Segond Diego, Dellagi Alia, Lanquar Viviane, Rigault Martine, Patrit Oriane, Thomine Sébastien, Expert Dominique
Laboratoire des Interactions Plantes Pathogènes UMR 217 INRA/AgroParisTech/UPMC, 16 Rue Claude Bernard, 75231 Paris cedex 05, France.
Plant J. 2009 Apr;58(2):195-207. doi: 10.1111/j.1365-313X.2008.03775.x. Epub 2008 Dec 11.
AtNRAMP3 and AtNRAMP4 are two Arabidopsis metal transporters sharing about 50% sequence identity with mouse NRAMP1. The NRAMP1/Slc11A1 metal ion transporter plays a crucial role in the innate immunity of animal macrophages targeted by intracellular bacterial pathogens. AtNRAMP3 and AtNRAMP4 localize to the vacuolar membrane. We found that AtNRAMP3 is upregulated in leaves challenged with the bacterial pathogens Pseudomonas syringae and Erwinia chrysanthemi, whereas AtNRAMP4 expression is not modified. Using single and double nramp3 and nramp4 mutants, as well as lines ectopically expressing either of these genes, we show that AtNRAMP3 and, to a lesser extent, AtNRAMP4 are involved in Arabidopsis thaliana resistance against the bacterial pathogen E. chrysanthemi. The susceptibility of the double nramp3 nramp4 mutant is associated with the reduced accumulation of reactive oxygen species and ferritin (AtFER1), an iron storage protein known to participate in A. thaliana defense. Interestingly, roots from infected plants accumulated transcripts of AtNRAMP3 as well as the iron-deficiency markers IRT1 and FRO2. This finding suggests the existence of a shoot-to-root signal reminiscent of an iron-deficiency signal activated by pathogen infection. Our data indicate that the functions of NRAMP proteins in innate immunity have been conserved between animals and plants.
AtNRAMP3和AtNRAMP4是两种拟南芥金属转运蛋白,与小鼠NRAMP1的序列同一性约为50%。NRAMP1/Slc11A1金属离子转运蛋白在细胞内细菌病原体靶向的动物巨噬细胞的先天免疫中起关键作用。AtNRAMP3和AtNRAMP4定位于液泡膜。我们发现,在用丁香假单胞菌和菊欧文氏菌这两种细菌病原体攻击的叶片中,AtNRAMP3的表达上调,而AtNRAMP4的表达没有变化。利用nramp3和nramp4单突变体和双突变体,以及异位表达这两个基因之一的株系,我们表明AtNRAMP3以及在较小程度上AtNRAMP4参与了拟南芥对细菌病原体菊欧文氏菌的抗性。nramp3 nramp4双突变体的易感性与活性氧和铁蛋白(AtFER1)积累减少有关,铁蛋白是一种已知参与拟南芥防御的铁储存蛋白。有趣的是,受感染植物的根积累了AtNRAMP3的转录本以及缺铁标记物IRT1和FRO2。这一发现表明存在一种从地上部到根部的信号,类似于病原体感染激活的缺铁信号。我们的数据表明,NRAMP蛋白在先天免疫中的功能在动物和植物之间是保守的。