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Cyanobacterial communities of rice straw left on the soil surface of a paddy field

机译:稻田土壤表面残留的稻草的蓝细菌群落

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To estimate diversity, seasonal variation, and phylogeny of the cyanobacterial communities in rice straw placed in nylon mesh bags and left on the soil surface of a paddy field, total DNA was extracted from straw, amplified by polymerase chain reaction targeting 16S rRNA genes of cyanobacteria, and the amplicons were separated by denaturing gradient gel electrophoresis (DGGE). These DGGE bands were sequenced. The paddy field was under flooded condition after transplanting of rice (Experiment 1) and under drained conditions after harvest (Experiment 2). The residual samples on the soil surface under upland conditions were collected just before spring plowing and were placed again on the soil surface after transplanting under flooded conditions. DGGE band patterns of cyanobacterial communities of rice straw were different under drained conditions, under flooded conditions when fresh rice straw samples were placed (Experiment 1), and under flooded conditions when residual rice straw samples were replaced (Experiment 2), indicating that the communities were influenced by both water regime of the paddy field and the degree of the rice straw decomposition. Sequence analysis of DGGE bands indicated that most of the cyanobacteria in rice straw on the soil surface in the paddy field were filamentous members belonging to Subsections III and IV. Filamentous cyanobacterial cells were observed in rice straw under flooded conditions by epifluorescence microscopy.
机译:为了估算放置在尼龙网袋中并留在稻田土壤表面的稻草中稻草中蓝细菌群落的多样性,季节性变化和系统发育,从稻草中提取总DNA,并通过针对蓝细菌的16S rRNA基因的聚合酶链反应进行扩增,并通过变性梯度凝胶电泳(DGGE)分离扩增子。这些DGGE带被测序。水稻移栽后处于水淹状态(实验1),收获后处于排水状态(实验2)。在春季耕作之前收集在高地条件下土壤表面上的残留样品,并在洪水条件下移植后再次放置在土壤表面上。在排水条件下,放置新鲜稻草样品的淹水条件下(实验1)和在水淹条件下更换残留稻草样品的实验(实验2)下,稻草蓝藻群落的DGGE带谱是不同的。受稻田水分状况和稻草分解程度的影响。 DGGE带的序列分析表明,稻田土壤表面稻草中的大多数蓝细菌是属于III和IV小节的丝状成员。通过落射荧光显微镜在充满水的条件下在稻草中观察到丝状蓝细菌细胞。

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