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首页> 外文期刊>The Plant Cell >A Small GTPase of the Rab Family Is Required for Root Hair Formation and Preinfection Stages of the Common Bean-Rhizobium Symbiotic Association.
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A Small GTPase of the Rab Family Is Required for Root Hair Formation and Preinfection Stages of the Common Bean-Rhizobium Symbiotic Association.

机译:普通豆-根瘤菌共生协会的根毛形成和预感染阶段需要Rab家族的小GTP酶。

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Legume plants are able to establish a symbiotic relationship with soil bacteria from the genus Rhizobium, leading to the formation of nitrogen-fixing root nodules. Successful nodulation requires both the formation of infection threads (ITs) in the root epidermis and the activation of cell division in the cortex to form the nodule primordium. This study describes the characterization of RabA2, a common bean (Phaseolus vulgaris) cDNA previously isolated as differentially expressed in root hairs infected with Rhizobium etli, which encodes a protein highly similar to small GTPases of the RabA2 subfamily. This gene is expressed in roots, particularly in root hairs, where the protein was found to be associated with vesicles that move along the cell. The role of this gene during nodulation has been studied in common bean transgenic roots using a reverse genetic approach. Examination of root morphology in RabA2 RNA interference (RNAi) plants revealed that the number and length of the root hairs were severely reduced in these plants. Upon inoculation with R. etli, nodulation was completely impaired and no induction of early nodulation genes (ENODs), such as ERN1, ENOD40, and Hap5, was detected in silenced hairy roots. Moreover, RabA2 RNAi plants failed to induce root hair deformation and to initiate ITs, indicating that morphological changes that precede bacterial infection are compromised in these plants. We propose that RabA2 acts in polar growth of root hairs and is required for reorientation of the root hair growth axis during bacterial infection.
机译:豆科植物能够与根瘤菌属的土壤细菌建立共生关系,从而导致固氮根瘤的形成。成功的结瘤既需要在根表皮中形成感染线(IT),也需要激活皮质中的细胞分裂以形成结节原基。这项研究描述了RabA2的特征,RabA2是一种普通豆(Phaseolus vulgaris)cDNA,先前被分离为在受根瘤菌感染的根毛中差异表达,其编码的蛋白与RabA2亚家族的小GTPases非常相似。该基因在根中表达,尤其是在根毛中,在那里发现该蛋白与沿着细胞移动的囊泡有关。已经使用反向遗传方法研究了该基因在结瘤过程中在普通豆转基因根中的作用。 RabA2 RNA干扰(RNAi)植物的根系形态检查表明,这些植物中根毛的数量和长度都大大减少了。接种R. etli后,结瘤完全受损,并且在沉默的毛状根中未检测到早期结瘤基因(ENOD)的诱导,如ERN1,ENOD40和Hap5。此外,RabA2 RNAi植物未能诱导根毛变形并引发ITs,这表明在这些植物中细菌感染之前的形态变化受到损害。我们建议RabA2在根毛的极地生长中起作用,并且在细菌感染过程中需要用于根毛生长轴的重新定向。

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