首页> 美国卫生研究院文献>Journal of Bacteriology >Molecular characterization and regulation of the rhizosphere-expressed genes rhiABCR that can influence nodulation by Rhizobium leguminosarum biovar viciae.
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Molecular characterization and regulation of the rhizosphere-expressed genes rhiABCR that can influence nodulation by Rhizobium leguminosarum biovar viciae.

机译:根际表达基因rhABCR的分子表征和调控可影响豆科根瘤菌生物变色蚕豆的结瘤。

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摘要

A group of four rhi (rhizosphere-expressed) genes from the symbiotic plasmid of Rhizobium leguminosarum biovar viciae has been characterized. Although mutation of the rhi genes does not normally affect nodulation, in the absence of the closely linked nodulation genes nodFEL, mutations in the rhi genes can influence the nodulation of the vetch Vicia hirsuta. The DNA sequence of the rhi gene region reveals four large open reading frames, three of them constituting an operon (rhiABC) transcribed convergently toward the fourth gene, rhiR. rhiABC are under the positive control of RhiR, the expression of which is repressed by flavonoids that normally induce nod gene expression. This repression, which requires the nodD gene product (the transcriptional activator of nod gene expression), may be due to a cis effect caused by a high level of NodD-dependent expression from the adjacent nodO promoter, which is transcribed divergently from rhiR. RhiR shows significant similarities to a subfamily of transcriptional regulators that includes the LuxR and UvrC-28K proteins. RhiA shows limited homology to a short domain of the lactose permease, LacY, close to a region thought to be involved in substrate binding. No strong homologies were found for the other rhi gene products. It appears that RhiA and RhiB are cytoplasmic, whereas RhiC is a periplasmic protein, since it has a typical N-terminal transit sequence and a rhiC-phoA protein fusion expresses alkaline phosphatase activity. The biochemical role of the rhi genes has not been established, but it appears that they may play a role in the plant-microbe interaction, possibly by allowing the bacteria to metabolize a plant-made metabolite.
机译:已经鉴定了来自豆科根瘤菌(Rhizobium leguminosarum)biovar viciae的共生质粒的四个四个rhi(根际表达)基因。尽管rhi基因的突变通常不会影响结瘤,但在缺乏紧密联系的结瘤基因nodFEL的情况下,rhi基因的突变会影响紫etch野豌豆的结瘤。 rhi基因区域的DNA序列显示了四个大的开放阅读框,其中三个构成了一个操纵子(rhiABC),该操纵子会向第四基因rhiR聚合转录。 rhiABC在RhiR的阳性控制下,其表达被通常诱导nod基因表达的类黄酮抑制。这种抑制作用需要nodD基因产物(nod基因表达的转录激活因子),可能是由于相邻nodO启动子的高水平NodD依赖性表达(从rhiR转录而来的)引起的顺式作用。 RhiR与包括LuxR和UvrC-28K蛋白的转录调节子亚家族显示出显着相似性。 RhiA与乳糖通透酶LacY的短结构域显示出有限的同源性,靠近被认为与底物结合有关的区域。没有发现其他rhi基因产物具有很强的同源性。 RhiA和RhiB似乎是细胞质的,而RhiC是周质蛋白,因为它具有典型的N末端转运序列,并且rhiC-phoA蛋白融合物表达碱性磷酸酶活性。 rhi基因的生化作用尚未确定,但似乎它们可能在细菌与植物的相互作用中起作用,可能是通过让细菌代谢植物产生的代谢产物来实现的。

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