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Responses of denitrifying bacterial communities to short-term waterlogging of soils

机译:反硝化细菌群落对土壤短期内涝的响应

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摘要

Agricultural soil is often subjected to waterlogging after heavy rainfalls, resulting in sharp and explosive increases in the emission of nitrous oxide (N2O), an important greenhouse gas primarily released from agricultural soil ecosystems. Previous studies on waterlogged soil examined the abundance of denitrifiers but not the composition of denitrifier communities in soil. Also, the PCR primers used in those studies could only detect partial groups of denitrifiers. Here, we performed pyrosequencing analyses with the aid of recently developed PCR primers exhibiting high coverage for three denitrification genes, nirK, nirS, and nosZ to examine the effect of short-term waterlogging on denitrifier communities in soil. We found that microbial communities harboring denitrification genes in the top 5 cm of soil distributed according to soil depth, water-soluble carbon, and nitrate nitrogen. Short-term waterlogging scarcely affected abundance, richness, or the alpha-diversities of microbial communities harboring nirK, nirS, and nosZ genes, but significantly affected their composition, particularly in microbial communities at soil depths of 0 to 1 cm. Our results indicated that the composition of denitrifying microbial communities but not the abundance of denitrifiers in soil was responsive to short-term waterlogging of an agricultural soil ecosystem.
机译:暴雨后,农业土壤经常遭受涝灾,导致一氧化二氮(N2O)的排放急剧增加,这是一种主要从农业土壤生态系统释放的重要温室气体。先前对涝渍土壤的研究仅考察了土壤中反硝化剂的含量,但并未研究反硝化剂群落的组成。而且,这些研究中使用的PCR引物只能检测部分反硝化剂。在这里,我们借助最近开发的对三个反硝化基因nirK,nirS和nosZ具有高覆盖率的PCR引物进行了焦磷酸测序分析,以研究短期内涝对土壤反硝化菌群落的影响。我们发现,在土壤的前5厘米处,根据土壤深度,水溶性碳和硝态氮分布的土壤中有反硝化基因的微生物群落。短期内涝几乎不会影响带有nirK,nirS和nosZ基因的微生物群落的丰度,丰富度或alpha多样性,但会显着影响其组成,尤其是在土壤深度为0至1 cm的微生物群落中。我们的结果表明,反硝化微生物群落的组成而非土壤中反硝化剂的丰度对农业土壤生态系统的短期涝灾有响应。

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