Chaparro-Rodríguez Martha, Estrada-Bonilla German, Rosas-Pérez Jaiver, Gómez-Álvarez Martha, Cruz-Barrera Mauricio
Bioproducts Department, Corporación Colombiana de Investigación Agropecuaria (AGROSAVIA), Km 14 Vía Bogotá a Mosquera, Mosquera, Colombia.
Departamento de Farmacia, Facultad de Ciencias, Universidad Nacional de Colombia, Bogotá, Colombia.
Appl Microbiol Biotechnol. 2023 Nov;107(21):6671-6682. doi: 10.1007/s00253-023-12699-7. Epub 2023 Aug 22.
Several plant growth-promoting bacteria (PGPB) are gram-negative, and their cell viability is affected during the bio-inoculant production. Hence, formulation-drying processes provide challenges that limit the adoption of these beneficial microorganisms in sustainable agricultural production. Among delivery system strategies for gram-negative PGPB, the encapsulating cells in biopolymeric materials are emerging as a promising alternative. This research aims to evaluate the effect of additives and crosslinking agents on the survival of the consortium of Herbaspirillum frisingense AP21, Azospirillum brasilense D7, and Rhizobium leguminosarum T88 in hydrogel capsules. Three crosslinkers and diverse potential drying protectors were tested. Calcium gluconate provides notable consortium survival advantages regarding colony-forming units (CFUs) (losses of up to 4 log CFU) compared to calcium lactate and calcium chloride (up to 6 log CFU). Additives such as skimmed milk, whey protein, and Gelita® EC improve the recovery of viable cells after the drying process, demonstrating an increase in cell survival of the three bacteria by up to 4 log CFU. The combination of these substances into a capsule prototype extends the storage stability of bacterial consortium up to 3 months at 18 ± 2 °C. This study expands the knowledge for formulating gram-negative PGPB consortium, regarding the crosslinker and drying protector relationship on encapsulation processes with drying survival and further storage stability performance. KEY POINTS: • Hydrogel immobilization formulation approach for PGPB consortium • Enhancing drying survival of gram-negative PGPB consortium • Increasing storage stability of PGPB consortium at 18 °C.
几种植物促生细菌(PGPB)为革兰氏阴性菌,其细胞活力在生物菌剂生产过程中会受到影响。因此,制剂干燥过程带来了挑战,限制了这些有益微生物在可持续农业生产中的应用。在革兰氏阴性PGPB的递送系统策略中,将细胞封装在生物聚合材料中正成为一种有前景的替代方法。本研究旨在评估添加剂和交联剂对弗里斯草根瘤菌AP21、巴西固氮螺菌D7和豌豆根瘤菌T88联合体在水凝胶胶囊中的存活情况的影响。测试了三种交联剂和多种潜在的干燥保护剂。与乳酸钙和氯化钙(最多损失6个对数CFU)相比,葡萄糖酸钙在菌落形成单位(CFU)方面为联合体存活提供了显著优势(最多损失4个对数CFU)。脱脂牛奶、乳清蛋白和吉利塔®EC等添加剂可提高干燥过程后活细胞的回收率,表明这三种细菌的细胞存活率提高了多达4个对数CFU。将这些物质组合成胶囊原型可将细菌联合体在18±2°C下的储存稳定性延长至3个月。本研究扩展了关于革兰氏阴性PGPB联合体配方的知识,涉及交联剂和干燥保护剂在具有干燥存活率和进一步储存稳定性性能的封装过程中的关系。要点:•PGPB联合体的水凝胶固定化制剂方法•提高革兰氏阴性PGPB联合体的干燥存活率•提高PGPB联合体在18°C下的储存稳定性。