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Microbial Community Composition and Denitrifying Enzyme Activities in Salt Marsh Sediments

机译:盐沼沉积物中微生物群落组成与反硝化酶活性

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Denitrifying microbial communities and denitrification in salt marsh sediments may be affected by many factors, including environmental conditions, nutrient availability, and levels of pollutants. The objective of this study was to examine how microbial community composition and denitrification enzyme activities (DEA) at a California salt marsh with high nutrient loading vary with such factors. Sediments were sampled from three elevations, each with different inundation and vegetation patterns, across 12 stations representing various salinity and nutrient conditions. Analyses included determination of cell abundance, total and denitrifier community compositions (by terminal restriction fragment length polymorphism), DEA, nutrients, and eluted metals. Total bacterial (16S rRNA) and denitrifier (nirS) community compositions and DEA were analyzed for their relationships to environmental variables and metal concentrations via multivariate direct gradient and regression analyses, respectively. Community composition and DEA were highly variable within the dynamic salt marsh system, but each was strongly affected by elevation (i.e., degree of inundation) and carbon content as well as by selected metals. Carbon content was highly related to elevation, and the relationships between DEA and carbon content were found to be elevation specific when evaluated across the entire marsh. There were also lateral gradients in the marsh, as evidenced by an even stronger association between community composition and elevation for a marsh subsystem. Lastly, though correlated with similar environmental factors and selected metals, denitrifier community composition and function appeared uncoupled in the marsh.
机译:微生物群落的反硝化作用和盐沼沉积物中的反硝化作用可能受到许多因素的影响,包括环境条件,养分的可获得性和污染物的水平。这项研究的目的是研究高营养负荷的加利福尼亚盐沼的微生物群落组成和反硝化酶活性(DEA)如何随这些因素而变化。在三个代表不同盐度和营养条件的站点上,从三个海拔高度不同,不同淹没和植被模式的高海拔地区取样了沉积物。分析包括确定细胞丰度,反硝化菌总数和反硝化菌群落组成(通过末端限制性片段长度多态性),DEA,养分和洗脱的金属。通过多变量直接梯度法和回归分析分别分析了总细菌(16S rRNA)和反硝化菌(nirS)群落组成和DEA与环境变量和金属浓度的关系。在动态盐沼系统中,群落组成和DEA变化很大,但是它们都受到海拔(即淹没程度),碳含量以及所选金属的强烈影响。碳含量与海拔高度高度相关,在整个沼泽地进行评估时,发现DEA和碳含量之间的关系具有特定的海拔高度。沼泽中也存在横向梯度,这由沼泽子系统的群落组成和海拔之间的更强关联所证明。最后,尽管与相似的环境因素和选定的金属相关,但反硝化菌群落的组成和功能在沼泽中似乎是不相关的。

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