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风化伟晶花岗岩上细菌群落结构的表征

Characterization of bacterial community structure on a weathered pegmatitic granite.

作者信息

Gleeson Deirdre B, Kennedy Nabla M, Clipson Nicholas, Melville Karrie, Gadd Geoffrey M, McDermott Frank P

机构信息

Microbial Ecology Group, School of Biology and Environmental Science, University College Dublin, Belfield, Dublin 4, Ireland.

出版信息

Microb Ecol. 2006 May;51(4):526-34. doi: 10.1007/s00248-006-9052-x. Epub 2006 Apr 29.

Abstract

This study exploited the contrasting major element chemistry of a pegmatitic granite to investigate mineralogical influences on bacterial community structure. Intact crystals of variably weathered muscovite, plagioclase, K-feldspar, and quartz were extracted, together with whole-rock granite. Environmental scanning electron microscopy revealed a diversity of bacterial structures, with rods and cocci clearly visible on surfaces of all mineral types. Bacterial automated ribosomal intergenic spacer analysis was used to generate a ribotype profile for each mineral. A randomization test revealed that community fingerprints differed between different mineral types, whereas canonical correspondence analysis (CCA) showed that mineral chemistry affected individual bacterial ribotypes. CCA also revealed that Al, Si, and Ca had a significant impact on bacterial community structure within the system, which contrasts with the finding within fungal communities that although Al and Si also had a significant impact, K rather than Ca was important. The bacterial populations associated with different minerals were different. Members of each of these populations were found almost exclusively on a single mineral type, as was previously reported for fungal populations. These results show that bacterial community structure was driven by the chemical composition of minerals, indicating selective pressure by individual chemical elements on bacterial populations in situ.

摘要

本研究利用伟晶花岗岩中主要元素化学组成的差异,来探究矿物学对细菌群落结构的影响。提取了不同风化程度的白云母、斜长石、钾长石和石英的完整晶体,以及花岗岩全岩。环境扫描电子显微镜显示出多样的细菌结构,在所有矿物类型的表面都能清晰看到杆菌和球菌。利用细菌自动核糖体基因间隔区分析为每种矿物生成核糖体分型图谱。随机化检验表明,不同矿物类型之间的群落指纹不同,而典范对应分析(CCA)显示矿物化学性质影响单个细菌核糖体分型。CCA还表明,铝、硅和钙对系统内细菌群落结构有显著影响,这与真菌群落中的发现形成对比,在真菌群落中,虽然铝和硅也有显著影响,但钾而非钙是重要因素。与不同矿物相关的细菌种群不同。这些种群中的每一个种群的成员几乎只在单一矿物类型上被发现,这与之前关于真菌种群的报道情况相同。这些结果表明,细菌群落结构受矿物化学成分驱动,表明单个化学元素对原位细菌种群存在选择压力。

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