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EAGER: Coordination of respiratory gene transcription and respiration in cultivated marine bacteria

EAGER: Coordination of respiratory gene transcription and respiration in cultivated marine bacteria
EAGER:培养海洋细菌呼吸基因转录和呼吸的协调
批准号:
1343773
负责人:
Matthew Cottrell
金额:
$19.89万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-01-01 至 2016-12-31

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中文摘要
翻译
异养细菌约占海洋呼吸的一半,它们是溶解有机物质的主要消费者,将约80%的同化有机碳转化为二氧化碳。对微生物群落结构的详细研究表明,海洋中有机物质的转化一定是由高度多样化的微生物群落造成的。最近的研究表明,大多数与生长有关的活动都与海洋中数量相当少的大量细菌有关。然而,尚不清楚同样的观察是否适用于呼吸作用,这是海洋中有机碳的主要命运。我们目前缺乏评估特定微生物呼吸作用的工具,也缺乏将特定类群与其对碳转化和碳循环的贡献联系起来的工具。该项目的目的是开发一种工具,用于了解细菌群体对细菌呼吸的贡献。这项工作将确定氧化磷酸化基因的转录水平与培养的海洋细菌的呼吸速率之间的关系。基于文化的工作是一个必要的先决条件,以开发一个元转录工具,解决生态问题的细菌多样性在海洋碳循环中的作用。 该项目将包括恒化器和批培养研究与纯文化和孵化实验与自然社区的河口细菌。实验室实验将研究海洋中重要的异养细菌,如SAR11分支的Pelagibacter ubique和Roseberry分支的Ruegeria pomeroyi。现有的基因组序列将进行分析,以解决呼吸基因的系统发育分辨能力。本研究的主要目标是确定不同系统发育距离下细菌呼吸基因转录本丰度与呼吸速率之间的关系,该项目将涉及一名本科生的暑期研究项目。实验室图尔斯之旅对公众开放(每年约1000名游客),刘易斯校区的所有实验室都参与了海岸日,这是一个每年吸引约10,000名游客的开放日。这些研究的结果也将提交给湖沼学和海洋学电子讲座(www.aslo.org/lectures)。该电子期刊提供了一个平台,使该项目的结果提供给更广泛的学术界,包括本科教学机构。
英文摘要
Heterotrophic bacteria account for about half of the respiration in the oceans and they are the main consumers of dissolved organic materials, converting approximately 80% of assimilated organic carbon to carbon dioxide. Detailed examinations of the structure of microbial communities reveal that a highly diverse community of microorganisms must be responsible for the conversion of organic materials in the oceans. Recent studies suggest that most of growth-related activity is associated with a rather small number of abundant bacteria in the oceans. It is unclear, however, if the same observation applies to respiration, the dominant fate of organic carbon in the oceans. We currently lack tools for assessing respiration by specific microbes and for linking specific taxa with their contribution to carbon conversion and to carbon cycling. The aim of this project is to develop a tool for understanding the contribution of bacterial groups to bacterial respiration. The proposed work will determine the relationship between transcription levels of oxidative phosphorylation genes and respiration rates in cultivated marine bacteria. The culture-based work is a necessary prerequisite to develop a metatranscriptomic tool for addressing ecological questions about the role of bacterial diversity in ocean carbon cycling. The project will include chemostat and batch culture studies with pure cultures and an incubation experiment with a naturally community of estuarine bacteria. Laboratory experiments will examine important heterotrophic bacteria in the oceans such as Pelagibacter ubique of the SAR11 clade and Ruegeria pomeroyi of the Roseobacter clade. Existing genome sequences will be analyzed to address the phylogenetic resolving power of respiration genes. The overarching goal of this proposal is to determine the relationship between abundances of respiration gene transcripts and respiration rates for bacterial taxa defined at different phylogenetic distances.The project will involve an undergraduate in a summer research project. Laboratory tours are open to the public (about 1000 visitors per year), and all laboratories at the Lewes campus are involved in Coast Day, an annual open house that attracts about 10,000 visitors. The results of these studies will also be submitted to Limnology and Oceanography E-Lectures (www.aslo.org/lectures). This electronic journal provides a platform to make results of this project available to the wider academic community, including undergraduate teaching institutions.
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会议论文
Photoheterotrophic Microbes in the West Antarctic Peninsula Marine Ecosystem
  • 批准号:
    0838830
  • 项目类别:
    Standard Grant
  • 资助金额:
    $42.55万
  • 财政年份:
    2009
  • 负责人:
    Matthew Cottrell
  • 依托单位:
Microbial photoheterotrophy in lakes: biogeographical patterns, environmental controls and ecological significance
  • 批准号:
    0814918
  • 项目类别:
    Standard Grant
  • 资助金额:
    $25.96万
  • 财政年份:
    2008
  • 负责人:
    Matthew Cottrell
  • 依托单位:
海外基金