首页> 外文期刊>Frontiers in Plant Science >RUN1 and REN1 Pyramiding in Grapevine ( Vitis vinifera cv. Crimson Seedless) Displays an Improved Defense Response Leading to Enhanced Resistance to Powdery Mildew ( Erysiphe necator)
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RUN1 and REN1 Pyramiding in Grapevine ( Vitis vinifera cv. Crimson Seedless) Displays an Improved Defense Response Leading to Enhanced Resistance to Powdery Mildew ( Erysiphe necator)

机译:葡萄中的 RUN1 REN1 金字塔( Vitis vinifera cv.Crimsonlessless)显示出更好的防御反应,从而增强了对白粉病的抵抗力( Erysiphe necator

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Fungal pathogens are the cause of the most common diseases in grapevine and among them powdery mildew represents a major focus for disease management. Different strategies for introgression of resistance in grapevine are currently undertaken in breeding programs. For example, introgression of several resistance genes (R) from different sources for making it more durable and also strengthening the plant defense response. Taking this into account, we cross-pollinated P09-105/34, a grapevine plant carrying both RUN1 and REN1 pyramided loci of resistance to Erysiphe necator inherited from a pseudo-backcrossing scheme with Muscadinia rotundifolia and Vitis vinifera ‘Dzhandzhal Kara,’ respectively, with the susceptible commercial table grape cv. ‘Crimson Seedless.’ We developed RUN1REN1 resistant genotypes through conventional breeding and identified them by marker assisted selection. The characterization of defense response showed a highly effective defense mechanism against powdery mildew in these plants. Our results reveal that RUN1REN1 grapevine plants display a robust defense response against E. necator , leading to unsuccessful fungal establishment with low penetration rate and poor hypha development. This resistance mechanism includes reactive oxygen species production, callose accumulation, programmed cell death induction and mainly VvSTS36 and VvPEN1 gene activation. RUN1REN1 plants have a great potential as new table grape cultivars with durable complete resistance to E. necator , and are valuable germplasm to be included in grape breeding programs to continue pyramiding with other sources of resistance to grapevine diseases.
机译:真菌病原体是葡萄中最常见疾病的病因,其中白粉病是疾病管理的重点。目前在育种计划中采取了不同的葡萄抗性渗入策略。例如,来自不同来源的几个抗性基因(R)的渗入使其更耐用并增强了植物防御反应。考虑到这一点,我们对P09-105 / 34进行了异花授粉,该植物带有RUN1和REN1金字塔形的对Erysiphe necator的抗性位点,分别继承自假圆交计划,该计划与Muscadinia rotundifolia和Vitis vinifera'Dzhandzhal Kara'与易感的商用食用葡萄简历。 “深红色无核”。我们通过常规育种开发了RUN1REN1抗性基因型,并通过标记辅助选择进行了鉴定。防御反应的表征显示了在这些植物中针对白粉病的高效防御机制。我们的结果表明,RUN1REN1葡萄植物显示出对大肠杆菌的强大防御反应,导致真菌建立失败,穿透率低且菌丝发育不良。这种抗性机制包括活性氧的产生,call质的积累,程序性细胞死亡的诱导以及主要是VvSTS36和VvPEN1基因的激活。 RUN1REN1植物作为新的食葡萄品种具有巨大的潜力,可以对大肠杆菌产生持久的完全抗性,并且是有价值的种质,将被包括在葡萄育种计划中,以继续与其他抗葡萄疾病抗性源源不断。

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