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放线菌对植物病原体的生物防治:文献计量分析与系统综述

Biocontrol of plant pathogens by actinomycetes: a bibliometric analysis and systematic review.

作者信息

Kovaleski Marcos, Maurer Talison Roberto, Banfi Matheus, Remor Mateus, Restelatto Michel, Rieder Rafael, Deuner Carolina Cardoso, Colla Luciane Maria

机构信息

Post Graduation Program in Agronomy, University of Passo Fundo, UPF, Passo Fundo, Brazil.

出版信息

World J Microbiol Biotechnol. 2025 Jul 2;41(7):243. doi: 10.1007/s11274-025-04422-7.

Abstract

Fungal disease control in agricultural crops represents one of the major challenges in modern agriculture. While synthetic fungicides are effective, their continuous use leads to pathogen resistance, environmental harm, and health risks to humans and animals. Within this context, the present study aims to review current knowledge regarding the use of actinomycetes as biological alternatives, focusing on the identification of molecules produced by these microorganisms that are responsible for biocontrol or biostimulant activity in plants. Actinomycetes are known for synthesizing bioactive compounds with antifungal, antibacterial, and plant growth-promoting properties. Among them, the genus Streptomyces stands out for its wide ecological distribution and key role in suppressing phytopathogens through the production of secondary metabolites such as antibiotics, lytic enzymes, siderophores, and resistance inducers. This review compiles findings from laboratory-based antibiosis assays, pathogen interaction studies, and the development of microbial-based inputs. The biotechnological potential of actinomycetes has led to the emergence of novel biocontrol agents that may replace conventional fungicides while also supporting bioremediation efforts, including pesticide degradation and the breakdown of toxic residues. These advances have been driven by cutting-edge biotechnological tools. Key findings highlight that actinomycetes, particularly Streptomyces spp., are effective against diverse phytopathogens, promote plant health, and contribute to environmental sustainability. In conclusion, the use of actinomycetes represents a viable and innovative alternative for sustainable disease management in agriculture.

摘要

农作物真菌病害的防治是现代农业面临的主要挑战之一。虽然合成杀菌剂有效,但持续使用会导致病原体产生抗性、危害环境,并对人类和动物健康构成风险。在此背景下,本研究旨在回顾有关将放线菌用作生物替代物的现有知识,重点是鉴定这些微生物产生的、对植物具有生物防治或生物刺激活性的分子。放线菌以合成具有抗真菌、抗菌和促进植物生长特性的生物活性化合物而闻名。其中,链霉菌属因其广泛的生态分布以及通过产生抗生素、裂解酶、铁载体和抗性诱导剂等次生代谢产物在抑制植物病原体方面的关键作用而脱颖而出。本综述汇编了基于实验室的抗菌试验、病原体相互作用研究以及基于微生物的投入物开发的研究结果。放线菌的生物技术潜力催生了新型生物防治剂,这些生物防治剂可能会取代传统杀菌剂,同时也支持生物修复工作,包括农药降解和有毒残留物的分解。这些进展是由前沿生物技术工具推动的。主要研究结果表明,放线菌,特别是链霉菌属,对多种植物病原体有效,能促进植物健康,并有助于环境可持续性。总之,放线菌的使用是农业可持续病害管理的一种可行且创新的替代方法。

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