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首页> 外文期刊>Microbes and Environments >Genetic Evidence for Bacterial Chemolithoautotrophy Based on the Reductive Tricarboxylic Acid Cycle in Groundwater Systems
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Genetic Evidence for Bacterial Chemolithoautotrophy Based on the Reductive Tricarboxylic Acid Cycle in Groundwater Systems

机译:基于还原性三羧酸循环的地下水系统细菌化学自养的遗传证据

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Geologically and chemically distinct aquifers were screened for the presence of two genes coding for key enzymes of the reverse tricarboxylic acid (rTCA) cycle in autotrophic bacteria, 2-oxoglutarate : ferredoxin oxidoreductase ( oorA ) and the beta subunit of ATP citrate lyase enzymes ( aclB ). From 42 samples investigated, aclB genes were detected in two and oorA genes in six samples retrieved from polluted and sulfidic aquifers. aclB genes were represented by a single phylotype of almost identical sequences closely affiliated with chemolithoautotrophic Sulfurimonas species. In contrast, sequences analysis of oorA genes revealed diverse phylotypes mainly related to sequences from cultivation-independent studies.
机译:筛选了在地质和化学上不同的含水层中是否存在两个编码自养细菌中反向三羧酸(rTCA)循环关键酶的基因,即2-氧戊二酸:铁氧还蛋白氧化还原酶(oorA)和ATP柠檬酸裂解酶的β亚基(aclB )。从调查的42个样本中,从受污染的和硫化的含水层中检索到的六个样本中,在两个样本中检测到aclB基因,在六个样本中检测到oorA基因。 aclB基因由几乎相同的序列的单一系统型表示,该序列与化学自养营养性嗜硫酸单胞菌属物种紧密相关。相反,oorA基因的序列分析揭示了多种系统型,主要与独立于培养的研究相关。

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