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具有促植物生长特性和拮抗活性的葡萄细菌对杀菌剂的敏感性作为非靶标微生物。

Fungicide sensitivity of grapevine bacteria with plant growth-promoting traits and antagonistic activity as non-target microorganisms.

机构信息

Department of Biotechnology, University of Verona, Strada Le Grazie 15, Verona, 37134, Italy.

AGREA Centro Studi, San Giovanni Lupatoto, Italy.

出版信息

World J Microbiol Biotechnol. 2023 Mar 17;39(5):121. doi: 10.1007/s11274-023-03569-5.

Abstract

This study evaluates the capacity of commercial formulations of synthetic fungicides to inhibit grapevine bacterial growth when sprayed on vineyards to control diseases, such as downy mildew, powdery mildew and secondary rots. Fungicide sensitivity plate assays were carried out on bacteria isolated from vineyards that were also identified and characterized for their plant growth-promoting (PGP) traits and antifungal activity. The high taxonomic variability of bacteria screened with different chemical classes of fungicides is one new finding of this study. Seven out of 11 fungicides were able to inhibit the growth of bacteria at a concentration corresponding to the maximum dose allowed by law in spray treatments of vineyards. Bacterial sensitivity to each fungicide varied greatly. Many sensitive isolates displayed PGP traits and/or antagonistic activity. This study shows the potential impact of fungicidal treatments on grapevine bacterial microbiota. The involvement of bacteria beneficial to the growth and health of plants underlines the importance of this investigation. Our data reveal that the control of a certain disease may be possible using fungicides that have no or low impact on natural non-target microbiota. Understanding the action mechanisms of the active ingredients in these products is a priority for the development of new eco-friendly pesticides.

摘要

本研究评估了市售合成杀菌剂在葡萄园喷洒以控制疾病(如霜霉病、白粉病和继发性腐烂)时抑制葡萄细菌生长的能力。对从葡萄园分离出的细菌进行了杀菌剂敏感性平板分析,并对其进行了鉴定和植物促生(PGP)特性和抗真菌活性的特征分析。本研究的一个新发现是,用不同化学类别的杀菌剂筛选出的细菌具有很高的分类学变异性。在葡萄园喷雾处理中,有 7 种杀菌剂中的 11 种能够在对应于法律允许的最高剂量的浓度下抑制细菌的生长。细菌对每种杀菌剂的敏感性差异很大。许多敏感的分离株表现出 PGP 特性和/或拮抗活性。本研究表明了杀菌剂处理对葡萄细菌微生物群的潜在影响。对植物生长和健康有益的细菌的参与突出了这项研究的重要性。我们的数据表明,使用对自然非靶标微生物群没有或低影响的杀菌剂可能可以控制某些疾病。了解这些产品中有效成分的作用机制是开发新型环保农药的优先事项。

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