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Genetic organization and transcriptional analysis of a major gene cluster involved in siderophore biosynthesis in Pseudomonas putida WCS358.

机译:恶臭假单胞菌WCS358中铁载体生物合成中涉及的主要基因簇的遗传组织和转录分析。

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摘要

In iron-limited environments, the plant-growth-stimulating Pseudomonas putida WCS358 produces a yellow-green fluorescent siderophore called pseudobactin 358. The transcriptional organization and the iron-regulated expression of a major gene cluster involved in the biosynthesis and transport of pseudobactin 358 were analyzed in detail. The cluster comprises a region with a minimum length of 33.5 kilobases and contains at least five transcriptional units, of which some are relatively large. The directions of transcription of four transcriptional units were determined by RNA-RNA hybridization and by analysis in Escherichia coli minicells. The latter also demonstrated that large polypeptides were encoded by these transcriptional units. The results allowed us to localize several promoter regions on the DNA. The iron-dependent expression of at least two genes within this cluster appears to be regulated at the transcriptional level.
机译:在铁受限的环境中,刺激植物生长的恶臭假单胞菌WCS358产生黄绿色荧光铁载体,称为拟杆菌素358。参与拟杆菌素358的生物合成和运输的主要基因簇的转录组织和铁调控表达为:详细分析。该簇包括一个最小长度为33.5千碱基的区域,并包含至少五个转录单位,其中一些转录单位相对较大。通过RNA-RNA杂交和在大肠杆菌小细胞中的分析来确定四个转录单位的转录方向。后者还证明了大的多肽由这些转录单位编码。结果使我们能够定位DNA上的几个启动子区域。该簇中至少两个基因的铁依赖性表达似乎在转录水平受到调节。

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