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Evolutionary Analysis of the Bacillus subtilis Genome Reveals New Genes Involved in Sporulation

机译:枯草芽孢杆菌基因组的进化分析揭示了孢子症的新基因

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Bacilli can form dormant, highly resistant, and metabolically inactive spores to cope with extreme environmental challenges. In this study, we examined the evolutionary age of Bacillus subtilis sporulation genes using the approach known as genomic phylostratigraphy. We found that B. subtilis sporulation genes cluster in several groups that emerged at distant evolutionary time-points, suggesting that the sporulation process underwent several stages of expansion. Next, we asked whether such evolutionary stratification of the genome could be used to predict involvement in sporulation of presently uncharacterized genes (y-genes). We individually inactivated a representative sample of uncharacterized genes that arose during the same evolutionary periods as the known sporulation genes and tested the resulting strains for sporulation phenotypes. Sporulation was significantly affected in 16 out of 37 (43%) tested strains. In addition to expanding the knowledge base on B. subtilis sporulation, our findings suggest that evolutionary age could be used to help with genome mining.
机译:Bacilli可以形成休眠,高度抗性和代谢无活性的孢子,以应对极端的环境挑战。在这项研究中,我们使用称为基因组文学的方法检查了枯草芽孢杆菌孢子孢杆菌基因的进化年龄。我们发现B.枯草芽孢杆菌孢子基因在远处进化时间点出现的几个群体中,表明孢子化过程接受了几个扩张阶段。接下来,我们询问基因组的这种进化分层是否可用于预测目前无表特异性基因(Y-基因)的孢子症。我们单独灭活了在与已知孢子化基因相同的进化期间产生的非特征基因的代表性样品,并测试了孢子状表型的所得菌株。 37个(43%)测试的菌株中有16个(43%)的奶油显着影响。除了扩大枯草芽孢杆菌孢子素的知识群外,我们的研究结果表明,进化年龄可用于帮助基因组采矿。

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