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受水稻根系影响的土壤代谢过程共同调节了抗生素抗性组的环境演化。

Soil metabolic processes influenced by rice roots co-regulates the environmental evolution of antibiotic resistome.

机构信息

Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, Tianjin, China.

Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, Tianjin, China.

出版信息

Environ Int. 2024 Nov;193:109116. doi: 10.1016/j.envint.2024.109116. Epub 2024 Nov 7.

DOI:10.1016/j.envint.2024.109116
PMID:39522487
Abstract

Plant root activities lead to significant differences in metabolites between the rhizosphere and non-rhizosphere soil, profoundly affecting microbial distribution. However, how this process drives the migration and propagation of manure-derived antibiotic resistance genes (ARGs) in farmland ecosystems remains unclear. Herein, we used a rice pot microcosm experiment to explore the characteristics of antibiotic resistome and bacterial communities in rhizosphere and non-rhizosphere soils and the driving effects of rhizosphere metabolites on ARG propagation. The results showed significant differences in some ARGs and bacterial diversity in rhizosphere and non-rhizosphere soils with varied differential ARGs between different growth stages of rice (P < 0.05). The biosynthesis of secondary metabolites and glutathione metabolism were found to be the main pathways affecting ARG differences in rhizosphere and non-rhizosphere soils under manure application. Structural equation modeling (SEM) analysis further indicated that ARG distribution differences between rhizosphere and non-rhizosphere soils were mainly regulated by differential metabolites, which influenced the ARG distribution by altering the succession of soil microbial communities. These results demonstrate the role of differential metabolites resulting from rice root activities in co-regulating ARG distribution, providing new insights into the regulatory mechanisms of soil ARG dynamics in paddy fields.

摘要

植物根系活动导致根际和非根际土壤之间代谢物存在显著差异,从而深刻影响微生物分布。然而,这一过程如何驱动农田生态系统中粪肥衍生抗生素抗性基因(ARG)的迁移和传播尚不清楚。本研究采用水稻盆栽微宇宙实验,探讨了根际和非根际土壤中抗生素抗性组和细菌群落的特征,以及根际代谢物对 ARG 传播的驱动作用。结果表明,水稻不同生长阶段的根际和非根际土壤中存在一些 ARG 和细菌多样性的显著差异(P < 0.05)。在施用粪肥的情况下,次生代谢物生物合成和谷胱甘肽代谢被发现是影响根际和非根际土壤中 ARG 差异的主要途径。结构方程模型(SEM)分析进一步表明,根际和非根际土壤中 ARG 分布的差异主要受差异代谢物的调节,通过改变土壤微生物群落的演替来影响 ARG 的分布。这些结果表明,水稻根系活动产生的差异代谢物在共同调节 ARG 分布方面发挥了作用,为稻田土壤 ARG 动态的调控机制提供了新的见解。

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Environ Int. 2024 Nov;193:109116. doi: 10.1016/j.envint.2024.109116. Epub 2024 Nov 7.
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