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Metabolism of microbial communities in the environment : A compound-specific stable hydrogen isotope approach

机译:环境中微生物群落的代谢:化合物特异性稳定的氢同位素方法

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摘要

Microorganisms are key players in all elemental cycles, their metabolic activity and potential impacts the environment on a local and global scale. In order to understand this significant role in the environment, microbial communities, their diversity and metabolic activity have to be studied in situ. In recent years the hydrogen isotopic composition of fatty acids have been shown to be a potentially useful tool to study the metabolic activity from individual microbial species to entire microbial communities. While first results are promising, further research has to be down in order to understand in which magnitude metabolism influences the deuterium to hydrogen ratio in fatty acids. In this work, culture studies have been done in order to understand the impact of other biological and physical parameters on the D/H ratio of fatty acids and compare those results to the influence of metabolism. These culture studies confirmed that the D/H ratio of fatty acids allows for a differentiation between photoautotrophic, chemoautotrophic and heterotrophic growth. Additionally, it was shown that both salinity and growth phase have a minor effect on the D/H ratio of fatty acids in comparison with metabolism. Environmental studies were conducted in two different aquatic settings in the Netherlands. The pelagic microbial communities of the coastal North Sea and the sedimentary microbial communities of Lake Grevelingen were studied. At both sites it was shown that it is possible to study the general metabolism of microbial communities in situ by measuring the D/H ratio of fatty acids. While in the coastal North Sea changes in the community metabolism due to different phytoplankton blooms were observed via the D/H ratio of fatty acids, in Lake Grevelingen it was possible to differentiate between sedimentary and pelagic communities.
机译:微生物是所有元素周期的关键参与者,它们的代谢活性和潜在影响在局部和全球范围内影响环境。为了理解这种在环境中的重要作用,必须就地研究微生物群落,其多样性和代谢活性。近年来,脂肪酸的氢同位素组成已被证明是研究从单个微生物物种到整个微生物群落的代谢活性的潜在有用工具。尽管最初的结果令人鼓舞,但仍需进一步研究以了解新陈代谢在何种程度上影响脂肪酸中氘与氢的比例。在这项工作中,进行了文化研究,以了解其他生物和物理参数对脂肪酸D / H比的影响,并将这些结果与代谢的影响进行比较。这些培养研究证实,脂肪酸的D / H比值可以区分光合自养,化学自养和异养生长。另外,已经表明,与代谢相比,盐度和生长期都对脂肪酸的D / H比具有较小的影响。在荷兰的两种不同水生环境中进行了环境研究。研究了北海沿岸的浮游微生物群落和格里维林根湖的沉积微生物群落。在两个地点都表明,可以通过测量脂肪酸的D / H比来研究微生物群落的一般代谢。虽然在北海沿海地区,通过脂肪酸的D / H比观察到由于浮游植物的不同而引起的群落代谢的变化,但在格里维林根湖却有可能区分沉积和浮游群落。

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    Heinzelmann S.M.;

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  • 年度 2015
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