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康氏菌科海洋细菌的系统发育与代谢潜能研究进展
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作者 王佳华 弋伊 徐俊 《微生物学报》 CAS CSCD 北大核心 2021年第3期555-563,共9页
康氏菌科(Kangillaceae)是海洋螺杆菌目(Oceanosprillales)下的科级分类单元,包含康氏菌属(Kangiella)、异康氏菌属(Aliikangiella)和Pleionea三个属。在康氏菌属高度精简的基因组中存在异常丰富的胞外蛋白酶编码基因,暗示此类海洋细菌... 康氏菌科(Kangillaceae)是海洋螺杆菌目(Oceanosprillales)下的科级分类单元,包含康氏菌属(Kangiella)、异康氏菌属(Aliikangiella)和Pleionea三个属。在康氏菌属高度精简的基因组中存在异常丰富的胞外蛋白酶编码基因,暗示此类海洋细菌对海洋颗粒有机物中的蛋白质成分降解具有重要贡献。鉴于已分离鉴定的康氏菌属模式菌株专一性利用蛋白类营养物质,我们建议将该属译为"食朊菌属"。本文将结合本实验室的研究进展,对康氏菌科细菌的分离培养过程、系统发育关系、代谢特点和潜在生态功能进行综述,为研究此类海洋细菌的生理生态功能提供思路。 展开更多
关键词 海洋螺杆菌目 康氏菌属 胞外蛋白酶 颗粒有机物降解 海洋细菌
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The POM-DOM piezophilic microorganism continuum(PDPMC)—The role of piezophilic microorganisms in the global ocean carbon cycle 被引量:5
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作者 FANG JiaSong ZHANG Li +6 位作者 LI Jiang Tao Chiaki KATO Christian TAMBURINI ZHANG YuZhong DANG HongYue WANG GuangYi WANG FengPing 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第1期106-115,共10页
The deep ocean piezosphere accounts for a significant part of the global ocean,hosts active and diverse microbial communities which probably play a more important role than hitherto recognized in the global ocean carb... The deep ocean piezosphere accounts for a significant part of the global ocean,hosts active and diverse microbial communities which probably play a more important role than hitherto recognized in the global ocean carbon cycle.The conventional biological pump concept and the recently proposed microbial carbon pump mechanism provide a foundation for our understanding of the role of microorganisms in cycling of carbon in the ocean.However,there are significant gaps in our knowledge and a lack of mechanistic understanding of the processes of microbially-mediated production,transformation,degradation,and export of marine dissolved and particulate organic matter(DOM and POM)in the deep ocean and the ecological consequence.Here we propose the POM-DOM piezophilic microorganism continuum(PDPMC)conceptual model,to address these important biogeochemical processes in the deep ocean.We propose that piezophilic microorganisms(bacteria and archaea)play a pivotal role in deep ocean carbon cycle where microbial production of exoenzymes,enzymatic breakdown of DOM and transformation of POM fuels the rapid cycling of marine organic matter,and serve as the primary driver for carbon cycle in the deep ocean. 展开更多
关键词 carbon cycle deep ocean DOM PDPMC piezophilic microorganisms POM
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