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完整的磷脂和醌生物标志物可用于评估微生物垫中的微生物多样性和氧化还原状态。

Intact phospholipid and quinone biomarkers to assess microbial diversity and redox state in microbial mats.

机构信息

Department of Microbiology, University of Barcelona, Barcelona, Spain.

出版信息

Microb Ecol. 2010 Jul;60(1):226-38. doi: 10.1007/s00248-010-9645-2. Epub 2010 Mar 17.

Abstract

Microbial mats are stratified microbial communities composed by highly inter-related populations and therefore are frequently chosen as model systems to study diversity and ecophysiological strategies. The present study describes an integrated approach to analyze microbial quinones and intact polar lipids (IPLs) in microbial mats within layers as thin as 500 microm by liquid chromatography-tandem mass spectrometry. Quinone profiles revealed important depth-related differences in community composition in two mat systems. The higher abundance of ubiquinones, compared to menaquinones, reflected the clear predominance of microorganisms belonging to aerobic alpha-, beta-, and gamma-Proteobacteria in Ebro delta estuarine mats. Hypersaline photosynthetic Camargue mats (France) showed a predominance of menaquinone-9 at the top of the mat, which is consistent with an important contribution of facultative aerobic or anaerobic bacteria in its photic zone. Quinone indices also indicated a higher diversity of non-phototrophs and a more anaerobic character in the hypersaline mats. Besides, the dissimilarity index suggested that the samples were greatly influenced by a depth-related redox state gradient. In the analysis of IPLs, there was a predominance of phosphatidylglycerols and sulfoquinovosyldiacylglycerols, the latter being an abundant biomarker of Cyanobacteria. This combined approach based on quinone and IPL analysis has proven to be a useful method to establish differences in the microbial diversity and redox state of highly structure microbial mat systems at a fine-scale level.

摘要

微生物垫是由高度相关的种群组成的分层微生物群落,因此经常被选为研究多样性和生态生理策略的模型系统。本研究描述了一种综合方法,通过液相色谱-串联质谱法分析厚度薄至 500 微米的微生物垫中微生物醌和完整极性脂(IPL)的分层。醌图谱揭示了两个垫系统中群落组成与深度相关的重要差异。与menaquinones 相比,ubiquinones 的丰度较高,反映了属于好氧α、β和γ变形菌的微生物在埃布罗三角洲河口垫中的明显优势。高盐光合卡马格垫(法国)在垫的顶部显示出menaquinone-9 的优势,这与光区中兼性需氧或厌氧细菌的重要贡献一致。醌指数还表明高盐垫中非光养生物的多样性更高,厌氧特性更强。此外,不相似指数表明,样品受到与深度相关的氧化还原状态梯度的极大影响。在 IPL 分析中,磷脂酰甘油和磺基奎诺糖二酰甘油占优势,后者是蓝细菌的丰富生物标志物。基于醌和 IPL 分析的这种综合方法已被证明是一种有用的方法,可以在精细尺度上确定高度结构化微生物垫系统中微生物多样性和氧化还原状态的差异。

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