UMR 1287 Ecophysiologie et Génomique, Université de Bordeaux, INRA, Institut des Sciences de la Vigne et du Vin, 210 Chemin de Leysotte, 33882, Villenave d'Ornon, France.
Plant Mol Biol. 2010 Jan;72(1-2):215-34. doi: 10.1007/s11103-009-9563-1. Epub 2009 Nov 10.
Previous work has shown that transgenic tobacco plants constitutively over-expressing the Vitis vinifera L. transcription factor VvWRKY2 exhibit reduced susceptibility to necrotrophic fungal pathogens, suggesting that this transcription factor plays a role in grapevine response to phytopathogens. The work presented here characterizes the modifications in cell wall structure observed in the stems and petioles of these transgenic plants. Histochemical stainings of stem and petiole cross-sections using phloroglucinol or Maüle reagents revealed a delay in xylem formation, particularly in the petioles, and differences in lignin composition. Evaluation of lignin quantity and quality showed a decrease in the syringyl/guaiacyl ratio in both stem and petioles. Expression analysis using RT-PCR and potato microarrays showed that tobacco plants over-expressing VvWRKY2 exhibited altered expression of genes involved in lignin biosynthesis pathway and cell wall formation. The ability of VvWRKY2 to activate the promoter of the VvC4H gene, which is involved in the lignin biosynthetic pathway, was confirmed by transient transcriptional activation assays in tobacco protoplasts. Moreover, in situ hybridization revealed that VvWRKY2 is specifically expressed in cells undergoing lignification in young grapevine stems. Together, these results confirm that VvWRKY2 plays a role in regulating lignification in grapevine, possibly in response to biotic or abiotic stresses.
先前的工作表明,组成型过表达葡萄转录因子 VvWRKY2 的转基因烟草植株对坏死型真菌病原体的敏感性降低,这表明该转录因子在葡萄对植物病原体的反应中发挥作用。本文对这些转基因植物茎和叶柄中观察到的细胞壁结构修饰进行了描述。使用间苯三酚或 Maüle 试剂对茎和叶柄横切组织进行组织化学染色,发现木质部形成延迟,尤其是在叶柄中,并且木质素组成存在差异。木质素数量和质量的评估表明,在茎和叶柄中,愈创木基/松柏基比率均降低。使用 RT-PCR 和马铃薯微阵列进行的表达分析表明,过表达 VvWRKY2 的烟草植株表现出参与木质素生物合成途径和细胞壁形成的基因表达发生改变。通过在烟草原生质体中的瞬时转录激活测定证实了 VvWRKY2 激活参与木质素生物合成途径的 VvC4H 基因启动子的能力。此外,原位杂交显示 VvWRKY2 特异性表达在年轻葡萄茎中木质化的细胞中。总之,这些结果证实 VvWRKY2 在调节葡萄木质素形成中起作用,可能是对生物或非生物胁迫的反应。