首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Broad spectrum late blight resistance in potato differential set plants MaR8 and MaR9 is conferred by multiple stacked R genes.
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Broad spectrum late blight resistance in potato differential set plants MaR8 and MaR9 is conferred by multiple stacked R genes.

机译:马铃薯差异集植物Ma R8 和Ma R9 的广谱晚疫病抗性是由多个堆积的 R 基因赋予的。

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Phytophthora infestans is the causal agent of late blight in potato. The Mexican species Solanum demissum is well known as a good resistance source. Among the 11 R gene differentials, which were introgressed from S. demissum, especially R8 and R9 differentials showed broad spectrum resistance both under laboratory and under field conditions. In order to gather more information about the resistance of the R8 and R9 differentials, F1 and BC1 populations were made by crossing Mastenbroek (Ma) R8 and R9 clones to susceptible plants. Parents and offspring plants were examined for their pathogen recognition specificities using agroinfiltration with known Avr genes, detached leaf assays (DLA) with selected isolates, and gene-specific markers. An important observation was the discrepancy between DLA and field trial results for Pi isolate IPO-C in all F1 and BC1 populations, so therefore also field trial results were included in our characterization. It was shown that in MaR8 and MaR9, respectively, at least four (R3a, R3b, R4, and R8) and seven (R1, Rpi-abpt1, R3a, R3b, R4, R8, R9) R genes were present. Analysis of MaR8 and MaR9 offspring plants, that contained different combinations of multiple resistance genes, showed that R gene stacking contributed to the Pi recognition spectrum. Also, using a Pi virulence monitoring system in the field, it was shown that stacking of multiple R genes strongly delayed the onset of late blight symptoms. The contribution of R8 to this delay was remarkable since a plant that contained only the R8 resistance gene still conferred a delay similar to plants with multiple resistance genes, like, e.g., cv Sarpo Mira. Using this "de-stacking" approach, many R gene combinations can be made and tested in order to select broad spectrum R gene stacks that potentially provide enhanced durability for future application in new late blight resistant varieties.
机译:马铃薯疫霉菌是马铃薯晚疫病的病因。墨西哥 Solanum demissum 是众所周知的良好抗药性来源。从 S渗入的11个 R 基因差异中。 demissum ,尤其是 R8 和 R9 差异在实验室和野外条件下均表现出广谱抗性。为了收集有关 R8 和 R9 差异的抗性的更多信息,通过杂交Mastenbroek(Ma) R8 来制作F1和BC1种群。和 R9 克隆到易感植物。使用已知的 Avr 基因进行农杆菌渗入,选择了分离株的离体叶片测定法(DLA)和基因特异性标记物,对亲本和后代植物的病原体识别特异性进行了检查。一个重要的观察结果是在所有F1和BC1人群中 Pi 分离株IPO-C的DLA与现场试验结果之间存在差异,因此,我们的表征也包括了现场试验结果。结果表明,在Ma R8 和Ma R9 中,至少有四个( R3a , R3b ,< i> R4 和 R8 )和七个( R1 , Rpi-abpt1 , R3a )存在 R3b , R4 , R8 , R9 ) R 基因。对包含多个抗性基因不同组合的Ma R8 和Ma R9 后代植物的分析表明, R 基因的堆叠有助于 > Pi 识别光谱。而且,在田间使用 Pi 毒力监测系统,结果表明,堆叠多个 R 基因强烈延迟了晚疫病症状的发作。 R8 对这种延迟的贡献非常显着,因为仅包含 R8 抗性基因的植物仍具有类似于具有多个抗性基因的植物(例如cv)的延迟Sarpo Mira。使用这种“拆堆”方法,可以制作和测试许多 R 基因组合,以选择广谱的 R 基因堆栈,这些堆栈可能为将来的应用提供增强的耐久性。新的抗晚疫病品种。

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