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首页> 外文期刊>Molecular Breeding >Fine mapping of the gene Rvi18 (V25) for broad-spectrum resistance to apple scab, and development of a linked SSR marker suitable for marker-assisted breeding
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Fine mapping of the gene Rvi18 (V25) for broad-spectrum resistance to apple scab, and development of a linked SSR marker suitable for marker-assisted breeding

机译:Rvi18(V25)基因的精细定位,可对苹果黑星病进行广谱抗性,并开发了适用于标记辅助育种的连锁SSR标记

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Apple scab, caused by the fungal pathogen Venturia inaequalis, is one of the most devastating diseases for the apple growing industry in temperate zones with humid springs and summers. Breeding programs around the world have identified several sources of resistance, of which the Rvi6 (Vf) gene from Malus floribunda 821 has been the most widely used. The appearance of Rvi6-virulent strains of V. inaequalis in several European countries have underlined the necessity of pyramiding different effective resistance genes for durably resistant cultivars. Here we report the mapping of the new apple scab resistance gene Rvi18 (V25) from the selection 1980-015-025 of the apple breeding program at Wageningen University and Research Centre, The Netherlands. This gene was fine mapped on the proximal part of LG11 to a region of 34 Kb in the apple genome sequence of 'Golden Delicious', using 894 progeny plants, and SSR, DArT, AFLP, and SNP markers. One gene on the 'Golden Delicious' reference genome was identified as the potential susceptibility allele of the resistance gene. Moreover, an SSR marker has been developed of which one of its amplicons sizes is highly specific for Rvi18, thus facilitating the directed pyramiding of resistance genes through marker assisted breeding.
机译:苹果霉菌病是由真菌病原体Venturia inaequalis引起的,在春季和夏季潮湿的温带地区,是苹果种植业最具破坏力的疾病之一。世界各地的育种计划已经确定了几种抗药性来源,其中来自海棠(Malus floribunda 821)的Rvi6(Vf)基因得到了最广泛的应用。在几个欧洲国家中,Rvi6致病力不等纳弧菌在病毒中的出现,突显了对耐久品种进行有效抗性基因金字塔化的必要性。在这里,我们从荷兰瓦赫宁根大学和研究中心的苹果育种计划的选择1980-015-025报告了新的苹果抗sc疮病基因Rvi18(V25)的图谱。使用894子代植物以及SSR,DArT,AFLP和SNP标记,将该基因精细地定位在LG11的近端部分上的“ Golden Delicious”苹果基因组序列中的34 Kb区域。 “金色美味”参考基因组中的一个基因被鉴定为抗性基因的潜在易感性等位基因。此外,已经开发出一种SSR标记,其扩增子大小之一对Rvi18具有高度特异性,从而通过标记辅助育种促进了抗性基因的定向金字塔。

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