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Industrially-Scalable Microencapsulation of Plant Beneficial Bacteria in Dry Cross-Linked Alginate Matrix

机译:植物有益细菌在干燥交联海藻酸盐基质中的工业规模微囊化

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摘要

Microencapsulation of plant-beneficial bacteria, such as pink pigmented facultative methylotrophs (PPFM), may greatly extend the shelf life of these Gram-negative microorganisms and facilitate their application to crops for sustainable agriculture. A species of PPFM designated Methylobacterium radiotolerans was microencapsulated in cross-linked alginate microcapsules (CLAMs) prepared by an innovative and industrially scalable process that achieves polymer cross-linking during spray-drying. PPFM survived the spray-drying microencapsulation process with no significant loss in viable population, and the initial population of PPFM in CLAMs exceeded 1010 CFU/g powder. The PPFM population in CLAMs gradually declined by 4 to 5 log CFU/g over one year of storage. The extent of alginate cross-linking, modulated by adjusting the calcium phosphate content in the spray-dryer feed, did not influence cell viability after spray-drying, viability over storage, or dry particle size. However, particle size measurements and light microscopy of aqueous CLAMs suggest that enhanced crosslinking may limit the release of encapsulated bacteria. This work demonstrates an industrially scalable method for producing alginate-based inoculants that may be suitable for on-seed or foliar spray applications.
机译:微囊化有益植物的细菌,例如粉红色的兼性甲基营养菌(PPFM),可以大大延长这些革兰氏阴性微生物的保质期,并促进其在作物上的应用,以实现可持续农业。将一种PPFM命名为耐甲基芽孢杆菌(Methylobacterium radiolerlerans)微囊化在通过创新的,工业上可扩展的工艺制备的交联藻酸盐微囊(CLAM)中,该工艺在喷雾干燥过程中实现了聚合物的交联。 PPFM在喷雾干燥微囊化过程中幸存下来,存活种群没有明显损失,并且CLAMs中PPFM的初始种群超过10 10 CFU / g粉末。储存一年后,CLAM中的PPFM种群逐渐下降了4至5 log CFU / g。通过调节喷雾干燥器进料中磷酸钙含量来调节的藻酸盐交联程度,不影响喷雾干燥后的细胞存活力,储存期间的存活力或干燥粒度。但是,含水CLAM的粒度测量和光学显微镜表明,增强的交联作用可能会限制包封细菌的释放。这项工作展示了一种工业上可扩展的方法,用于生产基于藻酸盐的接种剂,该接种剂可能适合在种子或叶面喷雾应用中使用。

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