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博氏菊海鞘物种复合体中两个群体海鞘分支的起源与扩散历史

Origin and Dispersal History of Two Colonial Ascidian Clades in the Botryllus schlosseri Species Complex.

作者信息

Nydam Marie L, Giesbrecht Kirsten B, Stephenson Emily E

机构信息

Division of Science and Mathematics, Centre College, Danville, Kentucky, United States of America.

出版信息

PLoS One. 2017 Jan 20;12(1):e0169944. doi: 10.1371/journal.pone.0169944. eCollection 2017.

Abstract

Human-induced global warming and species introductions are rapidly altering the composition and functioning of Earth's marine ecosystems. Ascidians (Phylum Chordata, Subphylum Tunicata, Class Ascidiacea) are likely to play an increasingly greater role in marine communities. The colonial ascidian B. schlosseri is a cryptic species complex comprising five genetically divergent clades (A-E). Clade A is a global species, and Clade E has so far been identified in European waters only. Using the largest mitochondrial cytochrome oxidase I datasets yet assembled, we determine the origin and dispersal history of these species. Nucleotide diversity and Approximate Bayesian Computation analyses support a Pacific origin for Clade A, with two likely dispersal scenarios that both show the northwestern Atlantic populations establishing early in the history of the species. Both Discrete Phylogeographic Analysis and Approximate Bayesian Computation support an origin of Clade E on the French side of the English Channel. An unsampled lineage evolved from the French lineage, which reflects the conclusion from the median joining network that not all Clade E lineages have been sampled. This unsampled lineage gave rise to the haplotypes on the English side of the English Channel, which were the ancestors to the Mediterranean and Bay of Biscay populations. Clade E has a wider geographic range than previously thought, and shows evidence of recent range expansion. Both Clade A and Clade E should be considered widespread species: Clade A globally and Clade E within Europe.

摘要

人为导致的全球变暖以及物种引入正在迅速改变地球海洋生态系统的组成和功能。海鞘(脊索动物门,被囊亚门,海鞘纲)很可能在海洋群落中发挥越来越重要的作用。群体海鞘Botryllus schlosseri是一个隐性物种复合体,由五个遗传上不同的进化枝(A - E)组成。进化枝A是一个全球分布的物种,而进化枝E到目前为止仅在欧洲海域被发现。利用迄今组装的最大的线粒体细胞色素氧化酶I数据集,我们确定了这些物种的起源和扩散历史。核苷酸多样性和近似贝叶斯计算分析支持进化枝A起源于太平洋,有两种可能的扩散情景,这两种情景都表明大西洋西北部的种群在该物种历史早期就已建立。离散系统地理学分析和近似贝叶斯计算都支持进化枝E起源于英吉利海峡法国一侧。一个未采样的谱系从法国谱系进化而来,这反映了中位连接网络的结论,即并非所有进化枝E的谱系都已被采样。这个未采样的谱系产生了英吉利海峡英国一侧的单倍型,这些单倍型是地中海和比斯开湾种群的祖先。进化枝E的地理范围比以前认为的更广,并显示出近期范围扩张的证据。进化枝A和进化枝E都应被视为广泛分布的物种:进化枝A全球分布,进化枝E在欧洲分布。

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