Suppr超能文献

通过一种新颖的计算方法揭示了变形菌与昆虫共生后的全基因组功能差异。

Genome-wide functional divergence after the symbiosis of proteobacteria with insects unraveled through a novel computational approach.

作者信息

Toft Christina, Williams Tom A, Fares Mario A

机构信息

Department of Genetics, Trinity College Dublin, University of Dublin, Dublin, Ireland.

出版信息

PLoS Comput Biol. 2009 Apr;5(4):e1000344. doi: 10.1371/journal.pcbi.1000344. Epub 2009 Apr 3.

Abstract

Symbiosis has been among the most important evolutionary steps to generate biological complexity. The establishment of symbiosis required an intimate metabolic link between biological systems with different complexity levels. The strict endo-cellular symbiotic bacteria of insects are beautiful examples of the metabolic coupling between organisms belonging to different kingdoms, a eukaryote and a prokaryote. The host (eukaryote) provides the endosymbiont (prokaryote) with a stable cellular environment while the endosymbiont supplements the host's diet with essential metabolites. For such communication to take place, endosymbionts' genomes have suffered dramatic modifications and reconfigurations of proteins' functions. Two of the main modifications, loss of genes redundant for endosymbiotic bacteria or the host and bacterial genome streamlining, have been extensively studied. However, no studies have accounted for possible functional shifts in the endosymbiotic proteomes. Here, we develop a simple method to screen genomes for evidence of functional divergence between two species clusters, and we apply it to identify functional shifts in the endosymbiotic proteomes. Despite the strong effects of genetic drift in the endosymbiotic systems, we unexpectedly identified genes to be under stronger selective constraints in endosymbionts of aphids and ants than in their free-living bacterial relatives. These genes are directly involved in supplementing the host's diet with essential metabolites. A test of functional divergence supports a strong relationship between the endosymbiosis and the functional shifts of proteins involved in the metabolic communication with the insect host. The correlation between functional divergence in the endosymbiotic bacterium and the ecological requirements of the host uncovers their intimate biochemical and metabolic communication and provides insights on the role of symbiosis in generating species diversity.

摘要

共生现象一直是产生生物复杂性的最重要进化步骤之一。共生关系的建立需要不同复杂程度的生物系统之间建立紧密的代谢联系。昆虫体内严格的细胞内共生细菌是不同王国的生物(真核生物和原核生物)之间代谢耦合的绝佳例子。宿主(真核生物)为内共生体(原核生物)提供稳定的细胞环境,而内共生体则为宿主的饮食补充必需的代谢物。为了实现这种交流,内共生体的基因组经历了蛋白质功能的巨大修饰和重新配置。其中两个主要的修饰,即内共生细菌或宿主冗余基因的丢失以及细菌基因组的简化,已经得到了广泛研究。然而,尚未有研究考虑内共生蛋白质组中可能的功能转变。在这里,我们开发了一种简单的方法来筛选基因组,以寻找两个物种簇之间功能差异的证据,并将其应用于识别内共生蛋白质组中的功能转变。尽管内共生系统中存在强烈的遗传漂变效应,但我们意外地发现,与自由生活的细菌亲属相比,蚜虫和蚂蚁的内共生体中的基因受到更强的选择限制。这些基因直接参与为宿主的饮食补充必需的代谢物。功能差异测试支持了内共生与参与与昆虫宿主代谢交流的蛋白质功能转变之间的紧密关系。内共生细菌的功能差异与宿主的生态需求之间的相关性揭示了它们密切的生化和代谢交流,并为共生在产生物种多样性中的作用提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b513/2659769/8d0bb9e81e7f/pcbi.1000344.g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验