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首页> 外文期刊>Applied and Environmental Microbiology >Lysobacter enzymogenes Uses Two Distinct Cell-Cell Signaling Systems for Differential Regulation of Secondary-Metabolite Biosynthesis and Colony Morphology
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Lysobacter enzymogenes Uses Two Distinct Cell-Cell Signaling Systems for Differential Regulation of Secondary-Metabolite Biosynthesis and Colony Morphology

机译:溶菌酶基因使用两个不同的细胞-细胞信号系统对次级代谢代谢物的生物合成和菌落形态进行差异调节

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Lysobacter enzymogenes is a ubiquitous environmental bacterium that is emerging as a potentially novel biological control agent and a new source of bioactive secondary metabolites, such as the heat-stable antifungal factor (HSAF) and photoprotective polyene pigments. Thus far, the regulatory mechanism(s) for biosynthesis of these bioactive secondary metabolites remains largely unknown in L. enzymogenes. In the present study, the diffusible signal factor (DSF) and diffusible factor (DF)-mediated cell-cell signaling systems were identified for the first time from L. enzymogenes. The results show that both Rpf/DSF and DF signaling systems played critical roles in modulating HSAF biosynthesis in L. enzymogenes. Rpf/DSF signaling and DF signaling played negative and positive effects in polyene pigment production, respectively, with DF playing a more important role in regulating this phenotype. Interestingly, only Rpf/DSF, but not the DF signaling system, regulated colony morphology of L. enzymgenes. Both Rpf/DSF and DF signaling systems were involved in the modulation of expression of genes with diverse functions in L. enzymogenes, and their own regulons exhibited only a few loci that were regulated by both systems. These findings unveil for the first time new roles of the Rpf/DSF and DF signaling systems in secondary metabolite biosynthesis of L. enzymogenes.
机译:溶菌酶基因是一种普遍存在的环境细菌,正在作为一种潜在的新型生物防治剂和一种新的生物活性次级代谢产物(如热稳定的抗真菌因子(HSAF)和光保护性多烯颜料)出现。到目前为止,这些生物活性次生代谢产物的生物合成调控机制在乳酸菌酶基因中仍然是未知的。在本研究中,首次从L.酶基因中鉴定出可扩散信号因子(DSF)和可扩散因子(DF)介导的细胞信号系统。结果表明,RPF / DSF和DF信号传导系统在调控L.酶基因中的HSAF生物合成中都起着关键作用。 Rpf / DSF信号传导和DF信号传导分别在多烯色素生产中产生了负面和正面影响,其中DF在调节这种表型中起着更重要的作用。有趣的是,只有Rpf / DSF而不是DF信号传导系统才能调节L.酶基因的菌落形态。 Rpf / DSF和DF信号转导系统均参与了L.酶基因中具有多种功能的基因表达的调节,它们自己的调节子仅显示了由两个系统调节的少数基因座。这些发现首次揭示了Rpf / DSF和DF信号系统在L.酶基因的次级代谢产物生物合成中的新作用。

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