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Dynamics of Bacterial and Viral Communities in Paddy Soil with Irrigation and Urea Application

机译:灌溉和尿素施用对水稻土细菌和病毒群落动态的影响

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摘要

Viruses are ubiquitous in natural systems. By influencing bacterial abundance (BA) and community structure through lysis-lysogenic conversion, viruses are involved in various ecological processes. In agricultural management, nitrogen addition and irrigation should be considered as important factors that can modify soil viral dynamics but have been ignored. In our study, short-term dynamics of autochthonous soil viral and bacterial abundance and diversity after irrigation and urea application were examined in a long-term experimental paddy field. Urea addition delayed the emergence of peak viral abundance for three days, suggesting that viruses are sensitive to N addition. Under short-term eutrophic conditions through urea application, viruses undertake a lysogenic-biased strategy. Moreover, nitrogen-fixing bacteria were most likely specifically lysed in urea-treated soil, which suggests that soil viruses block N accumulation by killing nitrogen-fixing bacteria. To the best of our knowledge, this study is the first to investigate dynamic changes in autochthonous viruses in paddy fields.
机译:病毒在自然系统中无处不在。通过裂解-溶原转化影响细菌丰度(BA)和群落结构,病毒参与了各种生态过程。在农业管理中,氮的添加和灌溉应被视为可改变土壤病毒动力学的重要因素,但已被忽略。在我们的研究中,在长期的实验稻田中研究了灌溉和施用尿素后土生土的病毒和细菌的丰度和多样性的短期动态。添加尿素将峰值病毒丰度的出现延迟了三天,表明病毒对添加氮敏感。在通过施用尿素的短期富营养化条件下,病毒采取了溶源性偏向策略。此外,固氮细菌最有可能在尿素处理过的土壤中发生了特异性裂解,这表明土壤病毒通过杀死固氮细菌来阻止氮的积累。据我们所知,这项研究是第一个调查稻田中本地病毒动态变化的研究。

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