2019
DOI: 10.7717/peerj.6822
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Transcriptional analysis reveals the metabolic state ofBurkholderia zhejiangensisCEIB S4-3 during methyl parathion degradation

Abstract: Burkholderia zhejiangensis CEIB S4-3 has the ability to degrade methyl parathion (MP) and its main hydrolysis byproduct p-nitrophenol (PNP). According to genomic data, several genes related with metabolism of MP and PNP were identified in this strain. However, the metabolic state of the strain during the MP degradation has not been evaluated. In the present study, we analyzed gene expression changes during MP hydrolysis and PNP degradation through a transcriptomic approach. The transcriptional analysis reveale… Show more

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Cited by 19 publications
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“…6A). Like the methyl parathion degradation reported previously [59], the pesticide degradation is a complex process, which requires not only the involvement of the genes in the degradation process but also the regulation of other metabolic processes. The KEGG pathway analysis of the downregulated DEGs showed that the differentially expressed genes were mainly clustered in the ribosome system categories (Fig.…”
Section: Transcriptomic Analysis Of L Bulgaricus Cultured In Chlorpyr...mentioning
confidence: 93%
“…6A). Like the methyl parathion degradation reported previously [59], the pesticide degradation is a complex process, which requires not only the involvement of the genes in the degradation process but also the regulation of other metabolic processes. The KEGG pathway analysis of the downregulated DEGs showed that the differentially expressed genes were mainly clustered in the ribosome system categories (Fig.…”
Section: Transcriptomic Analysis Of L Bulgaricus Cultured In Chlorpyr...mentioning
confidence: 93%