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Environmental conditions rather than microbial inoculum composition determine the bacterial composition, microbial biomass and enzymatic activity of reconstructed soil microbial communities

机译:环境条件而非微生物接种物的组成决定了重建土壤微生物群落的细菌组成,微生物生物量和酶活性

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The composition of microbial communities and the level of enzymatic activity in the soil are both important indicators of soil quality, but the mechanisms by which a soil bacterial community is generated and maintained are not yet fully understood. Two soil samples were collected from the same location, but each had been subjected to a different long-term fertilization treatment and was characterized by different microbial diversity, biomass and physicochemical properties. These samples were gamma-sterilized and swap inoculated. Non-sterilized soil samples along with sterilized and inoculated soil samples were incubated for eight months before their nutrient content, microbial biomass, enzymatic activity and bacterial composition were analyzed. Total phosphorus, and potassium concentrations along with the overall organic matter content of the non-sterilized soil were all equal to those of the same soil that had been sterilized and self/swap inoculated. Additionally, the microbial biomass carbon concentration was not affected by the specific inoculum and varied only by soil type. The activities of catalase, invertase, urease, protease, acid phosphatase and phytase were smaller in the sterilized soils that had been inoculated with organisms from chemical fertilizer amended soil (NPK) when compared to sterilized soil inoculated with organisms from manure and chemical fertilizer amended soil (NPKM) and non-sterilized soil samples. Bacterial 16S rRNA examined by 454-pyrosequencing revealed that the composition of bacterial community reconstructed by immigrant microbial inoculum in the soil was mainly influenced by its physicochemical properties, although the microbial inoculum contained different abundances of bacterial taxa. For example, the pH of the soil was the dominant factor in reconstructing a new bacterial community. Taken together, these results demonstrated that both soil microbial composition and functionality were primarily determined by soil properties rather than the microbiatinoculum, which contributed to our understanding of how soil microbial communities are generated and maintained. (C) 2015 Elsevier Ltd. All rights reserved.
机译:土壤中微生物群落的组成和酶活性的水平都是土壤质量的重要指标,但是尚未完全了解土壤细菌群落的产生和维持机制。从同一位置收集了两个土壤样品,但是每个土壤样品都经过了不同的长期施肥处理,并具有不同的微生物多样性,生物量和理化特性。将这些样品进行伽玛消毒并交换接种。将未灭菌的土壤样品以及经过灭菌和接种的土壤样品孵育八个月,然后分析其营养成分,微生物生物量,酶活性和细菌组成。未灭菌土壤中的总磷和钾浓度以及总有机物含量均与已灭菌并自我/交换接种的同一土壤中的总磷,钾浓度相同。另外,微生物生物量碳浓度不受特定接种物的影响,仅随土壤类型而变化。与用肥料和化学肥料改良土壤接种的无菌土壤相比,在用化学肥料改良土壤(NPK)接种的无菌土壤中过氧化氢酶,转化酶,脲酶,蛋白酶,酸性磷酸酶和植酸酶的活性较小。 (NPKM)和未灭菌的土壤样品。通过454-焦磷酸测序法对细菌16S rRNA的分析表明,尽管微生物接种物包含不同数量的细菌分类群,但土壤微生物的迁移主要由移民微生物接种物重建的细菌群落组成。例如,土壤的pH值是重建新细菌群落的主要因素。综上所述,这些结果表明,土壤微生物的组成和功能都主要由土壤特性决定,而不是由微生物菌决定,这有助于我们了解土壤微生物群落的产生和维持方式。 (C)2015 Elsevier Ltd.保留所有权利。

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