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Autotrophic potential in mesophilic heterotrophic bacterial isolates from Sino-Pacific marine sediments

机译:中国太平洋海洋沉积物中嗜温异养细菌分离株的自养潜力

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摘要

Microbial carbon fixation is a paramount process in the ocean especially below the photic zone both in water and sedimentary ecosystems. Autotrophic microbes that fix carbon dioxide are renowned. However, the question whether heterotrophs can also fix carbon is intriguing. Ten heterotrophically grown, identified bacterial isolates from the Sino-Pacific marine sediments were tested for autotrophic uptake potential with and without addition of electron donors. Nine of the ten isolates showed carbon uptake capacity without addition of any substrate at very low rates in the order of 10–8 to 10–4 fmol/(cell·h). The addition of manganese and ammonium at 1 mmol/L final concentration enhanced the uptake potential. Addition of 1 mmol/L final concentrations of reduced iron (10–6 to 10–5 fmol/(cell·h) and sulfide (10–5 fmol/(cell·h) decreased the uptake potential significantly at p<0.1. Bacterial tolerance to formaldehyde suggested propensities of anaplerotic chemical reactions that form metabolic intermediates of C-1 metabolism pathways. The isolates displayed high metabolic flexibility. With the changes in electron donors, the isolates metabolically toggled between relatively anoxic reductive iron/sulfur cycles and the oxidative cycles of manganese/ammonium and vice-versa. This property makes these microbes successful survivors in the highly dynamic Sino-Pacific sediments.
机译:微生物固碳是海洋中最重要的过程,尤其是在水和沉积生态系统的光合带之下。固定二氧化碳的自养微生物是著名的。但是,是否存在异养生物也可以固定碳的问题引起了人们的兴趣。测试了十种异养生长的,经鉴定的来自中国太平洋海洋沉积物的细菌分离株在添加和不添加电子供体的情况下的自养吸收潜力。十个分离物中的九个显示出碳吸收能力,而没有以10–8至10–4 fmol /(cell·h)的低速率添加任何底物。最终浓度为1 mmol / L的锰和铵的添加提高了吸收潜力。终浓度为1 mmol / L的还原铁(10-6至10-5 fmol /(cell·h)和硫化物(10-5 fmol /(cell·h))在p <0.1时显着降低了吸收潜力。对甲醛的耐受性表明了形成C-1代谢途径的代谢中间体的异常化学反应的倾向,这些分离物表现出较高的代谢灵活性,随着电子供体的变化,这些分离物在相对缺氧的还原铁/硫循环和氧化循环之间进行了代谢转换。这种特性使这些微生物在高动态的中国太平洋沉积物中成为成功的幸存者。

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  • 来源
    《海洋学报(英文版)》 |2017年第2期|69-77|共9页
  • 作者单位

    Key laboratory of Marine Geology and Environment MAGE, Institute of 0ceanology, Chinese Academy of Sciences I0-CAS, Qingdao 266071, China;

    Key laboratory of Marine Geology and Environment MAGE, Institute of 0ceanology, Chinese Academy of Sciences I0-CAS, Qingdao 266071, China;

    Key laboratory of Marine Geology and Environment MAGE, Institute of 0ceanology, Chinese Academy of Sciences I0-CAS, Qingdao 266071, China;

    Key laboratory of Marine Geology and Environment MAGE, Institute of 0ceanology, Chinese Academy of Sciences I0-CAS, Qingdao 266071, China;

    Institute of Biophysics, Chinese Academy of Sciences IBP-CAS, Beijing 100101, China;

    Key laboratory of Marine Geology and Environment MAGE, Institute of 0ceanology, Chinese Academy of Sciences I0-CAS, Qingdao 266071, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-19 03:57:49
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