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Optimization of Protective Agents for The Freeze-Drying of Paenibacillus polymyxa Kp10 as a Potential Biofungicide

机译:多粘芽孢杆菌Kp10冷冻干燥作为潜在生物杀菌剂的保护剂的优化

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摘要

Anthracnose is a fungal disease causing major losses in crop production. Chemical fungicides widely used in crop plantations to combat fungal infections can be a threat to the environment and humans in the long term. Recently, biofungicides have gained much interest as an alternative to chemical fungicides due to their environmentally friendly nature. Biofungicide products in powder form can be formulated using the freeze-drying technique to provide convenient storage. Protective agent formulation is needed in maintaining the optimal viable cells of biofungicide products. In this study, 8.10 log colony-forming unit (CFU)/mL was the highest cell viability of Kp10 at 22 h during incubation. The effects of several selected protective agents on the viability of Kp10 after freeze-drying were studied. Response surface methodology (RSM) was used for optimizing formulation for the protective agents. The combination of lactose (10% / ), skim milk (20% / ), and sucrose (27.5% / ) was found to be suitable for preserving Kp10 during freeze-drying. Further, Kp10 demonstrated the ability to inhibit fungal pathogens, and , at 60.18% and 66.52% of inhibition of radial growth, respectively.
机译:炭疽病是一种真菌病,导致农作物减产。从长远来看,在农作物种植园中广泛使用的化学杀菌剂可抵抗真菌感染,可能对环境和人类构成威胁。近来,由于生物杀真菌剂的环境友好性质,其作为化学杀真菌剂的替代物已引起广泛关注。可以使用冷冻干燥技术配制粉末形式的生物杀真菌剂产品,以提供方便的储存。需要保护剂制剂来维持生物杀真菌剂产品的最佳存活细胞。在这项研究中,孵育期间22 h Kp10的最高细胞活力为8.10对数集落形成单位(CFU)/ mL。研究了几种选定的保护剂对冷冻干燥后Kp10活力的影响。响应面方法(RSM)用于优化保护剂的配方。乳糖(10%/),脱脂乳(20%/)和蔗糖(27.5%/)的组合被发现适合在冷冻干燥过程中保存Kp10。此外,Kp10表现出抑制真菌病原体的能力,并且在抑制放射状生长方面分别具有60.18%和66.52%的抑制能力。

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