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印度洋-太平洋地区鹿角珊瑚的稀有性和遗传多样性。

Rarity and genetic diversity in Indo-Pacific Acropora corals.

出版信息

Ecol Evol. 2012 Aug;2(8):1867-88. doi: 10.1002/ece3.304. Epub 2012 Jul 6.

Abstract

Among various potential consequences of rarity is genetic erosion. Neutral genetic theory predicts that rare species will have lower genetic diversity than common species. To examine the association between genetic diversity and rarity, variation at eight DNA microsatellite markers was documented for 14 Acropora species that display different patterns of distribution and abundance in the Indo-Pacific Ocean. Our results show that the relationship between rarity and genetic diversity is not a positive linear association because, contrary to expectations, some rare species are genetically diverse and some populations of common species are genetically depleted. Our data suggest that inbreeding is the most likely mechanism of genetic depletion in both rare and common corals, and that hybridization is the most likely explanation for higher than expected levels of genetic diversity in rare species. A significant hypothesis generated from our study with direct conservation implications is that as a group, Acropora corals have lower genetic diversity at neutral microsatellite loci than may be expected from their taxonomic diversity, and this may suggest a heightened susceptibility to environmental change. This hypothesis requires validation based on genetic diversity estimates derived from a large portion of the genome.

摘要

在稀有性的各种潜在后果中,有一种是遗传侵蚀。中性遗传理论预测,稀有物种的遗传多样性将低于常见物种。为了检验遗传多样性与稀有性之间的关联,我们对分布和丰度在印度洋-太平洋地区呈现不同模式的 14 种鹿角珊瑚的 8 个 DNA 微卫星标记的变异进行了记录。我们的结果表明,稀有性与遗传多样性之间的关系不是正线性关联,因为与预期相反,一些稀有物种具有遗传多样性,而一些常见物种的种群则遗传枯竭。我们的数据表明,在稀有和常见的珊瑚中,近交是遗传枯竭最可能的机制,而杂交是稀有物种中遗传多样性高于预期水平的最可能解释。我们的研究产生了一个具有直接保护意义的重要假设,即鹿角珊瑚类群在中性微卫星位点的遗传多样性低于其分类多样性所预期的水平,这可能表明它们对环境变化的敏感性更高。这一假设需要基于从基因组的大部分区域得出的遗传多样性估计来验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e34/3433991/8c993cbd0d1f/ece30002-1867-f1.jpg

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