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织纹螺的系统发育地理学:同属物种的复杂模式。

Phylogeography in Nassarius mud snails: Complex patterns in congeneric species.

作者信息

Pu Chuanliang, Li Haitao, Zhu Aijia, Chen Yiyong, Zhao Yan, Zhan Aibin

机构信息

Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Haidian District, Beijing, China.

University of Chinese Academy of Sciences, Shijingshan District, Beijing, China.

出版信息

PLoS One. 2017 Jul 12;12(7):e0180728. doi: 10.1371/journal.pone.0180728. eCollection 2017.

Abstract

One major goal for phylogeographical studies is to elucidate respective roles of multiple evolutionary and ecological forces that shape the current distribution patterns. In marine and coastal ecosystems, it has been generated a common realization that species with enormous population size and pelagic larval stages can disperse across broad geographical scales, leading to weak or even no phylogeographical structure across large geographical scales. However, the violation of such realization has been frequently reported, and it remains largely unexplored on mechanisms responsible for various phylogeographical patterns observed in different species at varied geographical scales. Here, we used a species-rich genus Nassarius to assess and compare phylogeographical patterns in congeneric species, and discuss causes and consequences underlying varied phylogeographical patterns. Interestingly, we observed complex phylogeographical patterns both within single species and across multiple species, and multiple analyses showed varied levels of genetic heterogeneity among sites within and across species. Available evidence suggests that related species with similar biological characteristics may not be necessary to result in consistent phylogeographical patterns. Multiple factors, including larval ecology, interactions between dispersal and natural selection, and human activity-mediated dispersal, can partially explain the complex patterns observed in this study. Deep investigations should be performed on these factors, particularly their respective roles in determining evolutionary/ecological processes to form phylogeographical patterns in species with high dispersal capacities in marine and coastal ecosystems.

摘要

系统发育地理学研究的一个主要目标是阐明塑造当前分布格局的多种进化和生态力量各自所起的作用。在海洋和沿海生态系统中,人们普遍认识到,具有庞大种群规模和浮游幼虫阶段的物种能够在广阔的地理尺度上扩散,从而导致在大地理尺度上出现较弱甚至没有系统发育地理结构的情况。然而,这种认识被违反的情况却经常被报道,而且对于在不同地理尺度上不同物种所观察到的各种系统发育地理格局背后的机制,仍在很大程度上未被探索。在这里,我们以物种丰富的织纹螺属为例,评估和比较同属物种的系统发育地理格局,并讨论不同系统发育地理格局背后的原因和影响。有趣的是,我们在单个物种内部和多个物种之间都观察到了复杂的系统发育地理格局,并且多项分析表明,物种内部和物种之间不同地点的遗传异质性水平各不相同。现有证据表明,具有相似生物学特征的相关物种不一定会导致一致的系统发育地理格局。包括幼虫生态学、扩散与自然选择之间的相互作用以及人类活动介导的扩散在内的多种因素,能够部分解释本研究中观察到的复杂格局。应该对这些因素进行深入研究,特别是它们在决定海洋和沿海生态系统中具有高扩散能力物种形成系统发育地理格局的进化/生态过程中各自所起的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac0b/5507531/20023bf8807f/pone.0180728.g001.jpg

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