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真菌植酸酶的生产生物过程、特性及生物技术应用

Bioprocess for Production, Characteristics, and Biotechnological Applications of Fungal Phytases.

作者信息

Jatuwong Kritsana, Suwannarach Nakarin, Kumla Jaturong, Penkhrue Watsana, Kakumyan Pattana, Lumyong Saisamorn

机构信息

Department of Biology, Faculty of Science, Chiang Mai University, Chiang Mai, Thailand.

Center of Excellence in Microbial Diversity and Sustainable Utilization, Faculty of Science, Chiang Mai University, Chiang Mai, Thailand.

出版信息

Front Microbiol. 2020 Feb 14;11:188. doi: 10.3389/fmicb.2020.00188. eCollection 2020.

Abstract

Phytases are a group of enzymes that hydrolyze the phospho-monoester bonds of phytates. Phytates are one of the major forms of phosphorus found in plant tissues. Fungi are mainly used for phytase production. The production of fungal phytases has been achieved under three different fermentation methods including solid-state, semi-solid-state, and submerged fermentation. Agricultural residues and other waste materials have been used as substrates for the evaluation of enzyme production in the fermentation process. Nutrients, physical conditions such as pH and temperature, and protease resistance are important factors for increasing phytase production. Fungal phytases are considered monomeric proteins and generally possess a molecular weight of between 14 and 353 kDa. Fungal phytases display a broad substrate specificity with optimal pH and temperature ranges between 1.3 and 8.0 and 37-67°C, respectively. The crystal structure of phytase has been studied in . Notably, thermostability engineering has been used to improve relevant enzyme properties. Furthermore, fungal phytases are widely used in food and animal feed additives to improve the efficiency of phosphorus intake and reduce the amount of phosphorus in the environment.

摘要

植酸酶是一类能水解植酸盐中磷酸单酯键的酶。植酸盐是植物组织中磷的主要存在形式之一。真菌主要用于生产植酸酶。真菌植酸酶的生产已通过三种不同的发酵方法实现,包括固态发酵、半固态发酵和深层发酵。农业残留物和其他废料已被用作发酵过程中评估酶产量的底物。营养物质、诸如pH值和温度等物理条件以及蛋白酶抗性是提高植酸酶产量的重要因素。真菌植酸酶被认为是单体蛋白,其分子量一般在14至353 kDa之间。真菌植酸酶表现出广泛的底物特异性,其最佳pH值范围为1.3至8.0,最佳温度范围为37至67°C。植酸酶的晶体结构已得到研究。值得注意的是,热稳定性工程已被用于改善相关酶的特性。此外,真菌植酸酶广泛用于食品和动物饲料添加剂,以提高磷的摄入效率并减少环境中的磷含量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f78f/7034034/7885fd72a6bd/fmicb-11-00188-g001.jpg

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