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首页> 外文期刊>Agriculture >Short-Term Response of Soil Microbial Community to Field Conversion from Dryland to Paddy under the Land Consolidation Process in North China
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Short-Term Response of Soil Microbial Community to Field Conversion from Dryland to Paddy under the Land Consolidation Process in North China

机译:华北土地整理过程中土壤微生物群落对旱地-稻田转化的短期响应

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摘要

Land consolidation of dryland-to-paddy conversion for improving tillage conditions and grain production capacity is widely implemented throughout the world. The conversion affects soil ecological stability, especially the most active soil microorganisms. However, the impacts of the dryland-to-paddy conversion has paid little attention in recent decades. In this study, a pot experiment was used to explore the responses of the microbial community and their interactions with soil properties after rice in the first season (five months). The results indicated that a significant decrease in the topsoil pH, organic matter content, nitrate nitrogen, and ammonical nitrogen, and an increase in soil electrical conductivity (EC) was observed ( p 0.05) after the dryland-to-paddy conversion. The richness and diversity of bacteria and fungi decreased in the short term. The composition of the soil microbial community and the soil microbial dominant bacteria had considerably changed after the conversion. Actinobacteria , Firmicutes , and Olpidiomycota were found to be highly sensitive to the dryland-to-paddy conversion. The soil microbial community structure had extremely significant positive correlations with soil pH, EC, organic matter, nitrate nitrogen, and ammonical nitrogen ( p 0.05). Microorganisms are the most important component of soil nutrient cycling. Converting a large area of dryland to paddy may lead to an imbalance in the soil carbonitride cycle and should be further examined in North China.
机译:为改善耕作条件和提高粮食生产能力,旱地转稻的土地整理在世界范围内得到广泛实施。转化影响土壤生态稳定性,特别是最活跃的土壤微生物。然而,近几十年来,旱地向稻田转换的影响很少引起注意。在这项研究中,盆栽实验用于探讨水稻在第一个季节(五个月)后微生物群落的反应及其与土壤特性的相互作用。结果表明,旱地-稻田转化后,表层土壤的pH,有机质含量,硝酸盐氮和铵态氮显着下降,土壤电导率(EC)升高(p <0.05)。细菌和真菌的丰富度和多样性在短期内下降。转化后,土壤微生物群落和土壤微生物优势细菌的组成发生了很大变化。放线菌,Firmicutes和Olpidiomycota被发现对旱地向稻田转化高度敏感。土壤微生物群落结构与土壤pH,EC,有机质,硝酸盐氮和铵态氮呈极显着正相关(p <0.05)。微生物是土壤养分循环的最重要组成部分。将大面积的旱地转变为稻田可能会导致土壤碳氮化物循环失衡,应在华北地区进行进一步研究。

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