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通过固态发酵优化植酸酶生产以使其具有作为饲料添加剂的潜力。

Optimization of phytase production by in solid-state fermentation for potential as a feed additive.

作者信息

Singh Bijender, Sharma Jai Gopal, Giri Bhoopander

机构信息

Environmental and Industrial Biotechnology Laboratory, Department of Biotechnology, Delhi Technological University, Delhi.

Laboratory of Bioprocess Technology, Department of Microbiology, Maharshi Dayanand University, Rohtak, Haryana.

出版信息

Prep Biochem Biotechnol. 2024 Jul;54(6):819-829. doi: 10.1080/10826068.2023.2297688. Epub 2023 Dec 28.

Abstract

The study aims to statistically optimize the phytase production by PBG30 in solid-state fermentation using wheat bran as substrate. Variables viz. pH, incubation days, MgSO, and Tween-80 were the significant parameters identified through the Plackett-Burman design (PBD) that majorly influenced the phytase production. Further, central composite design (CCD) method of response surface methodology (RSM) defined the optimum values for these factors i.e., pH 7.0, 5 days of incubation, 0.75% of MgSO, and 3.5% of Tween-80 that leads to maximum phytase production of 475.42 U/g DMR. Phytase production was also sustainable in flasks and trays of different sizes with phytase levels ranging from 394.95 to 475.42 U/g DMR. Enhancement in phytase production is 5.6-fold as compared to unoptimized conditions. The dephytinization of feed showed an amelioration in the nutritive value by releasing inorganic phosphate and other nutrients in a time-dependent manner. The highest amount of inorganic phosphate (33.986 mg/g feed), reducing sugar (134.4 mg/g feed), and soluble protein (115.52 mg/g feed) was achieved at 37 °C with 200 U of phytase in 0.5 g feed for 48 h. This study reports the economical and large-scale production of phytase with applicability in enhancing feed nutrition.

摘要

本研究旨在通过统计优化以麦麸为底物的固态发酵中PBG30产生植酸酶的条件。通过Plackett-Burman设计(PBD)确定的变量,即pH值、培养天数、MgSO₄和吐温80,是对植酸酶产生有重大影响的显著参数。此外,响应面法(RSM)中的中心复合设计(CCD)确定了这些因素的最佳值,即pH 7.0、培养5天、0.75%的MgSO₄和3.5%的吐温80,这导致最大植酸酶产量为475.42 U/g干物质回收率(DMR)。在不同尺寸的烧瓶和托盘中,植酸酶产量也具有可持续性,植酸酶水平在394.95至475.42 U/g DMR之间。与未优化的条件相比,植酸酶产量提高了5.6倍。饲料的脱植酸作用通过以时间依赖的方式释放无机磷酸盐和其他营养物质,使营养价值得到改善。在37°C下,0.5 g饲料中加入200 U植酸酶作用48小时,可获得最高量的无机磷酸盐(33.986 mg/g饲料)、还原糖(134.4 mg/g饲料)和可溶性蛋白质(115.52 mg/g饲料)。本研究报道了植酸酶的经济大规模生产及其在提高饲料营养方面的适用性。

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