Article ID Journal Published Year Pages File Type
3016 Biochemical Engineering Journal 2014 8 Pages PDF
Abstract

•Effectively enhancing oxygen transfer was studied in welan gum biosynthesis.•n-Hexadecane significantly improved welan gum yield of 33.9 ± 0.56 g/L.•Related genes expression levels were responded to high DO by oxygen vectors.•This work would be useful to industrial welan gum biosynthesis.

Oxygen transfer (kLa) is one of the most essential factors affecting microbial cell growth and metabolite formation. In this study, low-cost methods capable of effectively enhancing oxygen transfer were investigated by adding oxygen vectors into the fermentation broth. Upon addition of n-dodecane and n-hexadecane, the kLa of the fermentation medium reached remarkably higher values than that of the control. In response to the enhanced oxygen transfer, welan gum concentration and yield reached maxima of 33.9 ± 0.56 g/L and 0.761 ± 0.010 g/g, respectively. The DCW reached a maximum of 7.82 ± 0.18 g/L with n-dodecane addition. Welan gum productivity and yield were significantly affected by kLa under n-hexadecane addition because of the promotion of the highest transcriptional levels of genes in the metabolic flux for welan gum biosynthesis. In addition, transcription levels of TCA and electron transfer chain (ETC) genes exhibited maximum up-regulation under n-dodecane, which resulted in enhanced cell growth. These results suggest a mechanism for enhanced kLa using oxygen vectors to improve welan gum biosynthesis through regulation of transcriptional levels of ETC, TCA, and metabolic pathways for welan gum biosynthesis genes during fermentation.

Related Topics
Physical Sciences and Engineering Chemical Engineering Bioengineering
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