Swainsonine producing performance of Alternaria oxytropis was improved by heavy-ion mutagenesis technology

ABSTRACT Swainsonine, an indolizidine alkaloid, is a promising anti-tumorigenic compound. Biological production of swainsonine was prospective, but the low swainsonine yield of wild type Alternaria oxytropis limited its production on a large scale. In present work, a stable A. oxytropis mutant UO1 w...

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Veröffentlicht in:FEMS microbiology letters 2021-05, Vol.368 (8), p.1, Article 047
Hauptverfasser: liang, Yan, Li, Shangwei, Song, Xiangdong, Zhou, Deshun, Zhi, Dejuan, Hao, Baocheng, Liu, Yu, Liang, Jianping, Wang, Zhen
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Sprache:eng
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Zusammenfassung:ABSTRACT Swainsonine, an indolizidine alkaloid, is a promising anti-tumorigenic compound. Biological production of swainsonine was prospective, but the low swainsonine yield of wild type Alternaria oxytropis limited its production on a large scale. In present work, a stable A. oxytropis mutant UO1 with swanisonine yield of 14.84% higher than the wild-type strain was successfully obtained after heavy-ion irradiation. The A. oxytropis mutant UO1 and original wild-type strain were futher evaluated for SW concentrations under different factors. Results showed that the optimum culture temperature was 25°C. The optimum initial medium pH was 6.5 and the optimum inoculum size was 2 mL per 200 mL. Addition of the biosynthetic precursor L-pipecolic acids and L-lysine appropriately could increase the SW synthesis. These findings provided a theoretical basis and scientific data for the industrial production of swainsonine. A Undifilum oxytropis mutant with high swanisonine yield was obtained by heavy-ion irradiation.
ISSN:0378-1097
1574-6968
1574-6968
DOI:10.1093/femsle/fnab047