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物种形成过程:以布什蟋蟀波氏鸣螽为例的案例研究

Speciation Progress: A Case Study on the Bushcricket Poecilimon veluchianus.

作者信息

Eweleit Lucienne, Reinhold Klaus, Sauer Jan

机构信息

Department of Evolutionary Biology, Bielefeld University, Bielefeld, Germany.

Department of Chemical Ecology, Bielefeld University, Bielefeld, Germany.

出版信息

PLoS One. 2015 Oct 5;10(10):e0139494. doi: 10.1371/journal.pone.0139494. eCollection 2015.

Abstract

Different mechanisms such as selection or genetic drift permitted e.g. by geographical isolation can lead to differentiation of populations and could cause subsequent speciation. The two subspecies of Poecilimon veluchianus, a bushcricket endemic to central Greece, show a parapatric distribution and are partially reproductively isolated. Therefore, P. veluchianus is suitable to investigate an ongoing speciation process. We based our analysis on sequences of the internal transcribed spacer (ITS) and the mitochondrial control region (CR). The population genetic analysis based on the nuclear marker ITS revealed a barrier to gene flow within the range of Poecilimon veluchianus, which corresponds well to the described subspecies. In contrast to the results based on the nuclear ITS marker, the mitochondrial CR marker does not clearly support the separation into two subspecies with restricted gene flow and a clear contact zone. Furthermore, we could identify isolation by distance (IBD) as one important mechanism responsible for the observed genetic structure (based on the ITS marker). The population genetic analysis based on the nuclear marker ITS also suggests the existence of hybrids in the wild. Furthermore, the simultaneous lack of strong prezygotic barriers and the presence of postzygotic mating barriers, observed in previous laboratory experiments, suggest that a secondary contact after an allopatric phase is more likely than parapatric speciation.

摘要

诸如选择或基因漂变等不同机制,例如由地理隔离所导致的,可引起种群分化,并可能导致随后的物种形成。希腊中部特有的一种蟋蟀Poecilimon veluchianus的两个亚种呈现出邻域分布,并且在生殖上部分隔离。因此,Poecilimon veluchianus适合用于研究正在进行的物种形成过程。我们的分析基于内部转录间隔区(ITS)和线粒体控制区(CR)的序列。基于核标记ITS的群体遗传分析揭示了在Poecilimon veluchianus分布范围内存在基因流动障碍,这与所描述的亚种情况非常吻合。与基于核ITS标记的结果相反,线粒体CR标记并未明确支持将其分为两个基因流动受限且有明确接触区的亚种。此外,我们能够确定距离隔离(IBD)是导致观察到的遗传结构(基于ITS标记)的一个重要机制。基于核标记ITS的群体遗传分析还表明在野外存在杂交种。此外,先前实验室实验中观察到的同时缺乏强烈的合子前障碍和存在合子后交配障碍,表明异域阶段后的二次接触比邻域物种形成更有可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9892/4593647/da0847cb6ec1/pone.0139494.g001.jpg

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