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磷脂衍生脂肪酸和醌类作为海洋沉积物中细菌生物量和群落结构的标志物。

Phospholipid-derived fatty acids and quinones as markers for bacterial biomass and community structure in marine sediments.

作者信息

Kunihiro Tadao, Veuger Bart, Vasquez-Cardenas Diana, Pozzato Lara, Le Guitton Marie, Moriya Kazuyoshi, Kuwae Michinobu, Omori Koji, Boschker Henricus T S, van Oevelen Dick

机构信息

Department of Ecosystem Studies, Royal Netherlands Institute of Sea Research (NIOZ), Yerseke, The Netherlands; Department of Marine Microbiology, Royal Netherlands Institute of Sea Research (NIOZ), Yerseke, The Netherlands.

Department of Ecosystem Studies, Royal Netherlands Institute of Sea Research (NIOZ), Yerseke, The Netherlands.

出版信息

PLoS One. 2014 Apr 25;9(4):e96219. doi: 10.1371/journal.pone.0096219. eCollection 2014.

Abstract

Phospholipid-derived fatty acids (PLFA) and respiratory quinones (RQ) are microbial compounds that have been utilized as biomarkers to quantify bacterial biomass and to characterize microbial community structure in sediments, waters, and soils. While PLFAs have been widely used as quantitative bacterial biomarkers in marine sediments, applications of quinone analysis in marine sediments are very limited. In this study, we investigated the relation between both groups of bacterial biomarkers in a broad range of marine sediments from the intertidal zone to the deep sea. We found a good log-log correlation between concentrations of bacterial PLFA and RQ over several orders of magnitude. This relationship is probably due to metabolic variation in quinone concentrations in bacterial cells in different environments, whereas PLFA concentrations are relatively stable under different conditions. We also found a good agreement in the community structure classifications based on the bacterial PLFAs and RQs. These results strengthen the application of both compounds as quantitative bacterial biomarkers. Moreover, the bacterial PLFA- and RQ profiles revealed a comparable dissimilarity pattern of the sampled sediments, but with a higher level of dissimilarity for the RQs. This means that the quinone method has a higher resolution for resolving differences in bacterial community composition. Combining PLFA and quinone analysis as a complementary method is a good strategy to yield higher resolving power in bacterial community structure.

摘要

磷脂衍生脂肪酸(PLFA)和呼吸醌(RQ)是微生物化合物,已被用作生物标志物来量化细菌生物量,并表征沉积物、水体和土壤中的微生物群落结构。虽然PLFAs已被广泛用作海洋沉积物中细菌的定量生物标志物,但醌分析在海洋沉积物中的应用非常有限。在本研究中,我们调查了从潮间带到深海的广泛海洋沉积物中这两类细菌生物标志物之间的关系。我们发现细菌PLFA和RQ的浓度在几个数量级上存在良好的对数-对数相关性。这种关系可能是由于不同环境中细菌细胞内醌浓度的代谢变化,而PLFA浓度在不同条件下相对稳定。我们还发现基于细菌PLFAs和RQs的群落结构分类结果具有良好的一致性。这些结果加强了这两种化合物作为细菌定量生物标志物的应用。此外,细菌PLFA和RQ图谱揭示了采样沉积物具有可比的差异模式,但RQs的差异水平更高。这意味着醌方法在解析细菌群落组成差异方面具有更高的分辨率。将PLFA和醌分析结合作为一种互补方法,是在细菌群落结构研究中获得更高分辨率的良好策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c8a/4000199/3a414b7a9019/pone.0096219.g001.jpg

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