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基于木霉的生物防治制剂的生物技术开发。

Biotechnological development of Trichoderma-based formulations for biological control.

机构信息

Empa - Swiss Federal Laboratories for Materials Science and Technology, Laboratory for Cellulose and Wood Materials, St. Gallen, Switzerland.

Department of Chemical Engineering, Queen's University, Kingston, Canada.

出版信息

Appl Microbiol Biotechnol. 2023 Sep;107(18):5595-5612. doi: 10.1007/s00253-023-12687-x. Epub 2023 Jul 21.

Abstract

Trichoderma spp. are a genus of well-known fungi that promote healthy growth and modulate different functions in plants, as well as protect against various plant pathogens. The application of Trichoderma and its propagules as a biological control method can therefore help to reduce the use of chemical pesticides and fertilizers in agriculture. This review critically discusses and analyzes groundbreaking innovations over the past few decades of biotechnological approaches to prepare active formulations containing Trichoderma. The use of various carrier substances is covered, emphasizing their effects on enhancing the shelf life, viability, and efficacy of the final product formulation. Furthermore, the use of processing techniques such as freeze drying, fluidized bed drying, and spray drying are highlighted, enabling the development of stable, light-weight formulations. Finally, promising microencapsulation techniques for maximizing the performance of Trichoderma spp. during application processes are discussed, leading to the next-generation of multi-functional biological control formulations. KEY POINTS: • The development of carrier substances to encapsulate Trichoderma propagules is highlighted. • Advances in biotechnological processes to prepare Trichoderma-containing formulations are critically discussed. • Current challenges and future outlook of Trichoderma-based formulations in the context of biological control are presented.

摘要

木霉属真菌是一类广为人知的真菌,能促进植物的健康生长和调节不同功能,还能防治多种植物病原体。因此,应用木霉及其繁殖体作为生物防治方法有助于减少农业中化学农药和化肥的使用。本综述批判性地讨论和分析了过去几十年中生物技术方法在制备含木霉活性制剂方面的开创性创新。涵盖了各种载体物质的使用,强调了它们对提高最终产品制剂的保质期、生存能力和功效的影响。此外,还强调了使用冷冻干燥、流化床干燥和喷雾干燥等加工技术的重要性,这些技术能够开发出稳定、轻便的制剂。最后,讨论了最大限度地提高木霉属在应用过程中性能的有前途的微胶囊化技术,从而为下一代多功能生物防治制剂铺平了道路。 关键点: • 强调了用于封装木霉繁殖体的载体物质的开发。 • 批判性地讨论了制备含木霉制剂的生物技术工艺的进展。 • 提出了基于木霉的制剂在生物防治方面的当前挑战和未来展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c3d/10439859/e577d4bdcc9a/253_2023_12687_Fig1_HTML.jpg

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