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Microparticle-enhanced Aspergillus ficuum phytase production and evaluation of fungal morphology in submerged fermentation

机译:深层发酵中微粒增强黄曲霉植酸酶的产生及真菌形态评价

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摘要

Phytase can be used in animal's diets to increase the absorption of several divalent ions, amino acids and proteins and to decrease the excessive phosphorus release in manure to prevent negative effects on the environment. This study aimed to enhance the current submerged fungal phytase productions with a novel fermentation technique by evaluating the effect of the various microparticles on Aspergillus ficuum phytase production. It was observed that microparticles prevented bulk fungal pellet growth, decreased average fungal pellet size and significantly increased phytase activity in the submerged fermentation. Microbial structure imaging results showed that the average fungal pellet radius decreased from 800 to 500 and 200 A mu m by addition of 15 g/L aluminum oxide and talcum, respectively, in shake-flask fermentation. Also, addition of 15 g/L of talcum and aluminum oxide increased phytase activity to 2.01 and 2.93 U/ml, respectively, compared to control (1.02 U/ml) in shake-flask fermentation. Additionally, phytase activity reached 6.49 U/ml within 96 h of fermentation with the addition of 15 g/L of talcum, whereas the maximum phytase activity was only 3.45 U/ml at 120 h of fermentation for the control in the 1-L working volume bioreactors. In conclusion, microparticles significantly increased fungal phytase activity and production yield compared to control fermentation.
机译:植酸酶可用于动物的饮食中,以增加对几种二价离子,氨基酸和蛋白质的吸收,并减少肥料中过多的磷释放,以防止对环境造成负面影响。这项研究旨在通过评估各种微粒对黄曲霉植酸酶产生的影响,通过一种新型的发酵技术来提高目前的淹没真菌植酸酶的产生。观察到,在水下发酵中,微粒阻止了散装真菌团块的生长,降低了平均真菌团块的大小,并显着提高了植酸酶的活性。微生物结构成像结果表明,在摇瓶发酵中,分别添加15 g / L氧化铝和滑石粉,平均真菌沉淀半径从800减小到500和200 Aμm。另外,与摇瓶发酵中的对照(1.02 U / ml)相比,添加15 g / L的滑石粉和氧化铝可将植酸酶活性分别提高至2.01和2.93 U / ml。此外,在发酵的96小时内,添加15 g / L的滑石粉,肌醇六磷酸酶活性达到6.49 U / ml,而在1-L工作的对照中,发酵的120 h时,最大植酸酶的活性仅为3.45 U / ml。大容量生物反应器。总之,与对照发酵相比,微粒显着提高了真菌植酸酶的活性和产量。

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