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Cryptic speciation in a model invertebrate chordate

机译:模型无脊椎动物r酸盐中的隐性形态

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摘要

We applied independent species concepts to clarify the phylogeo- graphic structure of the ascidian Ciona intestinalis, a powerful model system in chordate biology and for comparative genomic studies. Intensive research with this marine invertebrate is based on the assumption that natural populations globally belong to a single species. Therefore, understanding the true taxonomic classification may have implications for experimental design and data management. Phylogenies inferred from mitochondrial and nuclear DNA markers accredit the existence of two cryptic species: C. intestinalis sp. A, genetically homogeneous, distributed in the Mediterranean, northeast Atlantic, and Pacific, and C. intestinalis sp. B, geographically structured and encountered in the North Atlantic. Species-level divergence is further entailed by crossbreeding estimates. C. intestinalis A and B from allopatric populations cross-fertilize, but hybrids remain infertile because of defective gametogenesis. Although anatomy illustrates an overall interspecific similarity lacking in diagnostic features, we provide consistent tools for in-field and in-laboratory species discrimination. Finding of two cryptic taxa in C. intestinalis raises interest in a new tunicate genome as a gateway to studies in speciation and ecological adaptation of chordates.
机译:我们应用了独立的物种概念来阐明海鞘Ciona intestinalis的植物学结构,这是一种在碳酸盐生物学和比较基因组研究中的强大模型系统。对这种海洋无脊椎动物的深入研究是基于以下假设:全球自然种群属于一个物种。因此,了解真正的分类学分类可能对实验设计和数据管理有影响。从线粒体和核DNA标记推断出的系统发育鉴定了两个隐性物种的存在:C. intestinalis sp.。 A,遗传上同质,分布在地中海,东北大西洋和太平洋,以及C. intestinalis sp.。 B,地理结构和在北大西洋遇到的。杂交估计进一步加剧了物种水平的差异。来自异源种群的小肠念珠菌A和B可交叉受精,但由于配子发生缺陷,杂种仍然不育。尽管解剖学说明了诊断特征缺乏总体上的种间相似性,但我们为田间和实验室内物种的鉴别提供了一致的工具。在小肠念珠菌中发现两个隐性分类群,引起了人们对新包囊基因组的兴趣,该基因组是研究脊索动物的物种形成和生态适应的门户。

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