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Mechanistic insight for improving butenyl-spinosyn production through combined ARTP/UV mutagenesis and ribosome engineering in Saccharopolyspora pogona.


ABSTRACT: Butenyl-spinosyn is a highly effective, wide-spectrum and environmentally-friendly biological insecticide produced by Saccharopolyspora pogona. However, its scale-up is impeded due to its lower titer in wild-type strains. In this work, ARTP/UV mutagenesis and ribosome engineering were employed to enhance the butenyl-spinosyn production, and a stable mutant Saccharopolyspora pogona aG6 with high butenyl-spinosyn yield was successfully obtained. For the first time, the fermentation results in the 5 L bioreactor demonstrated that the butenyl-spinosyn produced by mutant Saccharopolyspora pogona aG6 reached the maximum value of 130 mg/L, almost 4-fold increase over the wild-type strain WT. Furthermore, comparative genomic, transcriptome and target metabolomic analysis revealed that the accumulation of butenyl-spinosyn was promoted by alterations in ribosomal proteins, branched-chain amino acid degradation and oxidative phosphorylation. Conclusively, the proposed model of ribosome engineering combined with ARTP/UV showed the improved biosynthesis regulation of butenyl-spinosyn in S. pogona.

SUBMITTER: Zhao X 

PROVIDER: S-EPMC10825966 | biostudies-literature | 2023

REPOSITORIES: biostudies-literature

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Mechanistic insight for improving butenyl-spinosyn production through combined ARTP/UV mutagenesis and ribosome engineering in <i>Saccharopolyspora pogona</i>.

Zhao Xueli X   Hussain Muhammad Hammad MH   Mohsin Ali A   Liu Zebo Z   Xu Zhixian Z   Li Zhanxia Z   Guo Weiqun W   Guo Meijin M  

Frontiers in bioengineering and biotechnology 20240115


Butenyl-spinosyn is a highly effective, wide-spectrum and environmentally-friendly biological insecticide produced by <i>Saccharopolyspora pogona</i>. However, its scale-up is impeded due to its lower titer in wild-type strains. In this work, ARTP/UV mutagenesis and ribosome engineering were employed to enhance the butenyl-spinosyn production, and a stable mutant <i>Saccharopolyspora pogona</i> aG6 with high butenyl-spinosyn yield was successfully obtained. For the first time, the fermentation r  ...[more]

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