Hydrogel capsules as new delivery system for Trichoderma koningiopsis Th003 to control Rhizoctonia solani in rice (Oryza sativa)

Mauricio Cruz-Barrera, Luisa Fernanda Izquierdo-García, Magda Gómez-Marroquín, Adriana Santos-Díaz, Liz Uribe-Gutiérrez, Carlos Andrés Moreno-Velandia
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Abstract

The incorporation of biological control agents (BCAs) such as Trichoderma spp. in agricultural systems favors the transition towards sustainable practices of plant nutrition and diseases control. Novel bioproducts for crop management are called to guarantee sustainable antagonism activity of BCAs and increase the acceptance of the farmers. The encapsulation in polymeric matrices play a prominent role for providing an effective carrier/protector and long-lasting bioproduct. This research aimed to study the influence of biopolymer in hydrogel capsules on survival and shelf-life of T. koningiopsis. Thus, two hydrogel capsules prototypes based on alginate (P1) and amidated pectin (P2), containing conidia of T. koningiopsis Th003 were formulated. Capsules were prepared by the ionic gelation method and calcium gluconate as crosslinker. Conidia releasing under different pH values of the medium, survival of conidia in drying capsules, storage stability, and biocontrol activity against rice sheath blight (Rhizoctonia solani) were studied. P2 prototype provided up to 98% survival to Th003 in fluid bed drying, faster conidia releasing at pH 5.8, storage stability greater than 6 months at 18 °C, and up to 67% of disease reduction. However, both biopolymers facilitate the antagonistic activity against R. solani, and therefore can be incorporated in novel hydrogel capsules-based biopreparations. This work incites to develop novel biopesticides-based formulations with potential to improve the delivery process in the target site and the protection of the active ingredient from the environmental factors.

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水凝胶胶囊作为一种新的毛霉菌输送系统,用于控制水稻根瘤菌(Oryza sativa)的生长
在农业系统中加入毛霉属等生物防治剂(BCA)有利于向可持续的植物营养和疾病防治方法过渡。为保证生物防治剂的可持续拮抗活性并提高农民的接受度,需要用于作物管理的新型生物产品。封装在聚合物基质中可提供有效的载体/保护剂和长效生物产品。本研究旨在研究水凝胶胶囊中的生物聚合物对 T. koningiopsis 的存活率和货架期的影响。因此,制备了两种基于海藻酸盐(P1)和酰胺化果胶(P2)的水凝胶囊原型,内含拟南芥 Th003 的分生孢子。胶囊采用离子凝胶法制备,葡萄糖酸钙作为交联剂。研究了分生孢子在不同 pH 值培养基中的释放情况、分生孢子在干燥胶囊中的存活率、储存稳定性以及对水稻鞘枯病(Rhizoctonia solani)的生物防治活性。在流化床干燥过程中,P2 原型对 Th003 的存活率高达 98%,在 pH 值为 5.8 时分生孢子释放更快,在 18 °C 下的储存稳定性超过 6 个月,病害减少率高达 67%。不过,这两种生物聚合物都能促进对 R. solani 的拮抗活性,因此可以加入新型水凝胶胶囊生物制剂中。这项工作激励人们开发新型生物农药制剂,以改善目标部位的给药过程并保护活性成分不受环境因素的影响。
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