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Genetic engineering of the branched‐chain fatty acid biosynthesis pathway to enhance surfactin production from Bacillus subtilis

莎梵婷 生物合成 代谢工程 生物化学 枯草芽孢杆菌 脂肪酸 化学 脂肽 生物 细菌 遗传学
作者
Y. P. Jing,Hao‐Xun Wei,Fangfang Liu,Yi‐Fan Liu,Lei Zhou,Jin‐Feng Liu,Shi‐Zhong Yang,Huizhan Zhang,Bo‐Zhong Mu
出处
期刊:Biotechnology and Applied Biochemistry [Wiley]
卷期号:70 (1): 238-248 被引量:23
标识
DOI:10.1002/bab.2346
摘要

Surfactin, which is composed of a β-hydroxy fatty acid chain and a peptide ring, has drawn considerable attention due to its potential applications in the biomedicine, bioremediation, and petroleum industries. However, the low yield of surfactin from wild strains still restricts its industrial applications. In this study, eight genes relevant to the fatty acid biosynthesis pathway were targeted to enhance surfactin production, and high surfactin-yielding strains with potential industrial applications were obtained. When ldeHA and acc were co-overexpressed, the surfactin yield of recombinant strains TDS8 and TPS8 increased to 1.55- and 1.19-fold of their parental strains, respectively, again proving that the conversion of acetyl-coenzyme A (CoA) to malonyl-CoA is the rate-limiting step in fatty acid biosynthesis. Furthermore, changes in surfactin isoforms of recombinant strain TPS8 suggest that the fatty acid precursor synthesis pathway can be modified to improve the proportion of different isoforms. In addition, the deletion of lpdV, which is responsible for the conversion of α-ketoacyl-CoA precursors, resulted in a sharp decrease in surfactin production, further demonstrating the importance of branched-chain fatty acid biosynthesis in surfactin production. This work will facilitate the design and construction of more efficiently engineered strains for surfactin production and further extend industrial applications.
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