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三种具有不同生态特征的近缘同域分布蛱蝶的比较景观遗传学

Comparative landscape genetics of three closely related sympatric Hesperid butterflies with diverging ecological traits.

作者信息

Engler Jan O, Balkenhol Niko, Filz Katharina J, Habel Jan C, Rödder Dennis

机构信息

Zoological Research Museum Alexander Koenig, Bonn, Germany; Department of Wildlife Sciences, University of Göttingen, Göttingen, Germany.

Department of Wildlife Sciences, University of Göttingen, Göttingen, Germany.

出版信息

PLoS One. 2014 Sep 3;9(9):e106526. doi: 10.1371/journal.pone.0106526. eCollection 2014.

Abstract

To understand how landscape characteristics affect gene flow in species with diverging ecological traits, it is important to analyze taxonomically related sympatric species in the same landscape using identical methods. Here, we present such a comparative landscape genetic study involving three closely related Hesperid butterflies of the genus Thymelicus that represent a gradient of diverging ecological traits. We analyzed landscape effects on their gene flow by deriving inter-population connectivity estimates based on different species distribution models (SDMs), which were calculated from multiple landscape parameters. We then used SDM output maps to calculate circuit-theoretic connectivity estimates and statistically compared these estimates to actual genetic differentiation in each species. We based our inferences on two different analytical methods and two metrics of genetic differentiation. Results indicate that land use patterns influence population connectivity in the least mobile specialist T. acteon. In contrast, populations of the highly mobile generalist T. lineola were panmictic, lacking any landscape related effect on genetic differentiation. In the species with ecological traits in between those of the congeners, T. sylvestris, climate has a strong impact on inter-population connectivity. However, the relative importance of different landscape factors for connectivity varies when using different metrics of genetic differentiation in this species. Our results show that closely related species representing a gradient of ecological traits also show genetic structures and landscape genetic relationships that gradually change from a geographical macro- to micro-scale. Thus, the type and magnitude of landscape effects on gene flow can differ strongly even among closely related species inhabiting the same landscape, and depend on their relative degree of specialization. In addition, the use of different genetic differentiation metrics makes it possible to detect recent changes in the relative importance of landscape factors affecting gene flow, which likely change as a result of contemporary habitat alterations.

摘要

为了解景观特征如何影响具有不同生态特征物种的基因流动,使用相同方法分析同一景观中分类学相关的同域物种非常重要。在此,我们展示了一项这样的比较景观遗传学研究,涉及麝凤蝶属三种密切相关的弄蝶,它们代表了不同生态特征的梯度。我们通过基于不同物种分布模型(SDM)得出种群间连通性估计值来分析景观对其基因流动的影响,这些模型是根据多个景观参数计算得出的。然后,我们使用SDM输出图来计算电路理论连通性估计值,并将这些估计值与每个物种的实际遗传分化进行统计比较。我们的推断基于两种不同的分析方法和两种遗传分化指标。结果表明,土地利用模式影响移动性最差的特化物种麝凤蝶指名亚种的种群连通性。相比之下,移动性强的泛化物种细纹麝凤蝶的种群是随机交配的,在遗传分化上没有任何与景观相关的影响。在具有介于同属其他物种之间生态特征的物种欧亚麝凤蝶中,气候对种群间连通性有强烈影响。然而,在该物种中使用不同的遗传分化指标时,不同景观因素对连通性的相对重要性会有所不同。我们的结果表明,代表生态特征梯度的密切相关物种也显示出从地理宏观尺度到微观尺度逐渐变化的遗传结构和景观遗传关系。因此,即使在栖息于同一景观的密切相关物种中,景观对基因流动的影响类型和程度也可能有很大差异,并取决于它们的相对特化程度。此外,使用不同的遗传分化指标能够检测到影响基因流动的景观因素相对重要性的近期变化,这些变化可能是由于当代栖息地改变所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/179b/4153614/5b9886baef24/pone.0106526.g001.jpg

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