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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Metagenomic analysis revealed the succession of microbiota and metabolic function in corncob composting for preparation of cultivation medium for Pleurotus ostreatus
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Metagenomic analysis revealed the succession of microbiota and metabolic function in corncob composting for preparation of cultivation medium for Pleurotus ostreatus

机译:Metagenomic分析揭示了玉米浦堆肥中微生物群和代谢功能,用于制备Pleurotus Ostreatus栽培培养基

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Metagenomic sequencing was used to reveal the dynamic changes in microbiota and the metabolic functions in corncob composting for preparing cultivation medium of Pleurotus ostreatus. Results showed that the changes of physicochemical properties lead to different dominant phylum at different stages of composting. Firmicutes replaced Proteobacteria as the dominant phylum at thermophilic stage. Correlation analysis indicated that the succession of microbiota was significantly affected by the C/N ratio, pH, temperature and organic matters in compost. The changes in community inevitably lead to the differences of metabolic functions. Metabolism analysis indicated that carbohydrate, lipid and amino acid metabolism were relatively higher in thermophilic stage. Conversely, the metabolism of starch, sucrose, galactose, ascorbate was mainly detected in the late stage. The metabolisms of different stages were driven by different microorganisms. Overall, these findings deepened our understanding of metabolic functions, and it is of great value to the metabolomics research of composting system.
机译:代理序列测序揭示微生物瘤中的动态变化和玉米浦堆肥中的代谢功能,用于制备Pleurotus Ostreatus的培养基。结果表明,物理化学特性的变化导致不同堆肥阶段的不同优势字幕。根据热医期阶段,将蛋白酶替换为植物。相关性分析表明,堆肥中C / N比,pH,温度和有机物的连续影响显着影响。社区的变化不可避免地导致代谢功能的差异。代谢分析表明嗜热阶段碳水化合物,脂质和氨基酸代谢相对较高。相反,淀粉,蔗糖,半乳糖,抗坏血酸的代谢主要在晚期进行。不同阶段的代谢由不同的微生物驱动。总体而言,这些调查结果深化了我们对代谢功能的理解,对堆肥系统的代谢组学研究具有很大的价值。

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