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固氮蓝藻通过调节黑土区稻田土壤微生物群落组成来增强微生物碳利用。

Nitrogen-fixing cyanobacteria enhance microbial carbon utilization by modulating the microbial community composition in paddy soils of the Mollisols region.

机构信息

School of Environmental Studies, China University of Geosciences, Wuhan 430074, PR China; Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, PR China.

Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, PR China; University of Chinese Academy of Sciences, Beijing 100049, PR China.

出版信息

Sci Total Environ. 2024 Jun 15;929:172609. doi: 10.1016/j.scitotenv.2024.172609. Epub 2024 Apr 23.

Abstract

Nitrogen-fixing cyanobacteria (NFC) are photosynthetic prokaryotic microorganisms capable of nitrogen fixation. They can be used as biofertilizers in paddy fields, thereby improving the rice tillering capacity and yield. To reveal the microbiological mechanisms by which nitrogen-fixing cyanobacteria alter soil carbon storage, we conducted a field experiment using NFC as a partial substitute for nitrogen fertilizer in paddy fields in the Sanjiang Plain of Northeast China's Mollisols region. Using metagenomic sequencing technology and Biolog Ecoplate™ carbon matrix metabolism measurements, we explored the changes in the soil microbial community structure and carbon utilization in paddy fields. The results indicated that the replacement of nitrogen fertilizer with NFC predisposed the soil microbial community to host a great number of copiotrophic bacterial taxa, and Proteobacteria and Actinobacteria were closely associated with the metabolism of soil carbon sources. Moreover, through co-occurrence network analysis, we found that copiotrophic bacteria clustered in modules that were positively correlated with the metabolic level of carbon sources. The addition of NFC promoted the growth of copiotrophic bacteria, which increased the carbon utilization level of soil microorganisms, improved the diversity of the microbial communities, and had a potential impact on the soil carbon stock. The findings of this study are helpful for assessing the impact of NFC on the ecological function of soil microbial communities in paddy fields in the black soil area of Northeast China, which is highly important for promoting sustainable agricultural development and providing scientific reference for promoting the use of algal-derived nitrogen fertilizers.

摘要

固氮蓝藻(NFC)是能够进行固氮作用的光合原核微生物。它们可以用作稻田中的生物肥料,从而提高水稻分蘖能力和产量。为了揭示固氮蓝藻改变土壤碳储存的微生物机制,我们在中国东北黑土区三江平原的稻田中进行了一项使用 NFC 作为部分氮肥替代的田间试验。我们使用宏基因组测序技术和 Biolog Ecoplate™ 碳基质代谢测量,探索了稻田土壤微生物群落结构和碳利用的变化。结果表明,用 NFC 替代氮肥会使土壤微生物群落更容易出现富营养型细菌类群,并且变形菌门和放线菌门与土壤碳源的代谢密切相关。此外,通过共现网络分析,我们发现富营养型细菌聚集在与碳源代谢水平呈正相关的模块中。NFC 的添加促进了富营养型细菌的生长,增加了土壤微生物的碳利用水平,提高了微生物群落的多样性,并可能对土壤碳储量产生影响。本研究的结果有助于评估 NFC 对中国东北黑土区稻田土壤微生物群落生态功能的影响,这对于促进可持续农业发展具有重要意义,并为促进藻衍生氮肥的使用提供了科学参考。

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