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Application of a high-speed breeding technology to apple (Malus x domestica) based on transgenic early flowering plants and marker-assisted selection

机译:基于转基因早期开花植物和标记辅助选择的高速育种技术在苹果(Malus x domestica)中的应用

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Breeding of apple (Malus x domestica) remains a slow process because of protracted generation cycles. Shortening the juvenile phase to achieve the introgression of traits from wild species into prebreeding material within a reasonable time frame is a great challenge.In this study, we evaluated early flowering transgenic apple lines overexpressing the BpMADS4 gene of silver birch with regard to tree morphology in glasshouse conditions. Based on the results obtained, line T1190 was selected for further analysis and application to fast breeding.The DNA sequences flanking the T-DNA were isolated and the T-DNA integration site was mapped on linkage group 4. The inheritance and correctness of the T-DNA integration were confirmed after meiosis. A crossbred breeding programme was initiated by crossing T1190 with the fire blight-resistant wild species Malus fusca. Transgenic early flowering F-1 seedlings were selected and backcrossed with 'Regia' and 98/6-10 in order to introgress the apple scab Rvi2, Rvi4 and powdery mildew Pl-1, Pl-2 resistance genes and the fire blight resistance quantitative trait locus FB-F7 present in 'Regia'.Three transgenic BC'1 seedlings pyramiding Rvi2, Rvi4 and FB-F7, as well as three other BC'1 seedlings combining Pl-1 and Pl-2, were identified. Thus, the first transgenic early flowering-based apple breeding programme combined with marker-assisted selection was established.
机译:苹果(Malus x domestica)的育种过程很缓慢,因为其繁殖周期较长。缩短幼年期以在合理的时间范围内将野生物种的性状渗入到预育材料中是一个巨大的挑战。在这项研究中,我们评估了过表达银桦BpMADS4基因的早期开花转基因苹果系的树形结构。温室条件。根据获得的结果,选择T1190品系进行进一步分析并将其应用于快速育种。分离出T-DNA侧翼的DNA序列,并将T-DNA整合位点定位在连接群4上。T的遗传和正确性-减数分裂后确认DNA整合。通过将T1190与耐火枯病的野生物种Malus fusca杂交,开始了杂交育种计划。选择转基因的早花F-1幼苗​​,并与'Regia'和98 / 6-10回交,以渗入苹果赤霉病Rvi2,Rvi4和白粉病Pl-1,Pl-2抗性基因和火疫病抗性定量性状鉴定出'Regia'中存在的FB-F7基因座。鉴定了三株转基因的BC'1幼苗,其与Rvi2,Rvi4和FB-F7呈锥体状,另外三株结合了Pl-1和P1-2的BC'1幼苗。因此,建立了第一个基于转基因早期开花的苹果育种程序并结合了标记辅助选择。

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