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Microbial Community Structures and Important Associations Between Soil Nutrients and the Responses of Specific Taxa to Rice-Frog Cultivation

机译:养分与微生物之间的重要联系及土壤养分与特定分类群对稻蛙栽培的响应

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摘要

Rice-frog cultivation is a traditional farming system in China and has been reintroduced as an agricultural practice in China in recent years. The microbial community in paddy rhizospheric soils has attracted much attention because many microorganisms participate in functional processes in soils. In this study, Illumina MiSeq sequencing-based techniques were used to investigate soil microbial communities and functional gene patterns across samples obtained by conventional rice cultivation (CR) and rice-frog cultivation (RF). The results showed that RF significantly affected the microbial community composition and richness, which indicated that the rhizospheric microorganisms responded to the introduction of tiger frogs into the paddy fields. Operational taxonomic units (OTUs) from Sandaracinaceae, Anaerolineaceae, Candidatus Nitrososphaera, Candidatus Nitrosotalea, Candidatus Nitrosoarchaeum and some unclassified OTUs from Euryarchaeota and Agaricomycetes were significantly enriched by RF. The abiotic parameters soil organic carbon (SOC), nitrate nitrogen (NO3-N), and available phosphorus (AP) changed under RF treatment and played essential roles in establishing the soil bacterial, archaeal, and fungal compositions. Correlations between environmental factors and microbial communities were described using network analysis. SOC was strongly correlated with Anaerolineaceae, Methanosaeta, and Scutellinia. NO3-N showed strong positive correlations with Opitutus, Geobacter, and Methanosaeta. NH4+-N was strongly positively associated with Sideroxydans, and TN was strongly positively correlated with Candidatus Nitrotoga. Compared to conventional CR, RF greatly enriched specific microbial taxa. These taxa may be involved in the decomposition of complex organic matter and the transformation of soil nutrients, thus promoting plant growth by improving nutrient cycling. The unique patterns of microbial taxonomic and functional composition in soil profiles suggested functional redundancy in these paddy soils. RF could significantly affect the bacterial, archaeal, and fungal communities though changing SOC and AP levels.
机译:稻蛙栽培是中国的传统耕作制度,近年来在中国已作为一种农业实践被重新引入。水稻根际土壤中的微生物群落吸引了很多关注,因为许多微生物参与了土壤的功能过程。在这项研究中,基于Illumina MiSeq测序的技术用于研究通过常规水稻栽培(CR)和水稻蛙栽培(RF)获得的样品中土壤微生物群落和功能基因模式。结果表明,RF显着影响微生物群落组成和丰富度,表明根际微生物对虎蛙进入稻田的反应。射频显着地富集了金枪鱼科,厌氧杆菌科,硝化假丝酵母,硝化念珠菌,硝化古菌假丝酵母和一些未分类OTU的操作分类单位(OTU)。在RF处理下,非生物参数土壤有机碳(SOC),硝酸盐氮(NO3 - -N)和有效磷(AP)发生变化,在建立土壤细菌,古细菌和真菌中起着至关重要的作用。成分。使用网络分析描述了环境因素与微生物群落之间的相关性。 SOC与厌氧科,甲烷菌和黄S密切相关。 NO3 - -N与Opitutus,Geobacter和Methanosaeta呈强正相关。 NH4 + -N与Sideroxydans呈极显着正相关,而TN与Nitrotoga念珠菌呈极强正相关。与常规CR相比,RF大大丰富了特定的微生物类群。这些分类单元可能参与复杂有机物的分解和土壤养分的转化,从而通过改善养分循环来促进植物生长。土壤剖面中微生物分类和功能成分的独特模式表明这些稻田土壤中的功能冗余。通过改变SOC和AP水平,RF可显着影响细菌,古细菌和真菌群落。

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