Genetic Connections and Convergent Evolution of Tropical Indigenous Peoples in Asia.

Mol Biol Evol

State Key Laboratory of Genetic Engineering, Center for Evolutionary Biology, Collaborative Innovation Center for Genetics and Development, School of Life Sciences, Fudan University, Shanghai, China.

Published: February 2022

AI Article Synopsis

  • Tropical indigenous peoples in Asia (TIA) possess unique genetic distinctions despite significant intergroup variations, revealing a shared ancestral lineage known as basal Asian ancestry (bASN) that traces back approximately 50,000 years.
  • This ancient ancestry contributes to specific adaptations related to hair and bone morphology, as well as pigmentation traits in TIA populations.
  • The study highlights the initial human migrations into Asia and how genetic factors, including natural selection and new mutations, have influenced the observable traits in TIA cultures today.

Article Abstract

Tropical indigenous peoples in Asia (TIA) attract much attention for their unique appearance, whereas their genetic history and adaptive evolution remain mysteries. We conducted a comprehensive study to characterize the genetic distinction and connection of broad geographical TIAs. Despite the diverse genetic makeup and large interarea genetic differentiation between the TIA groups, we identified a basal Asian ancestry (bASN) specifically shared by these populations. The bASN ancestry was relatively enriched in ancient Asian human genomes dated as early as ∼50,000 years before the present and diminished in more recent history. Notably, the bASN ancestry is unlikely to be derived from archaic hominins. Instead, we suggest it may be better modeled as a survived lineage of the initial peopling of Asia. Shared adaptations inherited from the ancient Asian ancestry were detected among the TIA groups (e.g., LIMS1 for hair morphology, and COL24A1 for bone formation), and they are enriched in neurological functions either at an identical locus (e.g., NKAIN3), or different loci in an identical gene (e.g., TENM4). The bASN ancestry could also have formed the substrate of the genetic architecture of the dark pigmentation observed in the TIA peoples. We hypothesize that phenotypic convergence of the dark pigmentation in TIAs could have resulted from parallel (e.g., DDB1/DAK) or genetic convergence driven by admixture (e.g., MTHFD1 and RAD18), new mutations (e.g., STK11), or notably purifying selection (e.g., MC1R). Our results provide new insights into the initial peopling of Asia and an advanced understanding of the phenotypic convergence of the TIA peoples.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8826522PMC
http://dx.doi.org/10.1093/molbev/msab361DOI Listing

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Genetic Connections and Convergent Evolution of Tropical Indigenous Peoples in Asia.

Mol Biol Evol

February 2022

State Key Laboratory of Genetic Engineering, Center for Evolutionary Biology, Collaborative Innovation Center for Genetics and Development, School of Life Sciences, Fudan University, Shanghai, China.

Article Synopsis
  • Tropical indigenous peoples in Asia (TIA) possess unique genetic distinctions despite significant intergroup variations, revealing a shared ancestral lineage known as basal Asian ancestry (bASN) that traces back approximately 50,000 years.
  • This ancient ancestry contributes to specific adaptations related to hair and bone morphology, as well as pigmentation traits in TIA populations.
  • The study highlights the initial human migrations into Asia and how genetic factors, including natural selection and new mutations, have influenced the observable traits in TIA cultures today.
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