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Horizontally transferred genes cluster spatially and metabolically

机译:水平转移的基因在空间和代谢上成簇

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Genomic uptake of DNA by prokaryotes often encompasses more than a single gene. In many cases, several horizontally transferred genes may be acquired together. Accordingly, we expect that horizontally transferred genes cluster spatially in the genome more often than expected if transfers were independent. Further, genes that depend on each other functionally may be unlikely to have beneficial fitness effects when taken up individually by a foreign genome. Hence, we also expect the co-acquisition of functionally related genes, resulting in the clustering of horizontally transferred genes in functional networks. Analysing spatial and metabolic clustering of recent horizontal (or lateral) gene transfers among 21 γ-proteobacteria, we confirm both predictions. When comparing two datasets of predicted transfers that differ in their expected false-positive rate, we find that the more stringent dataset shows a stronger enrichment of clustered pairs. The enrichment of interdependent metabolic genes among predicted transfers supports a biologically significant role of horizontally transferred genes in metabolic adaptation. Our results further suggest that spatial and metabolic clustering may be used as a benchmark for methods that predict recent horizontal gene transfers. This article was reviewed by Peter Gogarten in collaboration with Luiz Thiberio Rangel, and by Yuri Wolf.
机译:原核生物对DNA的基因组吸收通常包含多个基因。在许多情况下,可以一起获取几个水平转移的基因。因此,我们期望水平转移的基因在基因组中在空间上的聚集比如果转移是独立的更频繁。此外,在功能上相互依赖的基因在被外源基因组单独摄取时可能不太可能具有有益的适应性作用。因此,我们也期望功能相关基因的共同获得,从而导致功能网络中水平转移基因的聚集。分析21γ-变形杆菌之间最近水平(或侧向)基因转移的空间和代谢聚类,我们确认了这两个预测。比较两个预期误报率不同的预测转移数据集时,我们发现更严格的数据集显示出更丰富的聚类对。预测的转移中相互依赖的代谢基因的富集支持了水平转移基因在代谢适应中的生物学重要作用。我们的结果进一步表明,空间和代谢聚类可以用作预测近期水平基因转移的方法的基准。这篇文章由Peter Gogarten与Luiz Thiberio Rangel以及Yuri Wolf合作进行了审查。

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