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渐远分布塑造了高山草甸地区蝗虫的遗传结构。

Gradual Distance Dispersal Shapes the Genetic Structure in an Alpine Grasshopper.

机构信息

Research Unit of Biodiversity (UMIB, UO-CSIC-PA), Oviedo University, 33600 Mieres, Spain.

Department of Biochemistry, Genetics and Immunology, University of Vigo, 36310 Vigo, Spain.

出版信息

Genes (Basel). 2019 Aug 5;10(8):590. doi: 10.3390/genes10080590.

Abstract

The location of the high mountains of southern Europe has been crucial in the phylogeography of most European species, but how extrinsic (topography of sky islands) and intrinsic features (dispersal dynamics) have interacted to shape the genetic structure in alpine restricted species is still poorly known. Here we investigated the mechanisms explaining the colonisation of Cantabrian sky islands in an endemic flightless grasshopper. We scrutinised the maternal genetic variability and haplotype structure, and we evaluated the fitting of two migration models to understand the extant genetic structure in these populations: Long-distance dispersal (LDD) and gradual distance dispersal (GDD). We found that GDD fits the real data better than the LDD model, with an onset of the expansion matching postglacial expansions after the retreat of the ice sheets. Our findings suggest a scenario with small carrying capacity, migration rates, and population growth rates, being compatible with a slow dispersal process. The gradual expansion process along the Cantabrian sky islands found here seems to be conditioned by the suitability of habitats and the presence of alpine corridors. Our findings shed light on our understanding about how organisms which have adapted to live in alpine habitats with limited dispersal abilities have faced new and suitable environmental conditions.

摘要

南欧高山的地理位置在大多数欧洲物种的系统地理学中至关重要,但外在因素(天空岛屿的地形)和内在因素(扩散动态)如何相互作用来塑造高山特有物种的遗传结构仍知之甚少。在这里,我们研究了在一种地方性飞行草蜢中解释坎塔布连天空岛屿殖民化的机制。我们仔细研究了母系遗传变异性和单倍型结构,并评估了两种迁移模型的拟合程度,以了解这些种群的现存遗传结构:长距离扩散(LDD)和逐渐距离扩散(GDD)。我们发现,GDD 比 LDD 模型更能拟合实际数据,其扩张起始时间与冰盖退缩后的冰川后扩张相吻合。我们的研究结果表明,存在着小的承载能力、迁移率和种群增长率,这与缓慢的扩散过程是一致的。在坎塔布连天空岛屿上发现的逐渐扩张过程似乎受到了栖息地适宜性和高山走廊存在的影响。我们的研究结果揭示了这样一种情景,即已经适应在高山环境中生活、扩散能力有限的生物如何面对新的适宜环境条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b83/6724060/5a0e48c7f80a/genes-10-00590-g001.jpg

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