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高盐度微生物垫中类绿弯菌属细菌的多样性与功能:系统发育特征及对有氧呼吸的影响

Diversity and function of Chloroflexus-like bacteria in a hypersaline microbial mat: phylogenetic characterization and impact on aerobic respiration.

作者信息

Bachar Ami, Omoregie Enoma, de Wit Rutger, Jonkers Henk M

机构信息

Max Planck Institute for Marine Microbiology, Bremen, Germany.

出版信息

Appl Environ Microbiol. 2007 Jun;73(12):3975-83. doi: 10.1128/AEM.02532-06. Epub 2007 Apr 20.

DOI:10.1128/AEM.02532-06
PMID:17449697
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1932729/
Abstract

We studied the diversity of Chloroflexus-like bacteria (CLB) in a hypersaline phototrophic microbial mat and assayed their near-infrared (NIR) light-dependent oxygen respiration rates. PCR with primers that were reported to specifically target the 16S rRNA gene from members of the phylum Chloroflexi resulted in the recovery of 49 sequences and 16 phylotypes (sequences of the same phylotype share more than 96% similarity), and 10 of the sequences (four phylotypes) appeared to be related to filamentous anoxygenic phototrophic members of the family Chloroflexaceae. Photopigment analysis revealed the presence of bacteriochlorophyll c (BChlc), BChld, and gamma-carotene, pigments known to be produced by phototrophic CLB. Oxygen microsensor measurements for intact mats revealed a NIR (710 to 770 nm) light-dependent decrease in aerobic respiration, a phenomenon that we also observed in an axenic culture of Chloroflexus aurantiacus. The metabolic ability of phototrophic CLB to switch from anoxygenic photosynthesis under NIR illumination to aerobic respiration under non-NIR illumination was further used to estimate the contribution of these organisms to mat community respiration. Steady-state oxygen profiles under dark conditions and in the presence of visible (VIS) light (400 to 700 nm), NIR light (710 to 770 nm), and VIS light plus NIR light were compared. NIR light illumination led to a substantial increase in the oxygen concentration in the mat. The observed impact on oxygen dynamics shows that CLB play a significant role in the cycling of carbon in this hypersaline microbial mat ecosystem. This study further demonstrates that the method applied, a combination of microsensor techniques and VIS and NIR illumination, allows rapid establishment of the presence and significance of CLB in environmental samples.

摘要

我们研究了高盐光养微生物垫中类绿弯菌属细菌(CLB)的多样性,并测定了它们近红外(NIR)光依赖的氧呼吸速率。使用据报道能特异性靶向绿弯菌门成员16S rRNA基因的引物进行PCR,得到了49个序列和16个系统发育型(同一系统发育型的序列相似度超过96%),其中10个序列(4个系统发育型)似乎与绿弯菌科的丝状无氧光养成员相关。光色素分析表明存在细菌叶绿素c(BChlc)、BChld和γ-胡萝卜素,这些色素是光养CLB产生的。对完整垫子的氧微传感器测量显示,有氧呼吸在近红外(710至770 nm)光下依赖光而降低,我们在橙色绿弯菌的纯培养物中也观察到了这一现象。光养CLB从近红外光照下的无氧光合作用切换到非近红外光照下的有氧呼吸的代谢能力,进一步用于估计这些生物体对垫子群落呼吸的贡献。比较了黑暗条件下以及存在可见光(VIS,400至700 nm)、近红外光(710至770 nm)和可见光加近红外光时的稳态氧分布。近红外光照导致垫子中氧浓度大幅增加。观察到的对氧动态的影响表明,CLB在这个高盐微生物垫生态系统的碳循环中起着重要作用。这项研究进一步证明,所应用的方法,即微传感器技术与可见光和近红外光照相结合,能够快速确定环境样品中CLB的存在及其重要性。