豆科根瘤菌结构nif基因的定点转座子诱变克隆及在大肠杆菌微细胞中的表达

T M Schetgens, G Bakkeren, C van Dun, J G Hontelez, R C van den Bos, A van Kammen
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摘要

为了研究豆科根瘤菌(Rhizobium leguminosarum PRE)中氮酶基因簇的结构组织和表达调控,我们从克隆库中选取了该同源质粒的相关亚片段,并对其进行了同源性分析。对一个nif dh特异性克隆进行定点Tn5诱变,随后将转座子插入通过同源重组转移回野生型根瘤菌基因组。通过测量结瘤植物的乙炔还原量和类菌体特异性蛋白的免疫学分析,确定了Tn5结构nif基因区域突变的表型效应。Tn5插入位点的定位与观察到的结果一致:nif D内两个基因典型不同的Tn5诱导突变导致CI α和β合成受到抑制,CII产生强烈减少,从而导致Fix-表型。不同的克隆根瘤菌DNA插入片段(含nif K、nif D、nif H或nif DH)在大肠杆菌微型细胞中表达,依赖于强上游载体启动子序列的存在。基因产物经特异性抗血清免疫沉淀鉴定。在一种情况下(nif H),内源性根瘤菌转录启动信号似乎被大肠杆菌系统识别的率很低;相比之下,根瘤菌核糖体结合位点的所有三个结构nif基因在微型细胞中正常运作。确定了nif KDH基因编码区的大致位置,发现它们是连续的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular cloning and functional characterization of Rhizobium leguminosarum structural nif-genes by site-directed transposon mutagenesis and expression in Escherichia coli minicells.

In order to study the structural organization and regulation of the expression of the nitrogenase gene cluster in Rhizobium leguminosarum PRE we selected relevant subfragments of the sym-plasmid from clone banks by homology with R. meliloti nif-genes. Site-directed Tn5 mutagenesis was applied to a nif DH-specific clone and subsequently the transposon insertions were transferred back into the wild-type rhizobial genome by homologous recombination. Phenotypic effects of Tn5 mutations in the region of the structural nif-genes were determined by measuring acetylene reduction in nodulated plants and by immunological analysis of bacteroid-specific proteins. The localization of Tn5 insertion sites was in accordance with observed consequences: two genotypically different Tn5-induced mutations within nif D caused repression of CI alpha and beta synthesis and a strong reduction of CII production, thus resulting in a Fix- phenotype. Expression of different cloned Rhizobium DNA inserts, bearing nif K, nif D, nif H, or nif DH, was achieved in Escherichia coli minicells dependent upon the presence of a strong upstream vector promoter sequence. Gene products were identified by immunoprecipitation with specific antisera. Endogenous rhizobial transcriptional start signals in one case (nif H) seemed to be recognized at a low rate by the E. coli system; in contrast, Rhizobium ribosome binding sites for all three structural nif-genes functioned normally in minicells. The approximate location of the coding regions for nif KDH genes was determined and found to be contiguous.

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