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影响寄生性微生物真核生物的原核生物横向基因转移模式。

Patterns of prokaryotic lateral gene transfers affecting parasitic microbial eukaryotes.

作者信息

Alsmark Cecilia, Foster Peter G, Sicheritz-Ponten Thomas, Nakjang Sirintra, Martin Embley T, Hirt Robert P

出版信息

Genome Biol. 2013 Feb 25;14(2):R19. doi: 10.1186/gb-2013-14-2-r19.

Abstract

BACKGROUND

The influence of lateral gene transfer on gene origins and biology in eukaryotes is poorly understood compared with those of prokaryotes. A number of independent investigations focusing on specific genes, individual genomes, or specific functional categories from various eukaryotes have indicated that lateral gene transfer does indeed affect eukaryotic genomes. However, the lack of common methodology and criteria in these studies makes it difficult to assess the general importance and influence of lateral gene transfer on eukaryotic genome evolution.

RESULTS

We used a phylogenomic approach to systematically investigate lateral gene transfer affecting the proteomes of thirteen, mainly parasitic, microbial eukaryotes, representing four of the six eukaryotic super-groups. All of the genomes investigated have been significantly affected by prokaryote-to-eukaryote lateral gene transfers, dramatically affecting the enzymes of core pathways, particularly amino acid and sugar metabolism, but also providing new genes of potential adaptive significance in the life of parasites. A broad range of prokaryotic donors is involved in such transfers, but there is clear and significant enrichment for bacterial groups that share the same habitats, including the human microbiota, as the parasites investigated.

CONCLUSIONS

Our data show that ecology and lifestyle strongly influence gene origins and opportunities for gene transfer and reveal that, although the outlines of the core eukaryotic metabolism are conserved among lineages, the genes making up those pathways can have very different origins in different eukaryotes. Thus, from the perspective of the effects of lateral gene transfer on individual gene ancestries in different lineages, eukaryotic metabolism appears to be chimeric.

摘要

背景

与原核生物相比,横向基因转移对真核生物基因起源和生物学的影响了解较少。一些针对各种真核生物的特定基因、单个基因组或特定功能类别的独立研究表明,横向基因转移确实会影响真核生物基因组。然而,这些研究缺乏通用的方法和标准,使得难以评估横向基因转移对真核生物基因组进化的总体重要性和影响。

结果

我们采用系统基因组学方法,系统地研究了影响13种主要为寄生性的微生物真核生物蛋白质组的横向基因转移,这些真核生物代表了六个真核超群中的四个。所有被研究的基因组都受到了从原核生物到真核生物的横向基因转移的显著影响,极大地影响了核心途径的酶,特别是氨基酸和糖代谢的酶,但也为寄生虫生命中具有潜在适应性意义的新基因提供了来源。广泛的原核生物供体参与了此类转移,但与所研究的寄生虫共享相同栖息地(包括人类微生物群)的细菌类群明显且显著富集。

结论

我们的数据表明,生态和生活方式强烈影响基因起源和基因转移机会,并揭示出,尽管核心真核生物代谢的轮廓在各谱系中是保守的,但构成这些途径的基因在不同真核生物中可能有非常不同的起源。因此,从横向基因转移对不同谱系中单个基因祖先的影响来看,真核生物代谢似乎是嵌合的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d60c/4053834/50e2ed36b91c/gb-2013-14-2-r19-1.jpg

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