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首页> 外文期刊>Journal of bacteriology >Role of plant root exudate and Sym plasmid-localized nodulation genes in the synthesis by Rhizobium leguminosarum of Tsr factor, which causes thick and short roots on common vetch.
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Role of plant root exudate and Sym plasmid-localized nodulation genes in the synthesis by Rhizobium leguminosarum of Tsr factor, which causes thick and short roots on common vetch.

机译:植物根系分泌物和Sym质粒定位的结瘤基因在豆根瘤菌合成Tsr因子中的作用,导致普通which子根粗短。

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摘要

In a previous paper it was shown that cocultivation of Rhizobium leguminosarum with the plant Vicia sativa subsp. nigra on solid medium causes a changed mode of growth of the plant roots, resulting in thick and short roots (Tsr). The Sym plasmid present in the bacterium appeared to be essential for causing Tsr (A. A. N. van Brussel, T. Tak, A. Wetselaar, E. Pees, and C. A. Wijffelman, Plant Sci. Lett. 27:317-325, 1982). In the present paper, we show that a role in causing Tsr is general for Sym plasmids of R. leguminosarum and Rhizobium trifolii. Moreover, mutants with transposon insertions in the Sym plasmid-localized nodulation genes nodA, B, C, and D are unable to cause Tsr, in contrast to nodulation mutants localized in other parts of the Sym plasmid. The observation that Tsr could also be brought about in liquid medium enabled us to show that Tsr is caused by a soluble factor. Experiments in which plants and bacteria were grown separately in the sterile supernatant fluids of each other resulted in establishing the following sequence of events. (i) The plant produces a factor, designated as factor A. (ii) Factor A causes the Sym plasmid-harboring bacteria to produce Tsr factor. (iii) Growth of young plants in the presence of Tsr factor results in the Tsr phenotype. Models explaining this example of molecular signalling between bacteria and plants are discussed.
机译:在以前的论文中,表明豆科根瘤菌与植物蚕豆亚种的共培养。在固体培养基上的黑质会导致植物根系的生长模式发生变化,从而导致粗根和短根(Tsr)。细菌中存在的Sym质粒似乎是引起Tsr所必需的(A. A. N. van Brussel,T. Tak,A. Wetselaar,E. Pees,and C. A. Wijffelman,Plant Sci。Lett。27:317-325,1982)。在本文中,我们显示了导致Tsr的作用是豆类根瘤菌和三叶根瘤菌Sym质粒的一般作用。而且,与位于Sym质粒其他部分的结瘤突变体相反,在Sym质粒定位的结瘤基因nodA,B,C和D中具有转座子插入的突变体不能引起Tsr。 Tsr也可能在液体介质中产生的观察使我们能够证明Tsr是由可溶性因子引起的。在彼此的无菌上清液中植物和细菌分别生长的实验导致建立以下事件序列。 (i)植物产生一个因子,称为因子A。(ii)因子A导致携带Sym质粒的细菌产生Tsr因子。 (iii)在存在Tsr因子的情况下,年轻植物的生长导致Tsr表型。讨论了解释细菌和植物之间分子信号传导这一例子的模型。

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