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矿物学影响着原始含水层中与地质基质相关的细菌群落的结构和多样性。

Mineralogy influences structure and diversity of bacterial communities associated with geological substrata in a pristine aquifer.

作者信息

Boyd Eric S, Cummings David E, Geesey Gill G

机构信息

Department of Microbiology, Montana State University, Bozeman, MT, USA.

出版信息

Microb Ecol. 2007 Jul;54(1):170-82. doi: 10.1007/s00248-006-9187-9. Epub 2007 Mar 16.

Abstract

Our understanding of mineralogical influences on subsurface microbial community structure and diversity has been difficult to assess due to difficulties in isolating this variable from others in the subsurface environment. In this study, biofilm coupons were used to isolate specific geological substrata from the surrounding geological matrix during colonization by microorganisms suspended in the surrounding groundwater for an 8-week period. Upon retrieval, the structure and diversity of the microbial community associated with each type of substratum was evaluated using 16S rDNA-based terminal-restriction fragment length polymorphism (T-RFLP). Phylogenetic affiliations of the populations associated with each type of substratum were established based on sequence analysis of near full-length 16S rDNA obtained through construction of a clone library. Hematite, quartz, and saprolite each harbored a community dominated by members of the division Proteobacteria (>67% of community). However, the different substrata selected for different subdivisions of bacteria within the Proteobacteria. After accounting for the influence exerted by substratum type on recovery of DNA from the attached populations, both phylogenetic data and Jaccard and Bray-Curtis similarity indices derived from terminal-restriction fragment (T-RF) profiles suggested a strong mineralogical influence on the structure and composition of the solid phase-associated community. The results suggest that mineralogical heterogeneity influences microbial community structure and diversity in pristine aquifers.

摘要

由于难以在地下环境中将这一变量与其他变量隔离开来,我们对矿物学对地下微生物群落结构和多样性的影响的理解一直难以评估。在本研究中,生物膜试片用于在8周时间内,在被周围地下水中悬浮的微生物定殖期间,从周围地质基质中分离特定地质底层。取回后,使用基于16S rDNA的末端限制性片段长度多态性(T-RFLP)评估与每种底层类型相关的微生物群落的结构和多样性。基于通过构建克隆文库获得的近全长16S rDNA的序列分析,确定与每种底层类型相关的种群的系统发育关系。赤铁矿、石英和腐泥土各自都含有一个以变形菌门成员为主的群落(占群落的>67%)。然而,不同的底层为变形菌门内不同的细菌亚群提供了选择。在考虑了底层类型对附着种群DNA回收的影响后,系统发育数据以及源自末端限制性片段(T-RF)图谱的Jaccard和Bray-Curtis相似性指数均表明,矿物学对与固相相关的群落的结构和组成有强烈影响。结果表明,矿物学异质性影响原始含水层中的微生物群落结构和多样性。

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