Chong Julie, Piron Marie-Christine, Meyer Sophie, Merdinoglu Didier, Bertsch Christophe, Mestre Pere
Laboratoire Vigne, Biotechnologies et Environnement (LVBE, EA3991), Université de Haute Alsace, 33 rue de Herrlisheim, 68000 Colmar, France
INRA, UMR 1131 Santé de la Vigne et Qualité du Vin, F-68000 Colmar, France Université de Strasbourg, UMR 1131 Santé de la Vigne et Qualité du Vin, F-68000 Colmar, France.
J Exp Bot. 2014 Dec;65(22):6589-601. doi: 10.1093/jxb/eru375. Epub 2014 Sep 22.
During plant development, sugar export is determinant in multiple processes such as nectar production, pollen development and long-distance sucrose transport. The plant SWEET family of sugar transporters is a recently identified protein family of sugar uniporters. In rice, SWEET transporters are the target of extracellular bacteria, which have evolved sophisticated mechanisms to modify their expression and acquire sugars to sustain their growth. Here we report the characterization of the SWEET family of sugar transporters in Vitis vinifera. We identified 17 SWEET genes in the V. vinifera 40024 genome and show that they are differentially expressed in vegetative and reproductive organs. Inoculation with the biotrophic pathogens Erysiphe necator and Plasmopara viticola did not result in significant induction of VvSWEET gene expression. However, infection with the necrotroph Botrytis cinerea triggered a strong up-regulation of VvSWEET4 expression. Further characterization of VvSWEET4 revealed that it is a glucose transporter localized in the plasma membrane that is up-regulated by inducers of reactive oxygen species and virulence factors from necrotizing pathogens. Finally, Arabidopsis knockout mutants in the orthologous AtSWEET4 were found to be less susceptible to B. cinerea. We propose that stimulation of expression of a developmentally regulated glucose uniporter by reactive oxygen species production and extensive cell death after necrotrophic fungal infection could facilitate sugar acquisition from plant cells by the pathogen.
在植物发育过程中,糖分输出在花蜜产生、花粉发育和蔗糖长距离运输等多个过程中起决定性作用。植物糖转运蛋白SWEET家族是最近鉴定出的一类糖单向转运蛋白家族。在水稻中,SWEET转运蛋白是细胞外细菌的作用靶点,这些细菌进化出了复杂的机制来改变它们的表达并获取糖分以维持自身生长。在此,我们报道了葡萄中糖转运蛋白SWEET家族的特征。我们在葡萄40024基因组中鉴定出17个SWEET基因,并表明它们在营养器官和生殖器官中差异表达。用活体营养型病原菌白粉菌和葡萄霜霉病菌接种并未导致VvSWEET基因表达的显著诱导。然而,用坏死营养型病原菌灰葡萄孢菌感染则引发了VvSWEET4表达的强烈上调。对VvSWEET4的进一步表征表明,它是一种定位在质膜上的葡萄糖转运蛋白,可被活性氧诱导剂和坏死病原菌的毒力因子上调。最后,发现拟南芥直系同源基因AtSWEET4的敲除突变体对灰葡萄孢菌的敏感性较低。我们提出,坏死营养型真菌感染后,活性氧的产生和广泛的细胞死亡对发育调控的葡萄糖单向转运蛋白表达的刺激可能有助于病原菌从植物细胞中获取糖分。