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Generation of Doubled Haploid Wheat-Triticum urartu Introgression Lines and Their Characterisation Using Chromosome-Specific KASP Markers

机译:生成一倍的单倍体麦芽素urartu introgression系及其使用染色体特异性kasp标记的表征

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摘要

Wheat is one of the most important food and protein sources in the world and although, in recent years wheat breeders have achieved yield gains, they are not sufficient to meet the demands of an ever-growing population. Development of high yielding wheat varieties, resilient to abiotic and biotic stress resulting from climate change, has been limited by wheat’s narrow genetic base. In contrast to wheat, the wild relatives of wheat provide a vast reservoir of genetic variation for most, if not all, agronomic traits. Previous studies by the authors have shown the transfer of genetic variation from T. urartu into bread wheat. However, before the introgression lines can be exploited for trait analysis, they are required to have stable transmission of the introgressions to the next generation. In this work, we describe the generation of 86 doubled haploid (DH) wheat-T. urartu introgression lines that carry homozygous introgressions which are stably inherited. The DH lines were characterised using the Axiom® Wheat Relative Genotyping Array and 151 KASP markers to identify 65 unique T. urartu introgressions in a bread wheat background. DH production has helped accelerate the breeding process and facilitated the early release of homozygous wheat-T. urartu introgression lines. Together with the KASP markers, this valuable resource could greatly advance identification of beneficial alleles that can be used in wheat improvement.
机译:小麦是世界上最重要的食物和蛋白质来源之一,虽然近年来,近年来小麦育种者已经取得了收益,但它们不足以满足持续不断增长的人口的需求。高产小麦品种的发展,气候变化引起的非生物和生物胁迫,受到小麦狭窄遗传基础的限制。与小麦相比,小麦的野生亲属为大多数情况提供了巨大的遗传变异储层,如果不是全部,农艺性状。提交人的先前研究表明,从乌鲁塔图遗传变异转移到面包小麦中。然而,在可以利用特性分析之前,它们需要稳定地传播到下一代。在这项工作中,我们描述了86个双倍单倍体(DH)小麦-T的产生。 urartu血糖血症线携带稳定继承的纯合的血栓增备。使用Axiom®小麦相对基型阵列和151 kasp标记物在面包麦背景下鉴定65个kasp标记的DH线。 DH生产有助于加速育种过程,促进纯合麦-T的早期释放。 urartu introgression线条。与Kasp标记一起,这种有价值的资源可以大大推进鉴定可以在小麦改善中使用的有益等位基因。

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