Institut des Sciences de la Vie, Université Catholique de Louvain, Croix du Sud 4-15, 1348 Louvain la Neuve, Belgium.
Plant J. 2012 Dec;72(5):745-57. doi: 10.1111/j.1365-313X.2012.05108.x. Epub 2012 Oct 15.
Pleiotropic drug resistance (PDR) transporters are a group of membrane proteins belonging to the ABCG sub-family of ATP binding cassette (ABC) transporters. There is clear evidence for the involvement of plant ABC transporters in resistance to fungal and bacterial pathogens, but not in the biotic stress response to insect or herbivore attack. Here, we describe a PDR transporter, ABCG5/PDR5, from Nicotiana tabacum. GFP fusion and subcellular fractionation studies revealed that ABCG5/PDR5 is localized to the plasma membrane. Staining of transgenic plants expressing the GUS reporter gene under the control of the ABCG5/PDR5 transcription promoter and immunoblotting of wild-type plants showed that, under standard growth conditions, ABCG5/PDR5 is highly expressed in roots, stems and flowers, but is only expressed at marginal levels in leaves. Interestingly, ABCG5/PDR5 expression is induced in leaves by methyl jasmonate, wounding, pathogen infiltration, or herbivory by Manduca sexta. To address the physiological role of ABCG5/PDR5, N. tabacum plants silenced for the expression of ABCG5/PDR5 were obtained. No phenotypic modification was observed under standard conditions. However, a small increase in susceptibility to the fungus Fusarium oxysporum was observed. A stronger effect was observed in relation to herbivory: silenced plants allowed better growth and faster development of M. sexta larvae than wild-type plants, indicating an involvement of this PDR transporter in resistance to M. sexta herbivory.
多药耐药性 (PDR) 转运蛋白是一组膜蛋白,属于 ABCG 亚家族的 ATP 结合盒 (ABC) 转运蛋白。有明确的证据表明植物 ABC 转运蛋白参与了对真菌和细菌病原体的抗性,但不参与对昆虫或草食动物攻击的生物胁迫反应。在这里,我们描述了来自烟草的 PDR 转运蛋白 ABCG5/PDR5。GFP 融合和亚细胞分级研究表明,ABCG5/PDR5 定位于质膜。在 ABCG5/PDR5 转录启动子控制下表达 GUS 报告基因的转基因植物的染色和野生型植物的免疫印迹表明,在标准生长条件下,ABCG5/PDR5 在根、茎和花中高度表达,但在叶中仅表达在边缘水平。有趣的是,ABCG5/PDR5 的表达在叶片中被茉莉酸甲酯、创伤、病原体渗透或 Manduca sexta 取食诱导。为了解 ABCG5/PDR5 的生理作用,获得了沉默 ABCG5/PDR5 表达的烟草植物。在标准条件下没有观察到表型修饰。然而,观察到对真菌尖孢镰刀菌的敏感性略有增加。在与草食性有关的方面观察到更强的影响:沉默的植物比野生型植物允许更好的生长和更快的 M. sexta 幼虫发育,表明这种 PDR 转运蛋白参与了对 M. sexta 草食性的抗性。