Duke Stephen O
National Center for Natural Products Research, School of Pharmacy, University of Mississippi, Oxford, Mississippi, USA.
Pest Manag Sci. 2024 Jan;80(1):56-64. doi: 10.1002/ps.7595. Epub 2023 Jun 15.
Microbial biopesticides to control plant pathogens and insects in crops have had significant success. However, there have been relatively few successes for microbial bioherbicides in crops, despite considerable numbers of publications and commercial product introductions in this area. Marketed microbial bioherbicide products for use in agriculture have been largely unsuccessful. This article covers the potential advantages of successful microbial bioherbicides, as well as the biological and technical issues that have limited their success. Technologies to overcome the problems that have limited the success of these products are discussed. The many advantages of using killed microbial products (e.g. cell-free filtrates) over living microbial products as bioherbicides are detailed. A commercialized mycoherbicide that has been selected for in the laboratory for control of the parasitic weed Striga hermonthica is being used with some success in Africa, indicating that non-transgenic modification of the genetics of bioherbicide microbes for improved efficacy is acceptable to some regulatory authorities. Genetic modifications to improve efficacy and host range, as well as improved application technology to greatly reduce the amount of product needed are two technologies that are likely to expand the use of microbial bioherbicides in the future. © 2023 Society of Chemical Industry.
微生物生物农药在控制作物中的植物病原体和昆虫方面取得了显著成功。然而,尽管该领域有大量的出版物和商业产品推出,但微生物生物除草剂在作物上取得成功的案例相对较少。用于农业的市场化微生物生物除草剂产品大多并不成功。本文涵盖了成功的微生物生物除草剂的潜在优势,以及限制其成功的生物学和技术问题。还讨论了克服限制这些产品成功的问题的技术。详细阐述了使用灭活微生物产品(如无细胞滤液)作为生物除草剂相对于活微生物产品的诸多优势。一种在实验室中被筛选用于防治寄生杂草独脚金的商业化真菌除草剂正在非洲取得一定成功,这表明对生物除草剂微生物进行非转基因改造以提高药效在一些监管机构是可以接受的。通过基因改造提高药效和扩大宿主范围,以及改进应用技术以大幅减少所需产品量,这两项技术有望在未来扩大微生物生物除草剂的使用范围。© 2023化学工业协会。