Exploring the additive bio-agent impacts upon ectoine production by Halomonas salina DSM5928T using corn steep liquor and soybean hydrolysate as nutrient supplement

四氢嘧啶 发酵 玉米浆 水解物 食品科学 盐单胞菌属 酵母抽提物 化学 工业发酵 生物化学 渗透调节剂 水解 氨基酸 16S核糖体RNA 基因 脯氨酸
作者
Po‐Wei Chen,Ziyu Cui,Hui Suan Ng,John Chi‐Wei Lan
出处
期刊:Journal of Bioscience and Bioengineering [Elsevier]
卷期号:130 (2): 195-199 被引量:9
标识
DOI:10.1016/j.jbiosc.2020.03.011
摘要

Ectoine production using inexpensive and renewable biomass resources has attracted great interest among the researchers due to the low yields of ectoine in current fermentation approaches that complicate the large-scale production of ectoine. In this study, ectoine was produced from corn steep liquor (CSL) and soybean hydrolysate (SH) in replacement to yeast extract as the nitrogen sources for the fermentation process. To enhance the bacterial growth and ectoine production, biotin was added to the Halomonas salina fermentation media. In addition, the effects addition of surfactants such as Tween 80 and saponin on the ectoine production were also investigated. Results showed that both the CSL and SH can be used as the nitrogen source substitutes in the fermentation media. Higher amount of ectoine (1781.9 mg L-1) was produced in shake flask culture with SH-containing media as compared to CSL-containing media. A total of 2537.0 mg L-1 of ectoine was produced at pH 7 when SH-containing media was applied in the 2 L batch fermentation. Moreover, highest amount of ectoine (1802.0 mg L-1) was recorded in the SH-containing shake flask culture with addition of 0.2 μm mL-1 biotin. This study demonstrated the efficacy of industrial waste as the nutrient supplement for the fermentation of ectoine production.

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