四氢嘧啶
盐单胞菌属
发酵
嗜盐菌
酵母抽提物
硫酸铵
化学
食品科学
铵
色谱法
生物化学
细菌
生物
渗透调节剂
有机化学
氨基酸
遗传学
脯氨酸
作者
Wei‐Chuan Chen,Ching-Cha Hsu,John Chi‐Wei Lan,Yu-Kaung Chang,Lifen Wang,Yuhong Wei
标识
DOI:10.1016/j.jbiosc.2017.12.011
摘要
This study attempted to utilize Halomonas salina BCRC17875 to produce ectoine by optimizing the agitation speed and medium composition. In addition, the chemical structure of ectoine produced by H. salina BCRC17875 was determined. The results indicate that ectoine production reached 3.65 g/L at 38 h of cultivation when the agitation rate and NaCl concentration were fixed at 200 rpm and 2.0 M, respectively. It reached 9.20 g/L at 44 h of cultivation when the major medium components were yeast extract (56 g/L), glutamate (74.40 g/L), and ammonium sulfate (14 g/L). After the nitrogen concentration had been evaluated, evaluation of the nitrogen concentration revealed that the ectoine production reached 11.80 g/L at 44 h of cultivation when 56 g/L of yeast extract and 28 g/L of ammonium sulfate were used. Ectoine production reached 13.96 g/L at 44 h of cultivation when the carbon/nitrogen ratio was fixed at 3/1 using 84 g/L of yeast extract and 28 g/L of ammonium sulfate. Furthermore, the identification of ectoine were identified and characterized by fast atom bombardment mass spectrometry (FAB-MS) and 1H NMR. The results demonstrated a fermentation strategy was successful in increasing ectoine production, and that the fermentation medium of ectoine had commercialization potential.
科研通智能强力驱动
Strongly Powered by AbleSci AI