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Low genetic diversity and shallow population structure in the endangered vulture Gyps coprotheres

机译:濒临灭绝的秃鹰吉普斯共同体的遗传多样性低种群结构浅

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摘要

Globally, vulture species are experiencing major population declines. The southern African Cape vulture (Gyps coprotheres) has undergone severe population collapse which has led to a listing of Endangered by the IUCN. Here, a comprehensive genetic survey of G. coprotheres is conducted using microsatellite markers. Analyses revealed an overall reduction in heterozygosity compared to other vulture species that occur in South Africa (Gypaetus barbatus, Necrosyrtes monachus, and Gyps africanus). Bayesian clustering analysis and principal coordinate analysis identified shallow, subtle population structuring across South Africa. This provides some support for regional natal philopatry in this species. Despite recent reductions in population size, a genetic bottleneck was not detected by the genetic data. The G. coprotheres, however, did show a significant deficiency of overall heterozygosity. This, coupled with the elevated levels of inbreeding and reduced effective population size, suggests that G. coprotheres is genetically depauperate. Given that genetic variation is considered a prerequisite for adaptation and population health, the low genetic diversity within G. coprotheres populations is of concern and has implications for the future management and conservation of this species.
机译:在全球范围内,秃鹰物种正经历主要的种群下降。南部非洲海角雕(Gyps coprotheres)遭受了严重的人口崩溃,这导致自然保护联盟将濒危物种列入清单。在这里,使用微卫星标记对G. coprotheres进行了全面的遗传调查。分析表明,与在南非发生的其他秃鹰物种(马齿y(Gypaetus barbatus),死灵藻(Necrosyrtes monachus)和非洲y齿(Gyps africanus))相比,杂合度总体上降低了。贝叶斯聚类分析和主坐标分析确定了整个南非的浅层,微妙的人口结构。这为该物种的区域出生哲学提供了一些支持。尽管最近人口规模有所减少,但遗传数据并未发现遗传瓶颈。然而,G。coprotheres确实显示出总体杂合性的显着不足。这与近亲繁殖水平的提高和有效种群数量的减少相结合,表明G. coprotheres在遗传上是无病的。鉴于遗传变异被认为是适应和种群健康的先决条件,因此,G。coprotheres种群内部的低遗传多样性令人关注,并对该物种的未来管理和保护产生了影响。

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