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首页> 外文期刊>The Journal of General and Applied Microbiology >THE EFFECT OF RHIZOBIUM LEGUMINOSARUM BV. TRIFOLII NODULATION GENES IN RHIZOBIUM FREDII USDA 193
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THE EFFECT OF RHIZOBIUM LEGUMINOSARUM BV. TRIFOLII NODULATION GENES IN RHIZOBIUM FREDII USDA 193

机译:根瘤菌根瘤菌BV的作用。 FREDII USDA 193中的三叶草根瘤基因

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摘要

Plasmid pRt032 which has a 14-kb HindIII fragment containing nodulation genes from Rhizobium leguminosarum bv. trifolii ANU843 was transferred into R. fredii USDA 193. A transconjugant CT24 was isolated whose host range was extended to white clover. However, nodulation on the original host soybean was strongly inhibited in CT24 as compared with that of wild-type R. fredii USDA 193. The inhibition of nodulation on soybean was investigated with R. fredii USDA 193 carrying a derivate of pRt032 (nod218) in which the lac operon and Tn5 (MudI1734) was inserted downstream of the nodA promoter. This strain, AF218, restored efficient nodulation on the soybean.The NodD-mediated induction of the R. leguminosarum bv. trifolii nodA-lacz fusion in R. fredii USDA 193 was also monitored during the growth cell cycle following exposure to 7, 4′-dihydroxyflavone (DHF), clover extracts, and soybean extracts for 3h. The nodA induction was observed in ratios of 11:7:3, respectively. However, nodA induction was inhibited using 7, 4′-dihydroxyisoflavone (daidzein), an inducer of R. fredii nod genes.The factor that induces the R. leguminosarum bv. trifolii nod gene expression in soybean extract is not the daidzein, but other unidentified plant factors. In strain CT24, heterologous common nod genes are expressed. These genes interfere with R. fredii nod gene products, causing poor nodulation on its original host soybean.
机译:质粒pRt032具有一个14kb的HindIII片段,该片段含有来自豆科根瘤菌bv的结节基因。将三叶草ANU843转移到美国联邦鼠李(R. fredii USDA 193)中。分离出了转导结合体CT24,其宿主范围扩展至白三叶草。但是,与野生型弗雷德氏菌USDA 193相比,在CT24中对原始寄主大豆的根瘤作用受到了强烈抑制。将lac操纵子和Tn5(MudI1734)插入到nodA启动子的下游。该菌株AF218在大豆上恢复了有效的结瘤。NodD介导的豆科植物念珠菌的诱导。在暴露于7、4'-二羟基黄酮(DHF),三叶草提取物和大豆提取物3小时后,还在生长细胞周期中监测了R. fredii USDA 193中的trifolii nodA-lacz融合体。分别以11:7:3的比例观察到nodA诱导。然而,使用7,4'-二羟基异黄酮(大豆黄酮)抑制弗雷德氏球菌nod基因,nodA的诱导被抑制。大豆提取物中的trifolii nod基因表达不是大豆苷元,而是其他未知的植物因子。在菌株CT24中,表达异源共有nod基因。这些基因干扰弗雷德氏球菌的基因产物,导致其原始寄主大豆的根瘤差。

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