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Molecular analysis of diversity, gene expression and activity of mineral-associated bacteria.

机译:矿物相关细菌的多样性,基因表达和活性的分子分析。

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摘要

This dissertation investigated the diversity and hydrogenase activity and gene expression of mineral-associated microorganisms. Surface-associated microbes have been shown to dominate diversity and activity in the environment, however molecular analysis of sediment-associated communities is hindered by both inaccessibility to the subsurface and co-extraction of inhibitory compounds. In order to analyze microbial communities in which the environmental conditions previously had precluded the use of traditional sediment extraction techniques, biofilm coupons (metal, mesh cylinders containing surrogate substrata) were used to recover microorganisms able to attach and compete in a biofilm. The community recovered from the contaminated site using hematite as a surrogate substratum was dominated by microbes most closely related to Alcaligenes sp. (metal-tolerant), Frateuria sp. (acidophilic), and Methylobacterium radiotolerans (radionuclide-tolerant) which together reflect the acidic, metal-, and radionuclide-contaminated environment. Hematite, as compared to other substrata, was shown to recover communities most closely representative of sediment communities inhabiting the saturated zone.; Surface-associated cells have been shown to express greater activity than suspended populations and mineral-associated sulfate-reducing bacteria (SRB) mediate the formation of different secondary minerals as compared to suspended cells. In order to investigate the affect of surface-association on enzyme activity, hydrogenase enzyme activity was compared in hematite-associated and suspended populations of the SRB Desulfovibrio desulfuricans Essex 6. Hydrogenase activity of surface-associated populations was higher than that displayed by suspended cells. Hydrogenase likely affects the pH and pE of the conditions immediately surrounding the cell. The greater rate of activity may be one factor which contributes to the formation of a mineral phase not observed in the presence of suspended populations of this bacterium. In order to determine the portion of cells expressing hydrogenase in the surface-associated populations, in situ reverse-transcription PCR was applied to the hematite-associated cells and all cells were expressing the [NiFe] hydrogenase gene. This thesis demonstrates that environmental conditions of contaminated subsurface environments select for microorganisms able to tolerate or utilize the contaminants. Also, the hydrogenase activity of surface-associated populations in not representative of the suspended cells, thus indicating the importance of studying attached populations where enzyme activity likely influences the conditions at the mineral-microbe interface.
机译:本文研究了矿物相关微生物的多样性,氢化酶活性和基因表达。已证明与表面相关的微生物在环境中起着决定性作用,但是与沉积物相关的群落的分子分析由于难以接近地下和共提取抑制性化合物而受到阻碍。为了分析以前环境条件无法使用传统沉积物提取技术的微生物群落,生物膜试样(金属,包含替代基质的网状圆柱体)用于回收能够附着并在生物膜中竞争的微生物。使用赤铁矿作为替代基质从受污染地点恢复的社区主要由与Alcaligenes sp。最相关的微生物所控制。 (耐金属),Frateuria sp.。 (耐酸)和耐甲基甲烷杆菌(耐放射性核素),它们共同反映了酸性,金属和放射性核素污染的环境。与其他地层相比,赤铁矿可恢复最能代表居住在饱和带的沉积物群落的群落。与悬浮细胞相比,与表面相关的细胞表达的活性更高,与矿物相关的硫酸盐还原细菌(SRB)可以介导形成不同的次要矿物。为了研究表面缔合对酶活性的影响,在SRB脱硫弧菌脱硫尿埃塞克斯6号的赤铁矿缔合和悬浮种群中比较了氢酶活性,表面缔合种群的氢化酶活性高于悬浮细胞。氢酶可能会影响细胞周围条件的pH和pE。较高的活性速率可能是导致在该细菌的悬浮种群存在下未观察到的矿物质相形成的一个因素。为了确定在表面相关群体中表达氢化酶的细胞部分,对赤铁矿相关细胞进行了原位逆转录PCR,所有细胞都表达了[NiFe]氢化酶基因。本论文证明了受污染的地下环境的环境条件选择了能够耐受或利用污染物的微生物。同样,在不代表悬浮细胞的表面相关群体的氢化酶活性,因此表明研究酶活性可能影响矿物质-微生物界面条件的附着群体的重要性。

著录项

  • 作者

    Reardon, Catherine Leona.;

  • 作者单位

    Montana State University.;

  • 授予单位 Montana State University.;
  • 学科 Biology Microbiology.; Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;环境污染及其防治;
  • 关键词

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