微生物接种剂的生物包封:机理、剂型和应用技术

Blanca Rojas-Sánchez, Paulina Guzmán-Guzmán, Luzmaria R. Morales-Cedeño, M. D. C. Orozco-Mosqueda, B. C. Saucedo-Martínez, Juan Manuel Sánchez-Yáñez, A. Fadiji, O. Babalola, B. Glick, G. Santoyo
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引用次数: 11

摘要

为了提高产量和抵消生物和非生物因素造成的负面影响,在田间过度使用农用化学品,导致土壤肥力恶化,对环境和人类健康的负面影响也有所增加。因此,应用有益微生物作为生物接种剂是一种生态友好的农药替代品。促进植物生长的细菌和真菌在促进植物生长和生产以及减少多种作物病原体的作用方面是有效的。然而,这些有益微生物在农业领域的成功应用面临着生存、定殖效率和货架储存时间短等困难。因此,有必要探索新的方法来封装,配制和应用生物接种剂。为了获得生物胶囊产品的预期质量,确定聚合物的类型、胶囊大小、胶囊技术以及在生产过程中使用正确的化学和物理辅助因素是至关重要的。因此,本文重点介绍了微生物胶囊的各种配方类型和应用技术,并讨论了微生物胶囊在农业生产中的多重优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioencapsulation of Microbial Inoculants: Mechanisms, Formulation Types and Application Techniques
The excessive use of agrochemicals in the field to increase production and counteract the negative effects caused by biotic and abiotic factors has led to a deterioration in soil fertility, plus an increment in negative impacts on the environment and human health. Therefore, the application of beneficial microorganisms as bioinoculants is an eco-friendly alternative to agrochemicals. Plant growth-promoting bacteria and fungi have been effective in promoting plant growth and production, as well as reducing the action of pathogens in multiple crops. However, successful application of such beneficial microorganisms in the agricultural field has faced several difficulties, such as survival, colonization efficiency and short periods of shelf storage. Therefore, it is essential to explore novel ways to encapsulate, formulate and apply bioinoculants. To obtain the expected quality in bioencapsulated products, it is essential to determine the type of polymer, capsule size, encapsulation technique and use the correct chemical and physical cofactors involved in the production process. Thus, this review highlights the various formulation types and application techniques, as well as discussing the multiple advantages of using microbial encapsulates to have better results in agricultural production.
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