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首页> 外文期刊>BMC Microbiology >The genome sequence of Geobacter metallireducens: features of metabolism, physiology and regulation common and dissimilar to Geobacter sulfurreducens
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The genome sequence of Geobacter metallireducens: features of metabolism, physiology and regulation common and dissimilar to Geobacter sulfurreducens

机译:还原性土壤杆菌的基因组序列:与还原性土壤杆菌相同和不同的代谢,生理和调节特征

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Background The genome sequence of Geobacter metallireducens is the second to be completed from the metal-respiring genus Geobacter, and is compared in this report to that of Geobacter sulfurreducens in order to understand their metabolic, physiological and regulatory similarities and differences. Results The experimentally observed greater metabolic versatility of G. metallireducens versus G. sulfurreducens is borne out by the presence of more numerous genes for metabolism of organic acids including acetate, propionate, and pyruvate. Although G. metallireducens lacks a dicarboxylic acid transporter, it has acquired a second putative succinate dehydrogenase/fumarate reductase complex, suggesting that respiration of fumarate was important until recently in its evolutionary history. Vestiges of the molybdate (ModE) regulon of G. sulfurreducens can be detected in G. metallireducens, which has lost the global regulatory protein ModE but retained some putative ModE-binding sites and multiplied certain genes of molybdenum cofactor biosynthesis. Several enzymes of amino acid metabolism are of different origin in the two species, but significant patterns of gene organization are conserved. Whereas most Geobacteraceae are predicted to obtain biosynthetic reducing equivalents from electron transfer pathways via a ferredoxin oxidoreductase, G. metallireducens can derive them from the oxidative pentose phosphate pathway. In addition to the evidence of greater metabolic versatility, the G. metallireducens genome is also remarkable for the abundance of multicopy nucleotide sequences found in intergenic regions and even within genes. Conclusion The genomic evidence suggests that metabolism, physiology and regulation of gene expression in G. metallireducens may be dramatically different from other Geobacteraceae.
机译:背景金属还原菌的基因组序列是第二个从金属呼吸菌属中获得的,并且在本报告中与金属还原菌的基因组序列进行了比较,以了解其代谢,生理和调节的异同。结果实验观察到的金属还原李糖相对于硫还原李糖具有更高的代谢通用性,这是因为存在更多的有机酸代谢基因,包括乙酸盐,丙酸盐和丙酮酸盐。尽管金属还原杆菌缺乏二羧酸转运蛋白,但它已经获得了第二种假定的琥珀酸脱氢酶/富马酸酯还原酶复合物,这表明直到最近在其进化史中,富马酸酯的呼吸才是重要的。可以在金属还原菌中检测到G. sulfreducens的钼酸盐(ModE)调节剂的遗迹,该组织已经失去了全局调节蛋白ModE,但保留了一些假定的ModE结合位点,并增加了钼辅助因子生物合成的某些基因。在这两个物种中,氨基酸代谢的几种酶具有不同的起源,但是基因组织的显着模式得以保留。预计大多数土杆菌科可通过铁氧还蛋白氧化还原酶从电子转移途径获得生物合成的还原当量,而金属还原杆菌可从氧化戊糖途径获得它们。除了具有更高的代谢通用性的证据外,金属还原还原杆菌基因组还因在基因间区域甚至基因内发现的大量多核苷酸核苷酸序列而引人注目。结论该基因组证据表明,金属还原菌中的代谢,生理学和基因表达的调控可能与其他土杆菌科有很大不同。

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