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Microeukaryotic Community and Oxygen Response in Rice Field Soil Revealed Using a Combined rRNA-Gene and rRNA-Based Approach

机译:结合rRNA基因和rRNA方法揭示稻田土壤中的微真核生物群落和氧响应

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摘要

Irrigated rice field soil is subjected to frequent changes in oxygen status due to the water regime by agricultural management. In this study, the community response of microeukaryotes in rice field soil to the oxygen status was explored in a microcosm experiment under defined conditions. Water-saturated soil was incubated under a two-level factorial design of oxygen and organic enrichment with plant residue. The eukaryotic microbial community composition, which was either present or potentially active in the soils, was analyzed using denaturing gradient gel electrophoresis (DGGE) targeting the 18S rRNA gene or reverse-transcribed 18S rRNA. Oxygen availability was a primary factor shaping the microeukaryotic community in both DNA- and RNA-based analyses, revealing a shift within a week of incubation. Plant residue also affected the microeukaryotic community, which was more notable in the active community showing rRNA expression with time. Sequences of amplicons in DGGE bands indicated that protozoa (ciliates, flagellates, and amoebae) were the most prominent microeukaryotes in water-saturated rice field soil both in DNA- and RNA-based analyses. The use of a modified primer for soil protozoa suggested the functional importance of Heterolobosea amoeba in rice field soil, particularly in anoxic soil with organic enrichment.
机译:由于水的管理,灌溉稻田土壤中的氧气状态经常发生变化,这取决于农业管理。在这项研究中,在限定条件下的微观实验中探索了稻田土壤中微真核生物对氧状态的群落反应。将水饱和的土壤在氧和有机富集植物残渣的二级设计下进行孵育。使用靶向18S rRNA基因或反转录18S rRNA的变性梯度凝胶电泳(DGGE)分析了土壤中存在的或潜在有活性的真核微生物群落组成。在基于DNA和RNA的分析中,氧气的可用性是影响微真核生物群落的主要因素,表明在孵育一周内发生了变化。植物残基也影响了微真核生物群落,这在活性群落中更为显着,随着时间的推移显示出rRNA的表达。在基于DNA和RNA的分析中,原生动物(纤毛虫,鞭毛虫和变形虫)是在水饱和的稻田土壤中最显着的微真核生物。改良引物用于土壤原生动物的研究表明,变形虫阿米巴在稻田土壤中具有重要的功能,特别是在有机富集的缺氧土壤中。

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