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历史环境反映在一种岛屿特有蜥蜴(网纹沙氏变色蜥)的现代群体遗传学和生物地理学中。

Historical Environment Is Reflected in Modern Population Genetics and Biogeography of an Island Endemic Lizard (Xantusia riversiana reticulata).

作者信息

Holmes Iris A, Mautz William J, Davis Rabosky Alison R

机构信息

Department of Ecology and Evolutionary Biology, University of Michigan, 1109 Geddes Ave, Ann Arbor, MI, 48103, United States of America.

Department of Biology, University of Hawaii at Hilo, Hilo, HI, 96720, United States of America.

出版信息

PLoS One. 2016 Nov 9;11(11):e0163738. doi: 10.1371/journal.pone.0163738. eCollection 2016.

Abstract

The restricted distribution and isolation of island endemics often produces unique genetic and phenotypic diversity of conservation interest to management agencies. However, these isolated species, especially those with sensitive life history traits, are at high risk for the adverse effects of genetic drift and habitat degradation by non-native wildlife. Here, we study the population genetic diversity, structure, and stability of a classic "island giant" (Xantusia riversiana, the Island Night Lizard) on San Clemente Island, California following the removal of feral goats. Using DNA microsatellites, we found that this population is reasonably genetically robust despite historical grazing, with similar effective population sizes and genetic diversity metrics across all sampling locations irrespective of habitat type and degree of degradation. However, we also found strong site-specific patterns of genetic variation and low genetic diversity compared to mainland congeners, warranting continued special management as an island endemic. We identify both high and low elevation areas that remain valuable repositories of genetic diversity and provide a case study for other low-dispersal coastal organisms in the face of future climate change.

摘要

岛屿特有物种的分布受限和隔离往往会产生独特的遗传和表型多样性,这对管理机构来说具有保护价值。然而,这些孤立的物种,尤其是那些具有敏感生活史特征的物种,极易受到遗传漂变和外来野生动物栖息地退化的不利影响。在此,我们研究了加利福尼亚州圣克莱门特岛上一种典型的“岛屿巨型物种”(岛屿夜蜥,Xantusia riversiana)在野山羊被清除后的种群遗传多样性、结构和稳定性。通过DNA微卫星技术,我们发现尽管该种群历史上遭受过放牧,但在基因方面仍具有相当的稳健性,所有采样地点的有效种群大小和遗传多样性指标相似,与栖息地类型和退化程度无关。然而,与大陆同类物种相比,我们也发现了强烈的特定地点遗传变异模式和低遗传多样性,这使得该物种作为岛屿特有物种仍需持续的特殊管理。我们确定了高海拔和低海拔地区,它们仍是遗传多样性的重要储存库,并为其他低扩散沿海生物面对未来气候变化提供了一个案例研究。

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