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添加玉米浆对蘑菇渣堆肥过程中细菌群落组成及碳氮转化的影响。

Effects of adding corn steep liquor on bacterial community composition and carbon and nitrogen transformation during spent mushroom substrate composting.

机构信息

College of Horticulture and Landscape Architecture, Heilongjiang Bayi Agricultural University, Daqing, 163319, China.

出版信息

BMC Microbiol. 2023 May 27;23(1):156. doi: 10.1186/s12866-023-02894-x.

Abstract

BACKGROUND

Carbon and nitrogen are essential energy and nutrient substances in the composting process. Corn steep liquor (CSL) is rich in soluble carbon and nitrogen nutrients and active substances and is widely used in the biological industry. Nonetheless, limited research has been done on the effect of CSL on composting. This work firstly reveals the effect of adding CSL to bacterial community composition and carbon and nitrogen conversion during composting. This study provides the choice of auxiliary materials for the spent mushroom substrate compost (SMS) and some novel knowledge about the effect of bacterial community on C and N cycling during composting of SMS and CSL. Two treatments were set up in the experiment: 100% spent mushroom substrate (SMS) as CK and SMS + 0.5% CSL (v/v) as CP.

RESULTS

The results showed that the addition of CSL enhanced the initial carbon and nitrogen content of the compost, altered the bacterial community structure, and increased the bacterial diversity and relative abundance, which might be beneficial to the conversion and retention of carbon and nitrogen in the composting process. In this paper, network analysis was used to screen the core bacteria involved in carbon and nitrogen conversion. In the CP network, the core bacteria were divided into two categories, synthesizing and degrading bacteria, and there were more synthesizing bacteria than degrading bacteria, so the degradation and synthesis of organic matter were carried out simultaneously, while only degrading bacteria were found in the CK network. Functional prediction by Faprotax identified 53 groups of functional bacteria, among which 20 (76.68% abundance) and 14 (13.15% abundance) groups of functional bacteria were related to carbon and nitrogen conversion, respectively. Adding CSL stimulated the compensatory effect of core and functional bacteria, enhanced the carbon and nitrogen transformation ability, stimulated the activity of low-abundance bacteria, and reduced the competitive relationship between the bacterial groups. This may be why the addition of CSL accelerated the organic matter degradation and increased carbon and nitrogen preservation.

CONCLUSIONS

These findings indicate that the addition of CSL promoted the cycling and preservation of carbon and nitrogen in the SMS composts, and the addition of CSL to the compost may be an effective way to dispose of agricultural waste.

摘要

背景

碳和氮是堆肥过程中必不可少的能源和营养物质。玉米浆(CSL)富含可溶性碳氮营养物质和活性物质,在生物工业中应用广泛。然而,关于 CSL 对堆肥的影响的研究有限。这项工作首先揭示了 CSL 对堆肥过程中细菌群落组成和碳氮转化的影响。本研究为废弃菌棒基质堆肥(SMS)的辅料选择提供了依据,也为细菌群落对 SMS 和 CSL 堆肥过程中 C、N 循环的影响提供了一些新的认识。实验中设置了两个处理:100%废弃菌棒基质(SMS)作为 CK,SMS+0.5% CSL(v/v)作为 CP。

结果

结果表明,CSL 的添加提高了堆肥初始的碳氮含量,改变了细菌群落结构,增加了细菌多样性和相对丰度,这可能有利于堆肥过程中碳氮的转化和保留。本文采用网络分析筛选了参与碳氮转化的核心细菌。在 CP 网络中,核心细菌分为合成菌和降解菌两类,合成菌多于降解菌,因此同时进行了有机质的降解和合成,而 CK 网络中只发现了降解菌。Faprotax 功能预测鉴定出 53 个功能菌群,其中与碳氮转化相关的功能菌有 20 个(占比 76.68%),14 个(占比 13.15%)。添加 CSL 刺激了核心和功能菌的补偿效应,增强了碳氮转化能力,刺激了低丰度菌的活性,降低了菌群之间的竞争关系。这可能是 CSL 加速有机质降解、增加碳氮保存的原因。

结论

这些发现表明,CSL 的添加促进了 SMS 堆肥中碳氮的循环和保存,向堆肥中添加 CSL 可能是处理农业废弃物的有效途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/584a/10224591/9b70ddddba37/12866_2023_2894_Fig1_HTML.jpg

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