The effect of landscape features on population genetic structure in Yunnan snub‐nosed monkeys (Rhinopithecus bieti) implies an anthropogenic genetic discontinuity

壁炉试验 生物 遗传结构 遗传多样性 生态学 人口 按距离隔离 生物多样性 生境破碎化 种群分化 基因流 人口学 社会学
作者
Zhijin Liu,Ren Bao-ping,Ruidong Wu,Liang Zhao,YANLI HAO,Boshi Wang,Fuwen Wei,Yongcheng Long,Ming Li
出处
期刊:Molecular Ecology [Wiley]
卷期号:18 (18): 3831-3846 被引量:102
标识
DOI:10.1111/j.1365-294x.2009.04330.x
摘要

The Tibetan Plateau is one of the top 10 biodiversity hotspots in the world and acts as a modern harbour for many rare species because of its relatively pristine state. In this article, we report a landscape genetic study on the Yunnan snub-nosed monkey (Rhinopithecus bieti), a primate endemic to the Tibetan Plateau. DNA was extracted from blood, tissue and fecal samples of 135 wild individuals representing 11 out of 15 extant monkey groups. Ten microsatellite loci were used to characterize patterns of genetic diversity. The most striking feature of the population structure is the presence of five subpopulations with distinct genetic backgrounds and unique spatial regions. The population structure of R. bieti appears to be shaped by anthropogenic landscape features as gene flow between subpopulations is strongly impeded by arable land, highways and human habitation. A partial Mantel test showed that 36.23% (r = 0.51, P = 0.01) of the genetic distance was explained by habitat gaps after controlling for the effect of geographical distance. Only 4.92% of the genetic distance was explained by geographical distance in the partial Mantel test, and no significant correlation was found. Estimation of population structure history indicates that environmental change during the last glacial maximum and human impacts since the Holocene, or a combination of both, have shaped the observed population structure of R. bieti. Increasing human activity on the Plateau, especially that resulting in habitat fragmentation, is becoming an important factor in shaping the genetic structure and evolutionary potential of species inhabiting this key ecosystem.
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