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Seasonal variation in denitrification and dissimilatory nitrate reduction to ammonia process rates and corresponding key functional genes along an estuarine nitrate gradient

机译:沿河口硝酸盐梯度反硝化和硝酸盐异化还原成氨过程速率和相应关键功能基因的季节性变化

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摘要

This research investigated spatial-temporal variation in benthic bacterial community structure, rates of denitrification and dissimilatory nitrate reduction to ammonium (DNRA) processes and abundances of corresponding genes and transcripts at three sites ? the estuary-head, mid-estuary and the estuary mouth along the nitrate gradient of the Colne estuary over an annual cycle. Denitrification rates declined down the estuary, while DNRA rates were higher at the estuary head and middle than the estuary mouth. In four out of the six two-monthly time-points, rates of DNRA were greater than denitrification at each site. Abundance of gene markers for nitrate-reduction (nitrate reductase narG and napA), denitrification (nitrite reductase nirS) and DNRA (DNRA nitrite reductase nrfA) declined along the estuary with significant relationships between denitrification and nirS abundance, and DNRA and nrfA abundance. Spatially, rates of denitrification, DNRA and corresponding functional gene abundances decreased along the estuary. However, temporal correlations between rate processes and functional gene and transcript abundances were not observed.
机译:这项研究调查了底栖细菌群落结构的时空变化,反硝化率和异化硝酸盐还原成铵的速率(DNRA)以及三个位置的相应基因和转录本的丰度。在一年中,沿科恩河口硝酸盐梯度的河口头,河口中部和河口口。河口反硝化率下降,而河口顶部和中部的DNRA率高于河口。在六个月的两个月时间点中,有四个在每个站点的DNRA率大于反硝化率。硝酸盐还原(硝酸还原酶narG和napA),反硝化(亚硝酸还原酶nirS)和DNRA(DNRA亚硝酸还原酶nrfA)的基因标记沿河口下降,与反硝化和nirS丰度以及DNRA和nrfA丰度之间有显着关系。在空间上,反硝化率,DNRA和相应的功能基因丰度沿河口下降。但是,没有观察到速率过程与功能基因和转录本丰度之间的时间相关性。

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