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使用四霉素组装有益土壤微生物群落图谱以减轻[具体作物]根腐病

Beneficial soil microbiome profiles assembled using tetramycin to alleviate root rot disease in .

作者信息

Liu Lianjin, Wang Zongqing, Luo Cheng, Deng Yinglong, Wu Wentao, Jin Yongping, Wang Yuxuan, Huang Hongping, Wei Zhaoxia, Zhu Youyong, He Xiahong, Guo Liwei

机构信息

State Key Laboratory for Conservation and Utilization of Bio-Resources, Yunnan Agricultural University, Kunming, Yunnan, China.

Key Laboratory of Agro-Biodiversity and Pest Management of Education Ministry of China, Yunnan Agricultural University, Kunming, Yunnan, China.

出版信息

Front Microbiol. 2025 Apr 29;16:1571684. doi: 10.3389/fmicb.2025.1571684. eCollection 2025.

Abstract

BACKGROUND

Root rot disease is a major threat to the sustainable production of . Tetramycin has a broad-spectrum fungicidal efficacy, low toxicity, and high efficiency, However, the prevention and control of root rot disease of and the specific mechanism of action are still unclear.

METHODS

In this paper, a combination of indoor and pot experiments was used to assess the effectiveness of tetramycin at alleviating root rot disease challenges encountered by . Amplicon sequencing, metagenomic analysis with microbial verification were used to investigate the microecological mechanisms underlying tetramycin's ability to reduce soil biological barriers.

RESULTS

We found that tetramycin significantly inhibited mycelial growth and spore germination of pathogenic fungi. Tetramycin, T2 (1000×) and T3 (500×), applied to continuous cropping soil, increased the seedling survival rates of . Additionally, tetramycin reduced fungal α-diversity and shifted the fungal community assembly from deterministic to stochastic process. The microbial functions influenced by tetramycin were primarily associated with antibiotic synthesis and siderophore synthesis. Antibiotic efflux and inactivation have also been identified as the main resistance mechanisms. Microbial verification results showed that the artificially assembled tetramycin-regulated microbial community could indeed alleviate the occurrence of diseases. Furthermore, the cross-kingdom synthetic community assembled by the three key strains (, and ) significantly improved the control of root rot disease and promoted plant growth.

DISCUSSION

This study provides novel insights into developing efficient biological control strategies and elucidates the role and mechanism of tetramycin in modulating soil microflora assembly to strengthen host disease resistance.

摘要

背景

根腐病是[作物名称]可持续生产的主要威胁。四霉素具有广谱杀菌功效、低毒且高效,然而,[作物名称]根腐病的防治及其具体作用机制仍不清楚。

方法

本文采用室内和盆栽试验相结合的方法,评估四霉素缓解[作物名称]所面临的根腐病挑战的有效性。利用扩增子测序、微生物验证的宏基因组分析来研究四霉素降低土壤生物屏障能力的微生态机制。

结果

我们发现四霉素显著抑制致病真菌的菌丝生长和孢子萌发。将四霉素、T2(1000倍)和T3(500倍)施用于连作土壤,提高了[作物名称]的幼苗成活率。此外,四霉素降低了真菌的α多样性,并将真菌群落组装过程从确定性过程转变为随机过程。受四霉素影响的微生物功能主要与抗生素合成和铁载体合成有关。抗生素外排和失活也被确定为主要的抗性机制。微生物验证结果表明,人工组装的四霉素调控微生物群落确实可以减轻病害的发生。此外,由三种关键菌株([菌株名称1]、[菌株名称2]和[菌株名称3])组装的跨界合成群落显著改善了根腐病的防治效果并促进了植物生长。

讨论

本研究为开发高效生物防治策略提供了新的见解,并阐明了四霉素在调节土壤微生物群落组装以增强宿主抗病性方面的作用和机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4add/12069275/e40620bd3d20/fmicb-16-1571684-g001.jpg

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