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受历史和当代因素塑造的区域组合:来自一个物种丰富的昆虫类群的证据。

Regional assemblages shaped by historical and contemporary factors: Evidence from a species-rich insect group.

机构信息

College of Life Sciences, Capital Normal University, Beijing, China.

Suqian Institute of Agricultural Sciences, Jiangsu Academy of Agricultural Sciences, Suqian, China.

出版信息

Mol Ecol. 2020 Jul;29(13):2492-2510. doi: 10.1111/mec.15412. Epub 2020 Apr 6.

DOI:10.1111/mec.15412
PMID:32163643
Abstract

Understanding diversity patterns requires accounting for the roles of both historical and contemporary factors in the assembly of communities. Here, we compared diversity patterns of two moth assemblages sampled from Taihang and Yanshan mountains in Northern China and performed ancestral range reconstructions using the Multi-State Speciation and Extinction model, to track the origins of these patterns. Further, we estimated diversification rates of the two moth assemblages and explored the effects of contemporary ecological factors. From 7,788 specimens we identified 835 species belonging to 23 families, using both DNA barcode analysis and morphology. Moths in Yanshan mountains showed higher species diversity than in Taihang mountains. Ancestral range analysis indicated Yanshan as the origin, with significant historical dispersals from Yanshan to Taihang. Asymmetrical diversification, population expansion, along with frequent and considerable gene flow were detected between communities. Moreover, dispersal limitation or the joint effect of environment filtering and dispersal limitation were inferred as main driving forces shaping current diversity patterns. In summary, we demonstrate that a multiscale (community, population and species level) analysis incorporating both historical and contemporary factors can be useful in delineating factors contributing to community assembly and patterning in diversity.

摘要

理解多样性模式需要考虑历史和当代因素在群落组装中的作用。在这里,我们比较了来自中国北方太行山和燕山的两个飞蛾类群的多样性模式,并使用多状态物种形成和灭绝模型进行了祖先范围重建,以追踪这些模式的起源。此外,我们估计了两个飞蛾类群的多样化速率,并探讨了当代生态因素的影响。从 7788 个样本中,我们通过 DNA 条形码分析和形态学鉴定出 835 种,分属于 23 个科。燕山山脉的飞蛾种类比太行山的更加丰富。祖先范围分析表明,燕山山脉是起源地,并且从燕山山脉到太行山山脉有明显的历史扩散。不对称多样化、种群扩张以及群落之间频繁且相当大的基因流都被检测到。此外,推断扩散限制或环境过滤和扩散限制的共同作用是塑造当前多样性模式的主要驱动力。总之,我们证明了一个多尺度(群落、种群和物种水平)的分析,同时考虑历史和当代因素,可以有助于确定对群落组装和多样性模式形成有贡献的因素。

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