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Judi Lynn

(160,526 posts)
Tue Oct 22, 2019, 04:50 PM Oct 2019

Neanderthal, Denisovan DNA Found Near Autism Genes in Modern Humans

Neanderthal, Denisovan DNA Found Near Autism Genes in Modern Humans
By Joel Hruska on October 18, 2019 at 9:01 am

One of the most interesting questions of hominin evolution is exactly how much of our vanished cousins remains in us. Between 1-4 percent of the modern human genome is derived from Neanderthals everywhere but sub-Saharan Africa. In addition, between 4-6 percent of the modern Melanesian genome has been shown to be derived from a separate species of archaic hominin, Denisovans. Now, a new paper focused on comparing a specific type of genetic variance has found evidence suggesting that Denisovans and Neanderthals made large-scale, long-term positive contributions to the human genome. Our understanding of the impact of these changes is currently limited, but they occur in a rather interesting place.

Most of the studies that compare differences in human populations (or differences between archaic and modern hominins) focus on adaptive single-nucleotide variants (SNV). It was a single nucleotide variation that gave archaic northwest Europeans the ability to digest lactose, and the ability to do so is a textbook case of human natural selection. The image below shows the prevalence of adult lactase persistence as a percentage of the total population.



Image by Joe Roe, Wikipedia

Single nucleotide variations found in the genome of the Tibetan people are associated with greater acclimatization to high-altitude conditions. These originated in the Denisovan genome. While the Denisovan addition occurred much earlier than the adaptation for adult lactase digestion, both of them have been conserved (meaning they have persisted since initial evolution).

This new research isn’t focused on SNVs. Instead, it analyzed the modern Melanesian genome for signs of copy number variants (CNVs). Copy number variation is when the number of copies of an entire gene are different between individuals. Huntington’s disease, for example, is caused when a specific sub-section of the Huntingtin gene is repeated to the point that it causes altered protein production. CNVs are much larger than SNVs and they tend to exert very strong selective pressure. Any evidence of conserved CNVs in the Melanesian population that could be traced to the Denisovan or Neanderthal genomes would, therefore, be evidence that these variants conferred benefits.

More:
https://www.extremetech.com/extreme/300458-neanderthal-denisovan-dna-found-near-autism-genes-in-modern-humans

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Neanderthal, Denisovan DNA Found Near Autism Genes in Modern Humans (Original Post) Judi Lynn Oct 2019 OP
There has been a lot of Neanderthal research coming out lately. Triloon Oct 2019 #1
While it would be simplistic to suggest PoindexterOglethorpe Oct 2019 #2

Triloon

(506 posts)
1. There has been a lot of Neanderthal research coming out lately.
Tue Oct 22, 2019, 05:08 PM
Oct 2019

I don't know what it means for genes to be near one another in a chromosome. I would certainly halt at any notion that autism is a trait inherited from our ancient kissing cousins.

Here is an article that came out yesterday on the Neanderthal heating and processing birch bark into tar to be used to make grips for flint tools and for sticking flint heads to spears and tools.
https://www.sciencemag.org/news/2019/10/50000-year-old-tar-smeared-tool-shows-neanderthal-smarts

There was also the discovery of 257 Neanderthal footprints preserved in SAND in France a little while back. https://arstechnica.com/science/2019/09/80000-year-old-footprints-reveal-neanderthal-social-life/

Beach party!

PoindexterOglethorpe

(25,853 posts)
2. While it would be simplistic to suggest
Tue Oct 22, 2019, 05:39 PM
Oct 2019

that modern autism is something from our Neanderthal ancestors, I wouldn't be surprised if there was some sort of connection. Not all autism, certainly, but perhaps Neanderthals really did think differently, just as those on the autism spectrum do. Especially those with the now forbidden diagnosis of Asperger's, most of whom are extremely smart.

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