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首页> 外文期刊>Ecology and Evolution >Genetic population structure of endangered ring‐tailed lemurs (Lemur catta) from nine sites in southern Madagascar
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Genetic population structure of endangered ring‐tailed lemurs (Lemur catta) from nine sites in southern Madagascar

机译:来自马达加斯加南部的九个景点的濒危环纹狐猴(Lemur Catta)遗传人口结构

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Madagascar's ring‐tailed lemurs (Lemur catta) are experiencing rapid population declines due to ongoing habitat loss and fragmentation, as well as increasing exploitation for bushmeat and the illegal pet trade. Despite being the focus of extensive and ongoing behavioral studies, there is comparatively little known about the genetic population structuring of the species. Here, we present the most comprehensive population genetic analysis of ring‐tailed lemurs to date from across their likely remaining geographic range. We assessed levels of genetic diversity and population genetic structure using multilocus genotypes for 106 adult individuals from nine geographically representative localities. Population structure and FST analyses revealed moderate genetic differentiation with localities being geographically partitioned into northern, southern, western and also potentially central clusters. Overall genetic diversity, in terms of allelic richness and observed heterozygosity, was high in the species (AR?=?4.74, HO?=?0.811). In fact, it is the highest among all published lemur estimates to date. While these results are encouraging, ring‐tailed lemurs are currently affected by ongoing habitat fragmentation and occur at lower densities in poorer quality habitats. The effects of continued isolation and fragmentation, coupled with climate‐driven environmental instability, will therefore likely impede the long‐term viability of the species.
机译:由于持续的栖息地损失和碎片,马达加斯加的环尾狐猴(Lemur Catta)正在经历迅速的人口下降,以及对Bushmeat和非法宠物贸易的剥削。尽管是广泛且持续行为研究的重点,但对物种的遗传群体结构相对较小。在这里,我们迄今为止迄今为止,迄今为止迄今为止最综合的人口遗传分析迄今为止。我们评估了使用来自九个地理上代表性的106个成年个人的多层基因型的遗传多样性和群体遗传结构水平。人口结构和FST分析揭示了中度遗传分化与地理上分区的地方,南部,西方,以及潜在的中央簇。在等位基因丰富性和观察到的杂合子方面,整体遗传多样性在物种(AR?= 4.74,HO?= 0.811)。事实上,它是迄今为止所有公布的狐猴估计中最高的。虽然这些结果是令人鼓舞的,但目前受到持续栖息地破碎的影响,并且在较低的优质栖息地处发生较低的密度。因此,持续隔离和碎片的影响与气候驱动的环境不稳定相结合,因此可能会妨碍物种的长期活力。
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