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从头鉴定克里斯蒂跳甲转录组有助于标记的发现和遗传分歧的推断。

De novo characterization of the Timema cristinae transcriptome facilitates marker discovery and inference of genetic divergence.

机构信息

Department of Ecology and Evolutionary Biology, University of Colorado, Boulder, CO 80303, USA.

出版信息

Mol Ecol Resour. 2012 May;12(3):549-61. doi: 10.1111/j.1755-0998.2012.03121.x. Epub 2012 Feb 17.

Abstract

Adaptation to different ecological environments can promote speciation. Although numerous examples of such 'ecological speciation' now exist, the genomic basis of the process, and the role of gene flow in it, remains less understood. This is, at least in part, because systems that are well characterized in terms of their ecology often lack genomic resources. In this study, we characterize the transcriptome of Timema cristinae stick insects, a system that has been researched intensively in terms of ecological speciation, but for which genomic resources have not been previously developed. Specifically, we obtained >1 million 454 sequencing reads that assembled into 84,937 contigs representing approximately 18,282 unique genes and tens of thousands of potential molecular markers. Second, as an illustration of their utility, we used these genomic resources to assess multilocus genetic divergence within both an ecotype pair and a species pair of Timema stick insects. The results suggest variable levels of genetic divergence and gene flow among taxon pairs and genes and illustrate a first step towards future genomic work in Timema.

摘要

适应不同的生态环境可以促进物种形成。虽然现在有许多这样的“生态物种形成”的例子,但这一过程的基因组基础以及基因流动的作用仍不太清楚。这至少部分是因为,在生态方面特征明显的系统往往缺乏基因组资源。在这项研究中,我们对 Timema cristinae 竹节虫的转录组进行了描述,这是一个在生态物种形成方面进行了深入研究的系统,但之前并没有开发出基因组资源。具体来说,我们获得了超过 100 万个 454 测序reads,这些 reads 组装成 84937 个 contigs,代表了大约 18282 个独特的基因和数万个潜在的分子标记。其次,作为其效用的说明,我们使用这些基因组资源评估了 Timema 竹节虫的一对生态型和一对物种的多个基因座的遗传分歧。结果表明,在分类群对和基因之间存在不同程度的遗传分歧和基因流动,并说明了未来在 Timema 进行基因组研究的第一步。

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