (and tool use).

Plucking => jaws shrink (Homo) or enlarge (boisie nut cracker).

Long head hair is fine at the shores, ok on the savanna but useless, while in the trees it is a problem. People living in tropical rainforests tend to have frizzy hair and/or cut it short or tie it up in some way.

I've written on the frizzy inland hair re. lice and typhus, the main reason I'm sure it's correct is that people with frizzy/nappy hair have straight eyelashes. How could they have started with curly eyelashes? They are more derived biologically than slightly curled or straight haired people, regarding tropical inland adaptation.

So therefore, I doubt that H aq was a large tropical island dweller, as on Papua or Borneo or Taiwan rich in mangroves and muck.

They weren't on coral atolls (due to mineral deficiency) either.

However small to medium volcanic islands with encircling reefs around, perhaps the archipelagos along the Pacific ring of fire, the Maldives and Andamans and Afar, with reduced large cat predators, with some silt/soil for mangroves and fruit trees but not large swamps which crocs favor, and warm reef-protected lagoons which sharks don't favor.
DDeden

I've written on the frizzy inland hair re. lice and typhus, the main reason I'm sure it's correct is that people with frizzy/nappy hair have straight eyelashes. How could they have started with curly eyelashes? They are more derived biologically than slightly curled or straight haired people, regarding tropical inland adaptation.
DD


Interesting thought but it's possible to select for straight hair in some places and curly in others e.g. pubic hair is curly in straight-haired people.
Elaine Morgan

East Asians tend to have relatively straight hair everywhere, although the beard, axillary and pubic hair is less straight and more kinked (but by no means curly). All other people have beard, axillary and pubic hair of similar kinky/straight texture, which is even less straight than East Asians, but still not curled at all.

Inland tropical people with very curly (frizzy/nappy) head hair have very curly body hair, but their beard, axillary and pubic hair is comparatively much more straight, and their eyelash hair is straight.

This indicates that the LCA Homo had straight head hair, straight eyelash hair, straight mustache hair (like orangs), and straight but slightly kinked (not curled) beard, axillary and pubic hair.

I think that kinked-straight hair in the beard, axillary and pubic areas is a result of hydrodynamic selection, since it fills the voids of the body better than straight hair does during swimming. I don't think it's form is due to better odor release, though maybe secondarily.

Therefore, I'd expect that other apes lack this special beard, axillary and pubic form of hair, or only have it to a slight degree.

AFAIK, all people born with the hyperhirsute super-hairy syndrome have straight/wavy hair, never frizzy/nappy nor blonde hair. This occurs most often in Asians (though still very rare). There's a photo of a Chinese guy with this condition in AAT photos, it is probably similar to the LCA Homo hair condition.

That frizzy/nappy hair was ancestral to Hs fits no data whatsoever AFAIK. Our Homo ancestors may have been (shoreside) African, but did not have frizzy/nappy hair.

I suggest that frizzy hair is a recently derived trait in Hs not older than 200ka and more likely 60ka, resulting from the improvement of dugout boats, nets and weapons allowing people into the interior in relative safety. The Khoisan seem to be an intermediate, I don't know precisely their situation, but since they do no diving, likely they were isolated from coastal living at some point, perhaps they were the
rift descendants. Dugouts are widespread all throughout the tropics, that is how I think the tropical rainforest Africans survived away from the sea, safer from [predators but not against pathogens, making increased eccrine sweat and curled hair very important selective traits. Dry air = wavy hair. Humid air = curly hair. Sea diving = straight hair with kinked straight beard/ axil/pubic hair.
DDeden