Theoretical Biology and Bioinformatics, University of Utrecht, Padualaan 8 3584 CH, Utrecht, The Netherlands.
Proc Natl Acad Sci U S A. 2009 Dec 22;106(51):21748-53. doi: 10.1073/pnas.0907584106. Epub 2009 Dec 9.
Horizontal gene transfer (HGT) is one of the most dominant forces molding prokaryotic gene repertoires. These repertoires can be as small as approximately 200 genes in intracellular organisms or as large as approximately 9,000 genes in large, free-living bacteria. In this article we ask what is the impact of HGT from phylogenetically distant sources, relative to the size of the gene repertoire. Using different approaches for HGT detection and focusing on both cumulative and recent evolutionary histories, we find a surprising pattern of nonlinear enrichment of long-distance transfers in large genomes. Moreover, we find a strong positive correlation between the sizes of the donor and recipient genomes. Our results also show that distant horizontal transfers are biased toward those functional groups that are enriched in large genomes, showing that the trends in functional gene content and the impact of distant transfers are interdependent. These results highlight the intimate relationship between environmental and genomic complexity in microbes and suggest that an ecological, as opposed to phylogenetic, signal in gene content gains relative importance in large-genomed bacteria.
水平基因转移(HGT)是塑造原核生物基因库的最主要力量之一。这些基因库的大小差异很大,从细胞内生物的大约 200 个基因到大型自由生活细菌的大约 9000 个基因不等。在本文中,我们探讨了相对于基因库的大小,来自系统发育上较远的来源的 HGT 的影响。我们使用不同的 HGT 检测方法,并关注累积和近期进化历史,发现了一个令人惊讶的模式,即在大型基因组中,长距离转移呈非线性富集。此外,我们还发现供体和受体基因组之间存在强烈的正相关。我们的结果还表明,远距离水平转移偏向于那些在大型基因组中丰富的功能群,表明功能基因含量的趋势和远距离转移的影响是相互依存的。这些结果突出了微生物中环境和基因组复杂性之间的密切关系,并表明相对于大型基因组细菌,在基因含量获得方面,生态而非系统发育信号相对重要。