Pant Deepak, Adholeya Alok
Centre of Bioresources and Biotechnology, TERI University, DS Block, India Habitat Centre, Lodhi Road, New Delhi 110003, India.
Biodegradation. 2007 Oct;18(5):647-59. doi: 10.1007/s10532-006-9097-z. Epub 2006 Dec 20.
Selected isolates of fungi were grown on wheat straw and corncob in the presence of different moistening agents such as water, molasses, potato dextrose broth and distillery effluent. All the fungal isolates responded differently with respect to growth and ligninolytic enzyme production. Fungal growth on different substrates was checked by calculating ergosterol content, which varied widely within a single species when grown on different substrates. The maximum laccase production was obtained for Aspergillus flavus TERI DB9 grown on wheat straw with molasses. For manganese peroxidase, highest production was in Aspergillus niger TERI DB20 grown on corncob with effluent. Among the two isolates positive for lignin peroxidase, the highest production was in Fusarium verticillioides ITCC 6140. This immobilized fungal biomass was then used for decolorization of effluent from a cane molasses based distillery. Maximum decolorization (86.33%) was achieved in Pleurotus ostreatus (Florida) Eger EM 1303 immobilized on corncob with molasses in a period of 28 days.
挑选出的真菌分离株在不同润湿剂(如水、糖蜜、马铃薯葡萄糖肉汤和酿酒厂废水)存在的情况下,在小麦秸秆和玉米芯上进行培养。所有真菌分离株在生长和木质素分解酶产生方面的反应各不相同。通过计算麦角固醇含量来检测不同底物上的真菌生长情况,同一物种在不同底物上生长时,麦角固醇含量差异很大。在添加糖蜜的小麦秸秆上生长的黄曲霉TERI DB9产生的漆酶最多。对于锰过氧化物酶,在添加废水的玉米芯上生长的黑曲霉TERI DB20产量最高。在两种产生木质素过氧化物酶呈阳性的分离株中,轮枝镰孢ITCC 6140的产量最高。然后将这种固定化真菌生物质用于甘蔗糖蜜基酿酒厂废水的脱色。固定在添加糖蜜的玉米芯上的糙皮侧耳(佛罗里达)Eger EM 1303在28天内实现了最大脱色率(86.33%)。