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非随机扩散导致鸟类种群内表型分歧。

Nonrandom dispersal drives phenotypic divergence within a bird population.

机构信息

Department of Evolutionary Ecology, Estación Biológica de Doñana-CSIC Av. Américo Vespucio s/n, 41092, Seville, Spain.

出版信息

Ecol Evol. 2013 Nov;3(14):4841-8. doi: 10.1002/ece3.563. Epub 2013 Nov 6.

Abstract

Gene flow through dispersal has traditionally been thought to function as a force opposing evolutionary differentiation. However, directional gene flow may actually reinforce divergence of populations in close proximity. This study documents the phenotypic differentiation over more than two decades in body size (tarsus length) at a very short spatial scale (1.1 km) within a population of pied flycatchers Ficedula hypoleuca inhabiting deciduous and coniferous habitats. Unlike females, males breeding in the deciduous forest were consistently larger than those from the managed coniferous forest. This assortment by size is likely explained by preset habitat preferences leading to dominance of the largest males and exclusion of the smallest ones toward the nonpreferred coniferous forest coupled with directional dispersal. Movements of males between forests were nonrandom with respect to body size and flow rate, which might function to maintain the phenotypic variation in this heritable trait at such a small spatial scale. However, a deeply rooted preference for the deciduous habitat might not be in line with its quality due to the increased levels of breeding density of hole-nesting competitors therein. These results illustrate how eco-evolutionary scenarios can develop under directional gene flow over surprisingly small spatial scales. Our findings come on top of recent studies concerning new ways in which dispersal and gene flow can influence microevolution.

摘要

基因通过扩散而产生的流动传统上被认为是一种与进化分化相对立的力量。然而,定向基因流实际上可能会加强近距离种群的分歧。本研究记录了在短距离(1.1 公里)内,生活在落叶林和针叶林栖息地的 pied flycatchers Ficedula hypoleuca 种群中,超过 20 年的体型(跗跖长度)表型分化。与雌性不同,在落叶林繁殖的雄性一直比来自管理良好的针叶林的雄性大。这种大小的分类可能是由预设的栖息地偏好导致的,这导致最大的雄性占主导地位,而最小的雄性则被排斥到不喜欢的针叶林,再加上定向扩散。雄性在森林之间的运动与体型和流速无关,这可能有助于在如此小的空间尺度上维持这种可遗传特征的表型变异。然而,由于其中巢洞竞争者的繁殖密度增加,对落叶栖息地的根深蒂固的偏好可能与其质量不符。这些结果说明了在定向基因流下,生态进化情景如何在令人惊讶的小空间尺度上发展。我们的研究结果是在最近关于扩散和基因流如何影响微观进化的新方式的研究之上得出的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aee9/3867915/46da11aec559/ece30003-4841-f1.jpg

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