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生物防治剂改变了葡萄叶际微环境的稳定性和功能特性。

Biocontrol agents transform the stability and functional characteristics of the grape phyllosphere microenvironment.

作者信息

He Tao, Yang Meng, Du Hongyan, Du Ronghui, He Yueqiu, Wang Sheng, Deng Weiping, Liu Yixiang, He Xiahong, Zhu Youyong, Zhu Shusheng, Du Fei

机构信息

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

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

出版信息

Front Plant Sci. 2024 Oct 16;15:1439776. doi: 10.3389/fpls.2024.1439776. eCollection 2024.

Abstract

The spread of grape leaf diseases has a negative impact on the sustainable development of agriculture. Diseases induced by significantly affect the quality of grapes. biocontrol agents have been proven effective in disease management. However, limited research has been conducted on the impact of biocontrol agents on the assembly and potential functions of plant phyllosphere microbial communities. This study used high-throughput sequencing combined with bioinformatics analysis and culture omics technology for analysis. The results showed that biocontrol bacteria utilized in this study can significantly reduce the disease index of powdery mildew (<0.05); concurrently, it exhibits a lower disease index compared to traditional fungicides. A comprehensive analysis has revealed that biocontrol bacteria have no significant impact on the diversity of phyllosphere fungi and bacteria, while fungicides can significantly reduce bacterial diversity. Additionally, biocontrol agents can increase the complexity of fungal networks and enhance the degree of modularity and stability of the bacterial network. The results also showed that the biocontrol agents, which contained a high amount of , were able to effectively colonize the grapevine phyllosphere, creating a microenvironment that significantly inhibits pathogenic bacteria on grape leaves while enhancing leaf photosynthetic capacity. In conclusion, biocontrol agents significantly reduce the grape powdery mildew disease index, promote a microenvironment conducive to symbiotic microorganisms and beneficial bacteria, and enhance plant photosynthetic capacity. These findings provide a basis for promoting biocontrol agents and offer valuable insights into sustainable agriculture development.

摘要

葡萄叶部病害的传播对农业可持续发展产生负面影响。由[未提及具体病害诱因]引发的病害显著影响葡萄品质。生物防治剂已被证明在病害管理中有效。然而,关于生物防治剂对植物叶际微生物群落组装和潜在功能影响的研究有限。本研究采用高通量测序结合生物信息学分析及培养组学技术进行分析。结果表明,本研究中使用的生防细菌可显著降低白粉病病情指数(<0.05);同时,与生防细菌相比,其病情指数更低。综合分析表明,生防细菌对叶际真菌和细菌的多样性无显著影响,而杀菌剂可显著降低细菌多样性。此外,生物防治剂可增加真菌网络的复杂性,提高细菌网络的模块度和稳定性。结果还表明,含有大量[未提及具体成分]的生物防治剂能够有效定殖于葡萄叶际,营造一个显著抑制葡萄叶片上病原菌同时提高叶片光合能力的微环境。总之,生物防治剂显著降低葡萄白粉病病情指数,促进有利于共生微生物和有益细菌的微环境形成,并提高植物光合能力。这些发现为推广生物防治剂提供了依据,也为可持续农业发展提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1bab/11524152/de257c04c8ea/fpls-15-1439776-g001.jpg

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