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嗜酸微生物群落对不同 pH 值条件响应的定量蛋白质组学分析。

Quantitative proteomic analyses of the response of acidophilic microbial communities to different pH conditions.

机构信息

Microbiology Graduate Group, Department of Plant and Microbial Biology, University of California, Berkeley, CA, USA.

出版信息

ISME J. 2011 Jul;5(7):1152-61. doi: 10.1038/ismej.2010.200. Epub 2011 Jan 13.

Abstract

Extensive genomic characterization of multi-species acid mine drainage microbial consortia combined with laboratory cultivation has enabled the application of quantitative proteomic analyses at the community level. In this study, quantitative proteomic comparisons were used to functionally characterize laboratory-cultivated acidophilic communities sustained in pH 1.45 or 0.85 conditions. The distributions of all proteins identified for individual organisms indicated biases for either high or low pH, and suggests pH-specific niche partitioning for low abundance bacteria and archaea. Although the proteome of the dominant bacterium, Leptospirillum group II, was largely unaffected by pH treatments, analysis of functional categories indicated proteins involved in amino acid and nucleotide metabolism, as well as cell membrane/envelope biogenesis were overrepresented at high pH. Comparison of specific protein abundances indicates higher pH conditions favor Leptospirillum group III, whereas low pH conditions promote the growth of certain archaea. Thus, quantitative proteomic comparisons revealed distinct differences in community composition and metabolic function of individual organisms during different pH treatments. Proteomic analysis revealed other aspects of community function. Different numbers of phage proteins were identified across biological replicates, indicating stochastic spatial heterogeneity of phage outbreaks. Additionally, proteomic data were used to identify a previously unknown genotypic variant of Leptospirillum group II, an indication of selection for a specific Leptospirillum group II population in laboratory communities. Our results confirm the importance of pH and related geochemical factors in fine-tuning acidophilic microbial community structure and function at the species and strain level, and demonstrate the broad utility of proteomics in laboratory community studies.

摘要

对多物种酸性矿山排水微生物群落进行广泛的基因组特征分析,并结合实验室培养,使得在群落水平上应用定量蛋白质组学分析成为可能。在这项研究中,我们使用定量蛋白质组学比较来功能表征在 pH 值为 1.45 或 0.85 条件下维持的实验室培养嗜酸群落。对单个生物体鉴定的所有蛋白质的分布表明存在偏向于高或低 pH 的情况,这表明低丰度细菌和古菌存在 pH 特异性生态位划分。尽管优势细菌 Leptospirillum 组 II 的蛋白质组受 pH 处理的影响不大,但功能类别的分析表明,高 pH 值时氨基酸和核苷酸代谢以及细胞膜/包膜生物发生相关的蛋白质过表达。比较特定蛋白质的丰度表明,较高的 pH 值有利于 Leptospirillum 组 III 的生长,而较低的 pH 值则促进了某些古菌的生长。因此,定量蛋白质组学比较揭示了在不同 pH 处理下群落组成和单个生物体代谢功能的明显差异。蛋白质组学分析揭示了群落功能的其他方面。跨生物学重复鉴定出不同数量的噬菌体蛋白,表明噬菌体爆发存在随机的空间异质性。此外,蛋白质组学数据还用于鉴定 Leptospirillum 组 II 的一种先前未知的基因型变体,这表明在实验室群落中对特定的 Leptospirillum 组 II 种群进行了选择。我们的研究结果证实了 pH 值和相关地球化学因素在精细调整嗜酸微生物群落结构和功能方面的重要性,达到了物种和菌株水平,同时也证明了蛋白质组学在实验室群落研究中的广泛应用。

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