Jeong Yong-Seob, So Kum-Kang, Lee Ju-Hee, Kim Jung-Mi, Chun Gie-Taek, Chun Jeesun, Kim Dae-Hyuk
Department of Food Science and Technology, Chonbuk National University, Jeonju, Korea.
Departments of Molecular Biology and Bioactive Material Sciences, Institute for Molecular Biology and Genetics, Chonbuk National University, Jeonju, Korea.
Mycobiology. 2019 Sep 18;47(4):512-520. doi: 10.1080/12298093.2019.1661566. eCollection 2019.
Statistical experimental methods were used to optimize the medium for mass production of a novel laccase3 (Lac3) by recombinant TYEGLAC3-1. The basic medium was composed of glucose, casamino acids, yeast nitrogen base without amino acids (YNB w/o AA), tryptophan, and adenine. A one-factor-at-a-time approach followed by the fractional factorial design identified galactose, glutamic acid, and ammonium sulfate, as significant carbon, nitrogen, and mineral sources, respectively. The steepest ascent method and response surface methodology (RSM) determined that the optimal medium was (g/L): galactose, 19.16; glutamic acid, 5.0; and YNB w/o AA, 10.46. In this medium, the Lac3 activity (277.04 mU/mL) was 13.5 times higher than that of the basic medium (20.50 mU/mL). The effect of temperature, pH, agitation (rpm), and aeration (vvm) was further examined in a batch fermenter. The best Lac3 activity was 1176.04 mU/mL at 25 °C, pH 3.5, 100 rpm, and 1 vvm in batch culture.
采用统计实验方法优化重组体TYEGLAC3-1大量生产新型漆酶3(Lac3)的培养基。基础培养基由葡萄糖、酪蛋白氨基酸、无氨基酸酵母氮源(YNB w/o AA)、色氨酸和腺嘌呤组成。采用一次单因素法随后进行析因设计,确定半乳糖、谷氨酸和硫酸铵分别为重要的碳源、氮源和矿物质来源。最速上升法和响应面法(RSM)确定最佳培养基为(g/L):半乳糖19.16;谷氨酸5.0;YNB w/o AA 10.46。在此培养基中,Lac3活性(277.04 mU/mL)比基础培养基(20.50 mU/mL)高13.5倍。在分批发酵罐中进一步考察了温度、pH、搅拌速度(rpm)和通气量(vvm)的影响。在分批培养中,25 °C、pH 3.5、100 rpm和1 vvm条件下,最佳Lac3活性为1176.04 mU/mL。