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Ecological speciation in darkness? Spatial niche partitioning in sibling subterranean spiders (Araneae:Linyphiidae:Troglohyphantes)

机译:黑暗中的生态形态? 在兄弟司布地下蜘蛛中的空间利基分区(Araneae:Linyphiidae:Troglohyphantes)

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Speciation in subterranean habitats is commonly explained as the result of divergent selection in geographically isolated populations; conversely, the contribution of niche partitioning in driving subterranean species diversification has been rarely quantified. The present study integrated molecular and morphological data with a hypervolume analysis based on functional traits to investigate a potential case of parapatric speciation by means of niche differentiation in two sibling spiders inhabiting contiguous subterranean habitats within a small alpine hypogean site. Troglohyphantes giachinoi, sp. nov. and T. bornensis are diagnosed by small details of the genitalia, which are likely to be involved in a reproductive barrier. Molecular analysis recovered the two species as sister, and revealed a deep genetic divergence that may trace back to the Messinian (similar to 6 million years ago). The hypervolume analysis highlighted a marginal overlap in their ecological niches, coupled with morphological character displacement. Specifically, T. giachinoi, sp. nov. exhibits morphological traits suitable for thriving in the smaller pores of the superficial network of underground fissures (Milieu Souterrain Superficiel, MSS), whereas T. bornensis shows a greater adaptation to the deep subterranean habitat. Our results suggest that different selective regimes within the subterranean environment, i.e. deep caves v. MSS, may either drive local speciation or facilitate contiguous distributions of independently subterranean adapted species.
机译:由于地理上分离群体的不同选择,常常解释地下栖息地的形态;相反,很少量化利基分区在驱动地下物种多样化方面的贡献。本研究综合分子和形态学数据具有基于功能性状的超疗程分析,以探讨通过在小型高山低端现场内的两个兄弟蜘蛛患者的利基分化来调查Parapatric形态的潜在情况。 Troglohyphantes Giachinoi,SP。 11月。疾病诊断为生殖器的小细节诊断出来,这可能涉及生殖障碍。分子分析作为姐妹恢复了两种物种,并揭示了可能追溯到梅内尼亚人(类似于600万年前)的深遗传分歧。超级化分析突出显示其生态龛中的边缘重叠,再加上形态字符位移。具体而言,SP.Giachinoi。 11月。展示适合于蓬勃发展的地下裂缝浅地毛孔(Milieu Souterrain Superficiel,MSS)的毛孔形态特征,而T.Bortensis表现出对深层地下栖息地的改进。我们的研究结果表明,地下环境中的不同选择性制度,即深洞穴v。MSS,可以驱动局部物种或促进独立的地下适应性的连续分布。

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