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牛粪驱动的多糖前体在蘑菇废料堆肥过程中腐殖质形成中的作用。

The role of cattle manure-driven polysaccharide precursors in humus formation during composting of spent mushroom substrate.

作者信息

Yang Fengjun, Wang Mengmeng, Zhao Liqin, Fan Bowen, Sun Ning, Liu Juncai, Sun Xinying, Dong Ziming

机构信息

College of Horticulture and Landscape Architecture, Heilongjiang Bayi Agricultural University, Daqing, China.

出版信息

Front Microbiol. 2024 Jul 18;15:1375808. doi: 10.3389/fmicb.2024.1375808. eCollection 2024.

Abstract

The study examined the impact of adding cattle manure to the composting process of mushroom substrate on compost humification. A control group CK comprised entirely of mushroom substrate, while the experimental group CD (70 percent mushroom substrate and 30 percent cattle manure) comprised the two composting treatments that were established. The study determined that the addition of cow dung has promoted the formation of humus components. Particularly, humic substance (HS-C) and humic acid (HA) increased by 41.3 and 74.7%, respectively, and the ratio of humic acid to fulvic acid (HA/FA) also increased by 2.78. It showed that the addition of cow dung accelerated the synthesis and decomposition of precursors, such as polysaccharides, polyphenols, and reducing sugars. Thereby promoting the formation of humic acid. Network analysis revealed that adding cow dung promoted microbial interactions increased the complexity and stability of the bacterial and fungal symbiotic network, enhanced cooperation and reciprocity among microbes, and assisted in transforming fulvic acid (FA) components. Structural equation modeling (SEM) is a multivariate data analysis method for analyzing complex relationships among constructs and core indicators. SEM illustrated that introducing cattle manure into the composting process resulted in alterations to the correlation between physicochemical parameters and the microbial community, in addition to humus formation. Polysaccharides are the primary precursors for polymerization to form HA, which is an essential prerequisite for the conversion of fulvic acid to humic acid. Additionally, microbes affected the formation of humus, with bacteria substantially more influential than fungi. These findings provide new ideas for regulating the degree of humification in the composting process and have important practical implications for optimizing mushroom cultivation and composting techniques today.

摘要

该研究考察了在蘑菇培养料堆肥过程中添加牛粪对堆肥腐殖化的影响。对照组CK完全由蘑菇培养料组成,而实验组CD(70%蘑菇培养料和30%牛粪)包括所设定的两种堆肥处理。该研究确定,添加牛粪促进了腐殖质成分的形成。特别是,腐殖物质(HS-C)和腐殖酸(HA)分别增加了41.3%和74.7%,腐殖酸与富里酸的比率(HA/FA)也增加了2.78。这表明添加牛粪加速了多糖、多酚和还原糖等前体物质的合成与分解。从而促进了腐殖酸的形成。网络分析表明,添加牛粪促进了微生物相互作用,增加了细菌和真菌共生网络的复杂性和稳定性,增强了微生物之间的合作与互惠,并有助于转化富里酸(FA)成分。结构方程模型(SEM)是一种用于分析结构和核心指标之间复杂关系的多变量数据分析方法。SEM表明,将牛粪引入堆肥过程除了导致腐殖质形成外,还改变了理化参数与微生物群落之间的相关性。多糖是聚合形成HA的主要前体物质,这是富里酸转化为腐殖酸的必要前提。此外,微生物影响腐殖质的形成,细菌的影响远大于真菌。这些发现为调控堆肥过程中的腐殖化程度提供了新思路,对当今优化蘑菇栽培和堆肥技术具有重要的实际意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53c6/11291364/b96a1c31fd52/fmicb-15-1375808-g001.jpg

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