首页> 外文期刊>Journal of bacteriology >A biovar-specific signal of Rhizobium leguminosarum bv. viciae induces increased nodulation gene-inducing activity in root exudate of Vicia sativa subsp. nigra.
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A biovar-specific signal of Rhizobium leguminosarum bv. viciae induces increased nodulation gene-inducing activity in root exudate of Vicia sativa subsp. nigra.

机译:豆根瘤菌bv的特定于生物变种的信号。蚕豆诱导豌豆根亚种根分泌物中结瘤基因诱导活性的增加。老黑

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Flavonoids in root exudate of leguminous plants activate the transcription of Rhizobium genes involved in the formation of root nodules (nod genes). We report that inoculation with the homologous symbiont R. leguminosarum bv. viciae results in an increased nod gene-inducing activity (Ini) in root exudate of V. sativa subsp. nigra, whereas inoculation with heterologous Rhizobium strains results in exudates with nod gene-inducing activity comparable to that of uninfected plants. Ini can be demonstrated by using either of the isogenic indicator strains containing an inducible nod promoter fused to the Escherichia coli lacZ reporter gene and the regulatory nodD gene of R. leguminosarum bv. viciae, R. leguminosarum bv. trifolii, or R. meliloti. The presence of genes nodDABCEL of R. leguminosarum bv. viciae appeared to be essential for induction of Ini. Mutation of the genes nodI and nodJ causes a delay of Ini, whereas gene nodF appears to be required for both the timely appearance and the maximum level of Ini activity. The nodE gene is responsible for the biovar specificity of induction of Ini by Rhizobium spp. Ini is caused by a soluble heat-stable factor of rhizobial origin. This Rhizobium-produced Ini factor has an apparent molecular weight between 1,000 and 10,000 and does not originate from flavonoid precursors.
机译:豆科植物根系分泌物中的类黄酮激活根瘤形成过程中根瘤菌基因的转录(根瘤基因)。我们报告说,用同源共生菌豆科菌bv接种。蚕豆在豌豆亚种根分泌物中增加了nod基因诱导活性(Ini)。黑色,而接种异源根瘤菌菌株导致渗出液具有与未感染植物相当的nod基因诱导活性。 Ini可以通过使用包含与大肠杆菌lacZ报告基因和豆科植物念珠菌bv的调节性nodD基因融合的诱导型nod启动子的等基因指示剂菌株来证明。豆科豌豆属蚕豆trifolii,或R. meliloti。豆科植物豆球菌nodDABCEL基因的存在。蚕豆似乎是诱导Ini必不可少的。基因nodI和nodJ的突变会导致Ini的延迟,而基因nodF似乎对于及时出现和最大Ini活性水平都是必需的。 nodE基因负责根瘤菌诱导Ini的生物多样性特异性。 Ini是由根瘤菌来源的可溶性热稳定因子引起的。这种根瘤菌产生的Ini因子的表观分子量介于1,000和10,000之间,并非源自类黄酮前体。

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