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首页> 外文期刊>Microbes and Environments >Seasonal Transition of Active Bacterial and Archaeal Communities in Relation to Water Management in Paddy Soils
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Seasonal Transition of Active Bacterial and Archaeal Communities in Relation to Water Management in Paddy Soils

机译:稻田土壤中细菌和古细菌群落的季节性变化与水管理的关系

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摘要

Paddy soils have an environment in which waterlogging and drainage occur during the rice growing season. Fingerprinting analysis based on soil RNA indicated that active microbial populations changed in response to water management conditions, although the fundamental microbial community was stable as assessed by DNA-based fingerprinting analysis. Comparative clone library analysis based on bacterial and archaeal 16S rRNAs (5,277 and 5,436 clones, respectively) revealed stable and variable members under waterlogged or drained conditions. Clones related to the class Deltaproteobacteria and phylum Euryarchaeota were most frequently obtained from the samples collected under both waterlogged and drained conditions. Clones related to syntrophic hydrogen-producing bacteria, hydrogenotrophic methanogenic archaea, rice cluster III, V, and IV, and uncultured crenarchaeotal group 1.2 appeared in greater proportion in the samples collected under waterlogged conditions than in those collected under drained conditions, while clones belonging to rice cluster VI related to ammonia-oxidizing archaea (AOA) appeared at higher frequency in the samples collected under drained conditions than in those collected under waterlogged conditions. These results suggested that hydrogenotrophic methanogenesis may become active under waterlogged conditions, whereas ammonia oxidation may progress by rice cluster VI becoming active under drained conditions in the paddy field.
机译:稻田土壤在水稻生长季节内会发生涝渍和排水现象。基于土壤RNA的指纹分析表明,尽管通过基于DNA的指纹分析评估基本微生物群落是稳定的,但活性微生物种群随水管理条件的变化而变化。基于细菌和古细菌16S rRNA(分别为5277和5436个克隆)的比较克隆库分析显示,在淹水或排水条件下,成员稳定且可变。与Deltaproteobacteria和Euryarchaeota门有关的克隆最常从在淹水和排水条件下收集的样品中获得。在水淹条件下收集的样品中,与营养化产氢细菌,氢营养型产甲烷古生菌,水稻簇III,V和IV和未培养的crenarchaeotal组1.2有关的克隆比在排水条件下收集的样品中所占比例更高。在排水条件下收集的样品中,与氨氧化古菌(AOA)有关的水稻簇VI出现的频率高于在淹水条件下收集的样品。这些结果表明,在淹水条件下,氢营养甲烷化作用可能变得活跃,而在稻田中,在排水条件下,稻米簇VI变得活跃,氨氧化可能继续进行。

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