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Relationships between microbial community composition and function, bacterial growth mode and pollutants in estuarine environments.

机译:河口环境中微生物群落组成与功能,细菌生长方式和污染物之间的关系。

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摘要

Salt marshes, which are tidally-influenced and reside at the interface between often heavily-developed uplands and the open ocean, are among the most productive ecosystems on the planet and protect the coastal ocean from terrestrially-derived pollution. Microbial communities in salt marshes catalyze most reactions that are characteristic of salt marsh biogeochemistry and thus contribute to salt marsh beneficial functions. As salt marshes are frequently polluted with heavy metals, organic pollutants, and nitrate due to upland development, whether the pollution affects marsh microbial communities, their physical compartmentalization and biogeochemical cycling (e.g. denitrification) are important to know. This dissertation thus examines the relationships between microbial communities, bacterial growth mode and pollutants in estuarine environments, with an emphasis on salt marshes. The results of this research are that: (1) despite high natural variability in the intrinsically complex and dynamic salt marsh environments, both eubacterial and denitrifier community composition are significantly correlated with heavy metal pollution, (2) denitrifiers, and thus denitrification, are selectively advantaged by being particle-associated on the smallest sediment particles where bacteria are embedded in exopolymeric substances and exist within a protective biofilm, (3) the denitrifier community composition, and thus denitrification and its relatedness to common predictors such as population size and organic carbon content, varies within salt marshes due to variations in environmental factors such as salinity from up to downstream, and that (4) microbial communities and the specific operational taxonomic units within community profiles were related to stress factors and thus could be pollution indicators in estuarine environments. This dissertation represents an important characterization of microbial communities and denitrification in salt marshes on the California coast, and demonstrates contributions of small scale heterogeneity to large scale spatial variability in salt marsh microbial processes. Collectively, this dissertation indicates that microbial communities may be a directly-relevant and useful indicators for characterizing salt marsh health. These findings may have important implications in coastal environmental management and general microbial ecology.
机译:盐沼受到潮汐的影响,位于经常高度发达的高地和开阔海洋之间的交界处,是地球上生产力最高的生态系统之一,可以保护沿海海洋免受陆地污染。盐沼中的微生物群落催化了大多数以盐沼生物地球化学为特征的反应,从而有助于盐沼的有益功能。由于盐沼由于山地发展而经常被重金属,有机污染物和硝酸盐污染,因此污染是否会影响沼泽微生物群落,了解其物理分区和生物地球化学循环(例如反硝化)非常重要。因此,本文研究了河口环境中微生物群落,细菌的生长方式和污染物之间的关系,重点是盐沼。这项研究的结果是:(1)尽管在本质复杂和动态的盐沼环境中自然变异性很高,但真细菌和反硝化菌群落组成均与重金属污染显着相关;(2)选择性地反硝化,从而反硝化通过与最小的沉积物颗粒相关联而具有优势,其中细菌被嵌入到外聚性物质中并存在于保护性生物膜中;(3)反硝化器群落组成,因此反硝化及其与常见预测因子(如种群大小和有机碳含量)的相关性盐沼内的盐分变化是由于环境因素(例如盐度从上到下)的变化而造成的,并且(4)微生物群落和群落概况内的特定操作生物分类单位与压力因子相关,因此可能是河口环境中的污染指标。这篇论文代表了加利福尼亚海岸盐沼中微生物群落的重要特征和反硝化作用,并证明了盐沼微生物过程中小规模异质性对大规模空间变异的贡献。总体而言,本文表明微生物群落可能是表征盐沼健康状况的直接相关和有用的指标。这些发现可能对沿海环境管理和一般微生物生态学具有重要意义。

著录项

  • 作者

    Cao, Yiping.;

  • 作者单位

    University of California, Santa Barbara.;

  • 授予单位 University of California, Santa Barbara.;
  • 学科 Biology Microbiology.; Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 240 p.
  • 总页数 240
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;环境科学基础理论;
  • 关键词

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