Albert Daphné, Dumonceaux Tim, Carisse Odile, Beaulieu Carole, Filion Martin
Saint-Jean-sur-Richelieu Research and Development Centre, Agriculture and Agri-Food Canada, Saint-Jean-sur-Richelieu, QC J3B 7B5, Canada.
Saskatoon Research and Development Centre, Agriculture and Agri-Food Canada, Saskatoon, SK S7N 0X2, Canada.
Microorganisms. 2022 Jun 9;10(6):1189. doi: 10.3390/microorganisms10061189.
The fungal pathogen (Helotiales: Sclerotiniaceae) causes white mold, a disease that leads to substantial losses on a wide variety of hosts throughout the world. This economically important fungus affects yield and seed quality, and its control mostly relies on the use of environmentally damaging fungicides. This review aimed to present the latest discoveries on microorganisms and the biocontrol mechanisms used against white mold. A special focus is put on the identification of biocontrol desirable traits required for efficient disease control. A better understanding of the mechanisms involved and the conditions required for their action is also essential to ensure a successful implementation of biocontrol under commercial field conditions. In this review, a brief introduction on the pathogen, its disease cycle, and its main pathogenicity factors is presented, followed by a thorough description of the microorganisms that have so far demonstrated biocontrol potential against white mold and the mechanisms they use to achieve control. Antibiosis, induced systemic resistance, mycoparasitism, and hypovirulence are discussed. Finally, based on our actual knowledge, the best control strategies against that are likely to succeed commercially are discussed, including combining biocontrol desirable traits of particular interest.
这种真菌病原体(柔膜菌目:核盘菌科)引发白霉病,该病在全球范围内的多种寄主上都会造成重大损失。这种具有经济重要性的真菌会影响产量和种子质量,其防治主要依赖于使用对环境有破坏作用的杀菌剂。本综述旨在介绍有关微生物以及用于防治白霉病的生物防治机制的最新发现。特别关注确定有效控制病害所需的生物防治理想特性。更好地理解其中涉及的机制及其作用所需的条件对于确保在商业田间条件下成功实施生物防治也至关重要。在本综述中,首先简要介绍了病原体、其病害循环及其主要致病因素,随后详细描述了迄今为止已显示出对白霉病具有生物防治潜力的微生物及其实现防治的机制。讨论了抗生作用、诱导系统抗性、真菌寄生作用和低毒力。最后,基于我们目前的知识,讨论了可能在商业上取得成功的针对该病害的最佳防治策略,包括结合特别感兴趣的生物防治理想特性。