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猪粪堆肥过程中添加耐热硝化细菌可增强氮保留并改变微生物组成。

Addition of Thermotolerant Nitrifying Bacteria During Pig Manure Composting Enhanced Nitrogen Retention and Modified Microbial Composition.

作者信息

Liu Biao, Guo Zhaohui, Chen Wei, Wang Zhen, Xu Lijuan, Gao Shuaishuai, Wu Yingben, Zeng Yan, Tang Bingxuan, Wu Minxi, Yin Hongmei

机构信息

Hunan Institute of Microbiology, Hunan Academy of Agricultural Sciences, Changsha 410009, China.

出版信息

Microorganisms. 2025 Mar 23;13(4):719. doi: 10.3390/microorganisms13040719.

Abstract

Preventing loss of nitrogen during aerobic manure composting is a critical challenge, and introducing microbial agents with specific functions offers a promising solution. This study aimed to explore how F2 (a thermotolerant nitrifying bacterium) affects nitrogen conservation, microbial dynamics, and nitrogen conversion-associated gene abundance during pig manure composting. Relative to the uninoculated controls, adding F2 markedly raised the germination index, nitrate content, and total nitrogen in the final compost, resulting in reduced nitrogen loss. The inoculation led to a distinct succession of bacterial communities, enriching microorganisms associated with fermentation and hydrocarbon degradation, while the fungal communities did not change significantly between the control and treated compost. Furthermore, inoculation markedly increased gene levels and decreased abundance during the cooling and maturation phases. Significant relationships were detected between nitrogen content, microbial composition, and nitrogen conversion genes in correlation analyses. In summary, the addition of F2 is recommended for bolstering nitrogen retention in the context of composting.

摘要

在好氧堆肥过程中防止氮素损失是一项关键挑战,引入具有特定功能的微生物制剂提供了一种有前景的解决方案。本研究旨在探讨F2(一种耐热硝化细菌)如何影响猪粪堆肥过程中的氮素保存、微生物动态以及与氮转化相关的基因丰度。相对于未接种的对照,添加F2显著提高了最终堆肥的发芽指数、硝酸盐含量和总氮含量,从而减少了氮素损失。接种导致细菌群落发生明显演替,富集了与发酵和烃降解相关的微生物,而对照堆肥和处理堆肥之间的真菌群落没有显著变化。此外,接种在冷却和成熟阶段显著提高了基因水平并降低了丰度。在相关性分析中检测到氮含量、微生物组成和氮转化基因之间存在显著关系。总之,建议添加F2以增强堆肥过程中的氮素保留。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a26/12029871/ef0861047091/microorganisms-13-00719-g001.jpg

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