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RNA-Seq-Based Transcriptomic Analysis of Saccharopolyspora spinosaRevealed the Critical Function of PEP Phosphonomutase in the Replenishment Pathway

Authors :
Liu, Zhudong
Zhu, Zirong
Tang, Jianli
He, Haocheng
Wan, Qianqian
Luo, Yuewen
Huang, Weitao
Yu, Ziquan
Hu, Yibo
Ding, Xuezhi
Xia, Liqiu
Source :
Journal of Agricultural and Food Chemistry; December 2020, Vol. 68 Issue: 49 p14660-14669, 10p
Publication Year :
2020

Abstract

Spinosyns, the secondary metabolites produced by Saccharopolyspora spinosa, are the active ingredients in a family of novel biological insecticides. Although the complete genome sequence of S. spinosahas been published, the transcriptome of S. spinosaremains poorly characterized. In this study, high-throughput RNA sequencing (RNA-seq) technology was applied to dissect the transcriptome of S. spinosa. Through transcriptomic analysis of different periods of S. spinosagrowth, we found large numbers of differentially expressed genes and classified them according to their different functions. Based on the RNA-seq data, the CRISPR-Cas9 method was used to knock out the PEP phosphonomutase gene (orf 06952-4171). The yield of spinosyns A and D in S. spinosa-ΔPEP was 178.91 mg/L and 42.72 mg/L, which was 2.14-fold and 1.76-fold higher than that in the wild type (83.51 and 24.34 mg/L), respectively. The analysis of the mutant strains also verified the validity of the transcriptome data. The deletion of the PEP phosphonomutase gene leads to an increase in pyruvate content and affects the biosynthesis of spinosad. The replenishment of phosphoenol pyruvate in S. spinosaprovides the substrate for the production of spinosad. We envision that these transcriptomic analysis results will contribute to the further study of secondary metabolites in actinomycetes.

Details

Language :
English
ISSN :
00218561 and 15205118
Volume :
68
Issue :
49
Database :
Supplemental Index
Journal :
Journal of Agricultural and Food Chemistry
Publication Type :
Periodical
Accession number :
ejs54744440
Full Text :
https://doi.org/10.1021/acs.jafc.0c04443