日本猕猴(Macaca fuscata)的种群基因组学:对深度种群分化和多重合并历史的见解。

IF 3.2 2区 生物学 Q2 EVOLUTIONARY BIOLOGY
Atsunori Higashino, Katsuki Nakamura, Naoki Osada
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引用次数: 0

摘要

长期气候变化(如冰期循环)对生物历史的影响已被研究了几十年,但在环境波动期间的种群动态及其对遗传多样性和遗传负荷的影响尚未在全基因组范围内得到很好的理解。日本猕猴(Macaca fuscata)是一种独特的灵长类动物,适应日本群岛的寒冷环境。尽管过去对日本猕猴种群遗传学的研究较为深入,但在全基因组水平上对日本猕猴的遗传背景还局限于少数个体,对日本猕猴的人口统计学历史和遗传分化的研究还不够全面。我们对来自5个不同地区的64个日本猕猴个体进行了全基因组测序,揭示了种群间显著的遗传分化和功能变异多样性。特别是,日本猕猴具有较低的遗传多样性,并且具有许多共享和群体特异性基因缺失,这可能导致群体特异性表型。我们使用阶段性单倍型对种群人口统计进行了估计,结果表明,在400 - 500 kya前后,所有种群共享了强大的种群瓶颈后,种群间的分化在150 - 200 kya前后开始,但在分裂之后,一些种群之间存在着强烈的基因流动,这表明多个种群的分裂和融合事件可能是由于冰川旋回期间栖息地的破碎和融合造成的。这些发现不仅展示了日本猕猴复杂的种群历史,而且提高了它们作为研究模型的价值,特别是在神经科学和行为研究方面。这项全面的基因组分析揭示了日本猕猴的适应和进化,为进化生物学和生物医学研究提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Population Genomics of Japanese Macaques (Macaca fuscata): Insights Into Deep Population Divergence and Multiple Merging Histories.

The influence of long-term climatic changes such as glacial cycles on the history of living organisms has been a subject of research for decades, but the detailed population dynamics during the environmental fluctuations and their effects on genetic diversity and genetic load are not well understood on a genome-wide scale. The Japanese macaque (Macaca fuscata) is a unique primate adapted to the cold environments of the Japanese archipelago. Despite the past intensive research for the Japanese macaque population genetics, the genetic background of Japanese macaques at the whole-genome level has been limited to a few individuals, and the comprehensive demographic history and genetic differentiation of Japanese macaques have been underexplored. We conducted whole-genome sequencing of 64 Japanese macaque individuals from 5 different regions, revealing significant genetic differentiation and functional variant diversity across populations. In particular, Japanese macaques have low genetic diversity and harbor many shared and population-specific gene loss, which might contribute to population-specific phenotypes. Our estimation of population demography using phased haplotypes suggested that, after the strong population bottleneck shared among all populations around 400 to 500 kya, the divergence among populations initiated around 150 to 200 kya, but there has been the time with strong gene flow between some populations after the split, indicating multiple population split and merge events probably due to habitat fragmentation and fusion during glacial cycles. These findings not only present a complex population history of Japanese macaques but also enhance their value as research models, particularly in neuroscience and behavioral studies. This comprehensive genomic analysis sheds light on the adaptation and evolution of Japanese macaques, contributing valuable insights to both evolutionary biology and biomedical research.

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来源期刊
Genome Biology and Evolution
Genome Biology and Evolution EVOLUTIONARY BIOLOGY-GENETICS & HEREDITY
CiteScore
5.80
自引率
6.10%
发文量
169
审稿时长
1 months
期刊介绍: About the journal Genome Biology and Evolution (GBE) publishes leading original research at the interface between evolutionary biology and genomics. Papers considered for publication report novel evolutionary findings that concern natural genome diversity, population genomics, the structure, function, organisation and expression of genomes, comparative genomics, proteomics, and environmental genomic interactions. Major evolutionary insights from the fields of computational biology, structural biology, developmental biology, and cell biology are also considered, as are theoretical advances in the field of genome evolution. GBE’s scope embraces genome-wide evolutionary investigations at all taxonomic levels and for all forms of life — within populations or across domains. Its aims are to further the understanding of genomes in their evolutionary context and further the understanding of evolution from a genome-wide perspective.
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