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雀鹀杂交带遗传结构的时空变化。

Spatio-temporal changes in the genetic structure of the Passerina bunting hybrid zone.

机构信息

Fuller Evolutionary Biology Program, Cornell Laboratory of Ornithology, Ithaca, NY 14850, USA.

出版信息

Mol Ecol. 2011 Mar;20(6):1166-75. doi: 10.1111/j.1365-294X.2010.04987.x. Epub 2011 Jan 14.

Abstract

Although theoretical models predict that the structure of a hybrid zone can change under a variety of scenarios, only a few empirical studies of hybrid zones have unequivocally demonstrated zone movement. These studies are rare because few data sets exist that include repeated, temporally spaced, samples of the same hybrid zone. We analysed mitochondrial DNA haplotype data from samples separated by 40-45 years from across the Passerina amoena (Lazuli Bunting) and Passerina cyanea (Indigo Bunting) hybrid zone to investigate whether the genetic structure of this zone has changed during that interval. Both cline and generalized linear mixed modelling analyses uncovered a significant narrowing and a substantial westward shift of the Passerina bunting hybrid zone, clearly illustrating hybrid zone movement. The cause of the change may be due to a combination of ecological, demographic and behavioural factors. Our results predict that the width of the hybrid zone will continue to narrow over time, a finding consistent with reinforcement theory.

摘要

尽管理论模型预测,在各种情况下,杂种区的结构都可能发生变化,但只有少数关于杂种区的实证研究明确证明了区带的移动。这些研究很少见,因为很少有数据集包含同一杂种区的重复、时间间隔、样本。我们分析了横跨 Passerina amoena(Lazuli Bunting)和 Passerina cyanea(Indigo Bunting)杂种区的线粒体 DNA 单倍型数据,这些样本相隔 40-45 年,以调查在此期间该区域的遗传结构是否发生了变化。无论是渐变分析还是广义线性混合模型分析,都揭示了 Passerina bunting 杂种区的显著变窄和向西的大幅移动,清楚地说明了杂种区的移动。这种变化的原因可能是由于生态、人口和行为因素的综合作用。我们的研究结果预测,随着时间的推移,杂种区的宽度将继续变窄,这一发现与强化理论一致。

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