首页> 外文期刊>FEMS Microbiology Letters >Diversity of ribulose-1,5-bisphosphate carboxylase/oxygenase large-subunit genes in the MgCl2-dominated deep hypersaline anoxic basin discovery
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Diversity of ribulose-1,5-bisphosphate carboxylase/oxygenase large-subunit genes in the MgCl2-dominated deep hypersaline anoxic basin discovery

机译:MgCl2为主的深高盐缺氧盆地发现中核糖-1,5-二磷酸羧化酶/加氧酶大亚基基因的多样性

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Partial sequences of the form I (cbbL) and form II (cbbM) of the ribulose-1,5-bisphosphate carboxylase/oxygenase (RuBisCO) large subunit genes were obtained from the brine and interface of the MgCl2-dominated deep hypersaline anoxic basin Discovery. CbbL and cbbM genes were found in both brine and interface of the Discovery Basin but were absent in the overlying seawater. The diversity of both genes in the brine and interface was low, which might caused by the extreme saline conditions in Discovery of similar to 5 M MgCl2. None of the retrieved sequences were closely related to sequences deposited in the GenBank database. A phylogenetic analysis demonstrated that the cbbL sequences were affiliated with a Thiobacillus sp. or with one of the RuBisCO genes from Hydrogenovibrio marinus. The cbbM sequences clustered with thiobacilli or formed a new group with no close relatives. The results implicate that bacteria with the potential for carbon dioxide fixation and chemoautotrophy are present in the Discovery Basin. This is the first report demonstrating that RuBisCO genes are present under hypersaline conditions of 5 M MgCl2.
机译:从MgCl2为主的深高盐缺氧盆地的盐水和界面中获得了核糖1,5-双磷酸羧化酶/加氧酶(RuBisCO)大亚基基因的I型(cbbL)和II型(cbbM)的部分序列。在发现盆地的盐水和界面中都发现了CbbL和cbbM基因,但上覆海水中却没有。盐水和界面中这两个基因的多样性都很低,这可能是由于发现类似于5 M MgCl2的极端盐条件造成的。没有一个检索到的序列与GenBank数据库中存储的序列紧密相关。系统发育分析表明,cbbL序列与硫杆菌属。或来自海藻的RuBisCO基因之一。 cbbM序列与硫杆菌结合或形成一个没有近亲的新群体。结果表明,发现盆地中存在具有二氧化碳固定和化学自养潜力的细菌。这是第一份证明RuBisCO基因存在于5 M MgCl2的高盐条件下的报告。

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