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通过海洋酵母HH16的紫外线诱变提高甘油产量:动力学及发酵过程优化

Enhancement of glycerol production by UV-mutagenesis of the marine yeast HH16: kinetics and optimization of the fermentation process.

作者信息

Hawary Heba, Rasmey Abdel-Hamied M, Aboseidah Akram A, El-Morsi El-Shahat, Hafez Mohamed

机构信息

Botany and Microbiology Department, Faculty of Science, Suez University, Suez, Egypt.

出版信息

3 Biotech. 2019 Dec;9(12):446. doi: 10.1007/s13205-019-1981-4. Epub 2019 Nov 11.

Abstract

The current study aims to enhance glycerol production using UV-mutagenesis of the marine yeast HH16 isolated from marine sediment collected from South Sinai Governorate, Egypt. Besides optimization of the culture conditions and analyzing the kinetic parameters of growth and glycerol biosynthesis by the mutant strain were studied. The marine yeast isolate HH16 was selected as the front runner glycerol-producer among all tested isolates, with glycerol yield recorded as 66.55 gl. The isolate was identified based on the phenotypic and genotypic characteristics of . The genotypic characterization based on the internal transcribed spacer (ITS) sequence was deposited in the GenBank database with the accession number MK182824. UV-mutagenesis of HH16 by its exposure to UV radiation (254 nm, 200 mW cm) for 5 min; increased its capability in the glycerol production rate with 16.97% (80.15 g l). Based on the kinetic and Monod equations, the maximum specific growth rate ( ) and maximum specific glycerol production rate ( ) by the mutant strain HH16MU5 were 0.21 h and 0.103 g g, respectively. Optimization of the fermentation parameters such as nitrogen source, salinity and pH has been achieved. The maximum glycerol production 86.55 g l has been attained in a fermentation medium composed of 200 g l glucose, 1 g l peptone, 3 g l yeast extract, and 58.44 g l NaCl, this medium was adjusted at pH 8 and incubated for 3 days at 30° C. Moreover, results indicated the ability of this yeast to produce glycerol (73.33 g l) using a seawater based medium. These findings suggest the applicability of using the yeast isolate HH16MU5 as a potential producer of glycerol for industrial purposes.

摘要

本研究旨在通过对从埃及西奈半岛南部采集的海洋沉积物中分离出的海洋酵母HH16进行紫外线诱变,提高甘油产量。此外,还对培养条件进行了优化,并研究了突变菌株生长和甘油生物合成的动力学参数。在所有测试菌株中,海洋酵母分离株HH16被选为领先的甘油生产菌株,甘油产量记录为66.55 g/l。根据其表型和基因型特征对该菌株进行了鉴定。基于内部转录间隔区(ITS)序列的基因型特征已存入GenBank数据库,登录号为MK182824。通过将HH16暴露于紫外线辐射(254 nm,200 mW/cm²)5分钟进行紫外线诱变,其甘油生产率提高了16.97%(80.15 g/l)。根据动力学和莫诺德方程,突变菌株HH16MU5的最大比生长速率(μ)和最大比甘油生产速率(qP)分别为0.21 h⁻¹和0.103 g/g。已实现了发酵参数如氮源、盐度和pH的优化。在由200 g/l葡萄糖、1 g/l蛋白胨、3 g/l酵母提取物和58.44 g/l NaCl组成的发酵培养基中,pH调至8并在30℃下培养3天,获得了最大甘油产量86.55 g/l。此外,结果表明该酵母能够使用基于海水的培养基生产甘油(73.33 g/l)。这些发现表明,酵母分离株HH16MU5作为工业用途甘油潜在生产者具有适用性。

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