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多维环境空间中的遗传混合:不对称生态位相似性促进犰狳(Dasypus novemcinctus)的基因流动。

Genetic admixture in multidimensional environmental space: asymmetrical niche similarity promotes gene flow in armadillos (Dasypus novemcinctus).

机构信息

Departamento de Ecología de la Biodiversidad, Instituto de Ecología, Universidad Nacional Autónoma de México, Apartado Postal 70-275, México, Distrito Federal 04510, México.

出版信息

Evolution. 2011 Sep;65(9):2470-80. doi: 10.1111/j.1558-5646.2011.01329.x. Epub 2011 May 17.

DOI:10.1111/j.1558-5646.2011.01329.x
PMID:21884050
Abstract

We unite genetic data with a robust test of niche divergence to test the hypothesis that patterns of gene flow between two lineages of the nine-banded armadillo are influenced by their climatic niches. We collected Geographical Information System (GIS) data on climate using locality information from 111 individuals from two lineages that had associated genetic material. We tested whether niches of these lineages were more conserved or divergent than the background environments of their geographic ranges and found evidence for niche conservatism on two axes and no evidence for divergence on any axis. To address the role of niche similarity in gene flow, we genotyped the 111 individuals at five microsatellite loci and tested whether admixed individuals tended to be located in parts of multidimensional environmental space (E-space) shared between the two lineages. We observed an asymmetrical pattern of overlap, in which the West lineage's E-space was almost completely included inside East lineage's E-space. Genetic admixture levels were significantly higher in the West lineage and, for both lineages, in shared portions of E-space. This suggests that niche similarity can facilitate gene flow among disjunct groups with moderate-to-good dispersal capabilities, contrasting with the prevailing view of niche conservatism as a diversifying force.

摘要

我们将遗传数据与对生态位差异的稳健测试相结合,以检验以下假设:两种九带犰狳谱系之间的基因流动模式受其气候生态位的影响。我们使用来自两个具有相关遗传物质的谱系的 111 个个体的位置信息,收集了地理信息系统(GIS)气候数据。我们测试了这些谱系的生态位是否比其地理范围的背景环境更保守或更具差异,结果发现两个轴上存在生态位保守的证据,而任何轴上都没有生态位差异的证据。为了解决生态位相似性在基因流动中的作用,我们在 5 个微卫星位点对 111 个个体进行了基因分型,并测试了杂种个体是否倾向于位于两个谱系之间共享的多维环境空间(E-空间)的部分区域。我们观察到了一种不对称的重叠模式,其中西谱系的 E-空间几乎完全包含在东谱系的 E-空间内。在西谱系中,遗传混合水平显著较高,对于两个谱系来说,在 E-空间的共享部分也是如此。这表明,在具有中等至良好扩散能力的隔离群体中,生态位相似性可以促进基因流动,这与生态位保守性作为一种多样化力量的主流观点形成对比。

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