首页> 外文OA文献 >Discovery of anaerobic lithoheterotrophic haloarchaea, ubiquitous in hypersaline habitats
【2h】

Discovery of anaerobic lithoheterotrophic haloarchaea, ubiquitous in hypersaline habitats

机译:发现厌氧性岩异型营养性haloarchaea,无处不在的高盐生境

摘要

Hypersaline anoxic habitats harbour numerous novel uncultured archaea whose metabolic and ecological roles remain to be elucidated. Until recently, it was believed that energy generation via dissimilatory reduction of sulfur compounds is not functional at salt saturation conditions. Recent discovery of the strictly anaerobic acetotrophic Halanaeroarchaeum compels to change both this assumption and the traditional view on haloarchaea as aerobic heterotrophs. Here we report on isolation and characterization of a novel group of strictly anaerobic lithoheterotrophic haloarchaea, which we propose to classify as a new genus Halodesulfurarchaeum. Members of this previously unknown physiological group are capable of utilising formate or hydrogen as electron donors and elemental sulfur, thiosulfate or dimethylsulfoxide as electron acceptors. Using genome-wide proteomic analysis we have detected the full set of enzymes required for anaerobic respiration and analysed their substrate-specific expression. Such advanced metabolic plasticity and type of respiration, never seen before in haloarchaea, empower the wide distribution of Halodesulfurarchaeum in hypersaline inland lakes, solar salterns, lagoons and deep submarine anoxic brines. The discovery of this novel functional group of sulfur-respiring haloarchaea strengthens the evidence of their possible role in biogeochemical sulfur cycling linked to the terminal anaerobic carbon mineralisation in so far overlooked hypersaline anoxic habitats.
机译:高盐缺氧的生境包含许多新的未培养古细菌,其代谢和生态作用尚待阐明。直到最近,据信通过异化还原硫化合物产生的能量在盐饱和条件下还没有作用。最近发现的严格厌氧的营养型Halanaeroarchaeum迫使改变了这一假设和传统观点,即将卤古菌视为有氧异养生物。在这里,我们报告了一组严格厌氧的异养性盐生古细菌的分离和鉴定,我们建议将其分类为新的卤代硫古细菌。该先前未知的生理学组的成员能够利用甲酸盐或氢作为电子供体,而将元素硫,硫代硫酸盐或二甲基亚砜用作电子受体。使用全基因组蛋白质组学分析,我们检测了厌氧呼吸所需的全套酶,并分析了其底物特异性表达。这种高级的代谢可塑性和呼吸类型在卤古菌中从未见过,使卤代硫古菌在高盐度内陆湖泊,太阳盐湖,泻湖和深海缺氧盐水中广泛分布。这个新的呼吸硫的盐生古细菌功能基团的发现,加强了它们在迄今被忽视的高盐缺氧生境中与末端厌氧碳矿化有关的生物地球化学硫循环中可能发挥作用的证据。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号