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芽孢杆菌接种对水稻秸秆堆肥及其接种后细菌群落稳定性的作用:联合抗性或个体崩溃。

Role of Bacillus inoculation in rice straw composting and bacterial community stability after inoculation: Unite resistance or individual collapse.

机构信息

College of Life Science, Northeast Agricultural University, Harbin 150030, China.

Department of Colorectal Surgery, Harbin Medical University Cancer Hospital, 150 Haping Road, 150081 Harbin, Heilongjiang Province, China.

出版信息

Bioresour Technol. 2021 Oct;337:125464. doi: 10.1016/j.biortech.2021.125464. Epub 2021 Jun 26.

Abstract

Bacillus is the classic inoculant in rice straw composting. However, there has been no in-depth study of the mechanism promoting the degradation of lignocellulose and the change of indigenous bacterial communities after Bacillus inoculation. Moreover, the stability of bacterial communities is a significant challenge in achieving the efficacy of inoculation. In this study, the ecological succession and yield-resource acquisition-stress tolerance (Y-A-S) framework were combined with Redundancy analysis (RDA) and changes in relative abundance, Bacillus was found to be a pioneer bacterium that adopts a resource acquisition-stress tolerance strategy. The structural equation model (SEM) revealed that in addition to exerting a degradation effect, Bacillus inoculation could also indirectly affect lignocellulose degradation by changing the bacterial community. Random forest model and network analysis indicated a change in bacterial communities after inoculation, and bacteria with more complex relationships and weaker decomposition ability were key to the stability of bacterial communities.

摘要

芽孢杆菌是水稻秸秆堆肥中经典的接种菌。然而,目前还没有深入研究芽孢杆菌接种后促进木质纤维素降解和土著细菌群落变化的机制。此外,细菌群落的稳定性是实现接种效果的重大挑战。在这项研究中,将生态演替和产量-资源获取-胁迫耐受 (Y-A-S) 框架与冗余分析 (RDA) 和相对丰度变化相结合,发现芽孢杆菌是一种采用资源获取-胁迫耐受策略的先驱细菌。结构方程模型 (SEM) 表明,芽孢杆菌接种除了具有降解作用外,还可以通过改变细菌群落间接影响木质纤维素的降解。随机森林模型和网络分析表明,接种后细菌群落发生了变化,具有更复杂关系和较弱分解能力的细菌是细菌群落稳定性的关键。

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