Humbert Pascal, Przyklenk Michael, Vemmer Marina, Patel Anant V
a Faculty of Engineering and Mathematics, WG Fermentation and Formulation of Biologicals and Chemicals , Bielefeld University of Applied Sciences , Bielefeld, Germany.
J Microencapsul. 2017 Feb;34(1):47-56. doi: 10.1080/02652048.2017.1282550. Epub 2017 Jan 31.
Calcium chloride (CC) is the most common cross-linker for the encapsulation of biocontrol microorganisms in alginate beads. The aim of this study was to evaluate if calcium gluconate (CG) can replace CC as cross-linker and at the same time improve viability after drying and rehydration, hygroscopic properties, shelf life and nutrient supply. Hence, the biocontrol fungi Metarhizium brunneum and Saccharomyces cerevisiae were encapsulated in Ca-alginate beads supplemented with starch. Beads were dried and maximum survival was found in beads cross-linked with CG. Beads prepared with CG showed lower hygroscopic properties, but a higher shelf life for encapsulated fungi. Moreover, we demonstrated that gluconate has a nutritive effect on encapsulated fungi, leading to increased mycelium growth of M. brunneum and to enhanced CO release from beads containing Saccharomyces cerevisiae. The application of CG as cross-linker will pave the way towards increasing drying survival and shelf life of various, especially drying-sensitive microbes.
氯化钙(CC)是将生防微生物包封在海藻酸钠珠粒中最常用的交联剂。本研究的目的是评估葡萄糖酸钙(CG)是否可以替代CC作为交联剂,同时提高干燥和复水后的活力、吸湿性能、保质期和养分供应。因此,将生防真菌绿僵菌和酿酒酵母包封在添加了淀粉的钙海藻酸钠珠粒中。珠粒经过干燥处理,结果发现用CG交联的珠粒中微生物的存活率最高。用CG制备的珠粒吸湿性能较低,但包封真菌的保质期更长。此外,我们证明葡萄糖酸盐对包封的真菌具有营养作用,导致绿僵菌的菌丝体生长增加,并使含有酿酒酵母的珠粒释放出更多的二氧化碳。将CG用作交联剂将为提高各种微生物,尤其是对干燥敏感的微生物的干燥存活率和保质期铺平道路。