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通过功能基因组学评估食虫植物类群的适应性进化趋同

Evaluating the adaptive evolutionary convergence of carnivorous plant taxa through functional genomics.

作者信息

Wheeler Gregory L, Carstens Bryan C

机构信息

Department of Evolution, Ecology, & Organismal Biology, The Ohio State University, Columbus, OH, United States of America.

出版信息

PeerJ. 2018 Jan 31;6:e4322. doi: 10.7717/peerj.4322. eCollection 2018.

Abstract

Carnivorous plants are striking examples of evolutionary convergence, displaying complex and often highly similar adaptations despite lack of shared ancestry. Using available carnivorous plant genomes along with non-carnivorous reference taxa, this study examines the convergence of functional overrepresentation of genes previously implicated in plant carnivory. Gene Ontology (GO) coding was used to quantitatively score functional representation in these taxa, in terms of proportion of carnivory-associated functions relative to all functional sequence. Statistical analysis revealed that, in carnivorous plants as a group, only two of the 24 functions tested showed a signal of substantial overrepresentation. However, when the four carnivorous taxa were analyzed individually, 11 functions were found to be significant in at least one taxon. Though carnivorous plants collectively may show overrepresentation in functions from the predicted set, the specific functions that are overrepresented vary substantially from taxon to taxon. While it is possible that some functions serve a similar practical purpose such that one taxon does not need to utilize both to achieve the same result, it appears that there are multiple approaches for the evolution of carnivorous function in plant genomes. Our approach could be applied to tests of functional convergence in other systems provided on the availability of genomes and annotation data for a group.

摘要

食肉植物是进化趋同的显著例子,尽管没有共同的祖先,但它们展现出复杂且通常高度相似的适应性。本研究利用现有的食肉植物基因组以及非食肉参考类群,检验了先前与植物食肉性相关的基因在功能上过度富集的趋同情况。基因本体论(GO)编码被用于根据食肉性相关功能相对于所有功能序列的比例,对这些类群中的功能表现进行定量评分。统计分析表明,作为一个群体,在测试的24种功能中,食肉植物只有两种显示出大量过度富集的信号。然而,当对四个食肉类群分别进行分析时,发现至少在一个类群中有11种功能是显著的。虽然食肉植物总体上可能在预测集合的功能中表现出过度富集,但过度富集的具体功能在不同类群之间差异很大。虽然有些功能可能具有相似的实际用途,以至于一个类群不需要同时利用两者来达到相同的结果,但植物基因组中食肉功能的进化似乎有多种途径。我们的方法可以应用于其他系统的功能趋同测试,前提是该群体有可用基因组和注释数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/132d/5797450/f91631814541/peerj-06-4322-g001.jpg

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