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Essential genes of a minimal bacterium

机译:最小细菌的必需基因

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Mycoplasma genitalium has the smallest genome of any organism that can be grown in pure culture. It has a minimal metabolism and little genomic redundancy. Consequently, its genome is expected to be a close approximation to the minimal set of genes needed to sustain bacterial life. Using global transposon mutagenesis, we isolated and characterized gene disruption mutants for 100 different nonessential protein-coding genes. None of the 43 RNA-coding genes were disrupted. Herein, we identify 382 of the 482 M. genitalium protein-coding genes as essential, plus five sets of disrupted genes that encode proteins with potentially redundant essential functions, such as phosphate transport. Genes encoding proteins of unknown function constitute 28% of the essential protein-coding genes set. Disruption of some genes accelerated M. genitalium growth.
机译:生殖支原体具有可在纯培养物中生长的任何生物体中最小的基因组。它具有最小的新陈代谢和很少的基因组冗余。因此,预期其基因组与维持细菌生命所需的最小基因集非常接近。使用全球转座子诱变,我们分离和表征了100个不同的非必需蛋白质编码基因的基因破坏突变体。 43个RNA编码基因都没有被破坏。在这里,我们确定482个生殖器支原体蛋白质编码基因中的382个为必需基因,再加上五组被破坏的基因,它们编码具有潜在冗余基本功能(例如磷酸盐转运)的蛋白质。编码功能未知的蛋白质的基因构成必需蛋白质编码基因集的28%。一些基因的破坏加速了生殖器支原体的生长。

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