生物
进化生物学
现存分类群
群体基因组学
系统发育学
基因组学
濒危物种
基因组
人口
系统发育树
保护状况
线粒体DNA
比较基因组学
濒危物种
人口历史
生态学
动物
系统基因组学
保护生物学
有效人口规模
基因组进化
刺猬
保护遗传学
克莱德
生物多样性
谱系(遗传)
栖息地
作者
Sheng Wang,Zehui Chen,Ao Luo,Xinran You,Andrew C. Kitchener,Xiaolong Tu,Mukesh Thakur,Govindhaswamy Umapathy,Songmei Hu,Tianen Zhang,Yingqi Zhang,Siqiong Liu,Yan Ding,Feng Liu,Qingyan Dai,Xiaotian Feng,Lei Li,Yue Pan,Ming Zhang,Christian Roos
出处
期刊:Cell
[Cell Press]
日期:2025-11-07
卷期号:189 (1): 34-51.e20
标识
DOI:10.1016/j.cell.2025.10.016
摘要
Gibbons (family Hylobatidae), small apes closely related to humans and great apes, remain understudied despite their threatened status. Here, we present extensive genomic resources, including chromosome-level reference genomes, whole-genome resequencing of 18 extant species, and mitochondrial genomes from 3 ancient samples. Using whole-genome alignments, we resolve the debated phylogeny of the four genera as (Hylobates, (Nomascus, (Symphalangus, Hoolock))). Phylogenetic analyses based on the ancient mitogenomes place the extinct Junzi imperialis within Nomascus, refuting its status as a distinct genus. Conservation genomics and ecological niche modeling analyses suggest historical dynamics in gibbon population size and habitat suitability, which are consistent with the potential impacts of past climate change. Through comparative genomics and transgenic mouse experiments, we identify a 205-bp deletion in the Sonic Hedgehog (SHH) gene associated with gibbons' elongated limbs. These findings advance understanding of gibbon evolution, biology, and conservation.
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