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Characterization the role of GacA-dependent small RNAs and RsmA family proteins on 2,4-diacetylphloroglucinol production in Pseudomonas fluorescens 2P24

机译:表征GACA依赖性小RNA和RSMA家族蛋白在荧光2P24中对2,4-二乙酰乙酰氯喹啉醇产生的作用

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摘要

Pseudomonas fluorescens 2P24 is a plant-beneficial rhizobacteria that controls many root diseases caused by soilborne pathogens, and the production of the antibiotic compound 2,4-diacetylphloroglucinol (2,4-DAPG) is essential for its biocontrol ability. In the present study, we investigated the regulatory mechanism acting on the production of 2,4-DAPG by the GacA-dependent small non-coding RNAs (sRNAs) and RsmA/E proteins in strain 2P24. Our results showed that the GacS-GacA system regulates the expression of the phlACBD locus, which is responsible for 2,4-DAPG production, by inducing the expression of rsmX, rsmX1, rsmY, and rsmZ. A novel GacA-regulated sRNA, RgsA, was found to negatively regulate 2,4-DAPG production. Activation of the phlACBD locus by the GacS-GacA system is mediated through RsmA and RsmE proteins (but not RsmI), which inhibit phlACBD translation by binding to the putative RsmA/E recognition element in the phlACBD leader. Taken together, our results suggested that in P. fluorescens 2P24, the GacS-GacA system controls the cellular 2,4-DAPG levels in the cell by fine-tuning the function of sRNAs in P. fluorescens.
机译:荧光荧光荧光笔2P24是一种植物有益的流离虫,控制由旱地病原体引起的许多根系疾病,抗生素化合物2,4-二乙酰乙酰氯葡糖醇(2,4-DAPG)的生产对于其生物控制能力至关重要。在本研究中,我们研究了通过在菌株2P24中的GACA依赖性的小非编码RNA(SRNA)和RSMA / E蛋白产生了对2,4-DAPG产生的调节机制。我们的研究结果表明,GACS-GACA系统通过诱导RSMX,RSMX1,RSMY和RSMZ的表达,调节负责2,4-DAPG生产的Phlacbd基因座的表达。发现一种新的GACA调节的SRNA,RGSA对抗2,4-DAPG生产。通过RSMA和RSME蛋白(但不是RSMI)介导的GACS-GACA系统激活pHlacBD轨迹,通过与PHLACBD领导者的推定RSMA / E识别元素结合,抑制placBD翻译。我们的结果表明,在P.荧光荧光型2P24中,通过微调P.荧光型中SRNA的功能来控制细胞中的细胞2,4-DAPG水平。

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