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Thermophilic Fe(III)-Reducing Bacteria from the Deep Subsurface: The Evolutionary Implications

机译:来自深地下的嗜热Fe(III)还原细菌:进化的意义。

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Thermophilic (45° to 75℃) bacteria that reduce amorphous Fe(III)-oxyhydroxide to magnetic iron oxides have been discovered in two geologically and hydrologically isolated Cretaceous- and Triassic-age sedimentary basins in the deep ( > 860 meters below land surface) terrestrial subsurface. Molecular analyses based on 16S ribosomal RNA (rRNA) gene sequences revealed that some of these bacteria represent an unrecognized phylogenetic group of dissimilatory Fe(III)-reducing bacteria. This discovery adds another dimension to the study of microbial Fe(III) reduction and biogenic magnetism. It also provides examples for understanding the history of Fe(III)-reducing microorganisms and for assessing possible roles of such microorganisms on hot primitive planets.
机译:在深部(地表以下> 860米)的两个地质和水文隔离的白垩纪和三叠纪时代的沉积盆地中,发现了将无定形的Fe(III)-羟基氢氧化物还原为磁性氧化铁的嗜热细菌(45°至75℃)。陆地地下。基于16S核糖体RNA(rRNA)基因序列的分子分析显示,这些细菌中的某些代表无法识别的异化Fe(III)还原细菌的系统发生群。这一发现为微生物还原Fe(III)和生物磁性提供了新的视角。它还提供了一些实例,以了解还原Fe(III)的微生物的历史,并评估此类微生物在高温原始行星上的可能作用。

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