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棘皮动物属 Ciona 内的多态性和分歧。

Polymorphism and divergence within the ascidian genus Ciona.

机构信息

Department of Ecology and Evolutionary Biology, Cornell University, Ithaca, NY 14853, USA.

出版信息

Mol Phylogenet Evol. 2010 Aug;56(2):718-26. doi: 10.1016/j.ympev.2010.03.042. Epub 2010 Apr 18.

Abstract

The genus Ciona, a widely distributed group of solitary ascidians, has long been an important model in embryology and developmental biology. Ciona has also recently attracted the attention of evolutionary biologists because of the remarkably high levels of heterozygosity found within single individuals. Surprisingly, genealogical relationships in Ciona have received little attention. Here, we expand our knowledge of relationships among the members of the Ciona genus and estimate levels of polymorphism in natural populations. Previous studies have documented the outgroup status of Ciona savignyi among the shallow-water Ciona and revealed the existence of two distinct forms (Types A and B) of the widespread Ciona intestinalis. Here, using gene genealogies of six nuclear gene loci, we show Types A and B to be well-supported monophyletic groups. In spite of their morphological similarity, Type A vs. Type B divergences range from 0.035 to 0.124. In contrast, the morphologically distinct Ciona roulei is embedded within Type B in all genealogies, and a new species, Ciona sp., appears to be associated with Type B/C. roulei to the exclusion of Type A. Levels of polymorphism in natural populations are similar to levels reported in other organisms that are considered to be highly polymorphic.

摘要

海鞘属(Ciona)是一个广泛分布的单体海鞘类群,长期以来一直是胚胎学和发育生物学的重要模式生物。由于在单个个体中发现了极高的杂合度,海鞘属最近也引起了进化生物学家的关注。令人惊讶的是,海鞘属内的系统发育关系却很少受到关注。在这里,我们扩展了对海鞘属成员之间关系的了解,并估计了自然种群中的多态性水平。先前的研究已经记录了浅海水域中的 Ciona savignyi 在外群中的地位,并揭示了广泛分布的 Ciona intestinalis 存在两种不同的形式(A 型和 B 型)。在这里,我们使用六个核基因座的基因系统发育树,表明 A 型和 B 型是支持度很高的单系群。尽管它们在形态上相似,但 A 型与 B 型之间的分歧范围从 0.035 到 0.124。相比之下,形态上明显不同的 Ciona roulei 在所有的系统发育树中都嵌入在 B 型中,而一个新的物种 Ciona sp.似乎与 B 型/ C. roulei 相关,而排除了 A 型。自然种群中的多态性水平与被认为高度多态的其他生物体中的多态性水平相似。

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