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Application of molecular markers to wheat breeding in Canada.

机译:分子标记在加拿大小麦育种中的应用。

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Marker-assisted breeding provides an opportunity for wheat breeders to introgress/pyramid genes of interest into breeding lines and to identify genes and/or quantitative trait loci in germplasm to be used as parents. Molecular markers were deployed to assist selection for disease resistance, agronomic and quality traits in several wheat cultivars released for commercial cultivation in Canada. Marker-assisted breeding is routinely used in most wheat breeding programmes for rust resistance (leaf, stem and stripe rust), orange wheat blossom midge resistance, high grain protein concentration, Fusarium head blight and common bunt resistance. Markers are being used selectively within breeding programmes to target traits that relate to market class or regional adaptation. For example, marker-assisted breeding for low lipoxygenase activity and low grain cadmium is being performed in durum breeding programmes and for enhancing stem solidness in programmes targeting resistance to the wheat stem sawfly. Markers are also being utilized for ergot resistance in durum wheat. Increased gluten strength is being selected with a marker for the overexpression of the Bx7 high-molecular-weight glutenin subunit. Marker-assisted breeding is also being used to pyramid resistance genes against a group of stem rust races related to TTKS (Ug99), a disease that poses a serious threat to global wheat production. Development of tightly linked diagnostic markers and high-throughput genotyping with SNP markers will result in more effective molecular wheat breeding in the near future and will open the door to genomic selection.
机译:标记辅助育种为小麦育种者提供了将感兴趣的基因渗入/导入育种系并鉴定将用作亲本的种质中的基因和/或数量性状基因座的机会。部署了分子标记,以协助选择在加拿大商业种植的几种小麦品种的抗病性,农艺性状和品质性状。标记辅助育种通常用于大多数小麦育种计划中,以防锈(叶锈,茎锈和条锈),橙色小麦花mid抗性,高谷蛋白浓度,镰刀菌枯萎病和普通bun病。在育种计划中有选择地使用标记来定位与市场类别或区域适应性有关的性状。例如,在硬粒小麦育种计划中进行低脂氧合酶活性和低谷物镉的标记辅助育种,并在针对小麦茎叶蝇的抗性计划中提高茎的坚实度。标记也被用于硬粒小麦的麦角抗性。用过表达Bx7高分子量谷蛋白亚基的标志物选择增加的谷蛋白强度。标记辅助育种还被用于使抗一组与TTKS(Ug99)有关的茎锈病的抗性基因金字塔化,该疾病对全球小麦生产构成严重威胁。紧密链接的诊断标记的开发以及具有SNP标记的高通量基因分型将在不远的将来导致更有效的分子小麦育种,并为基因组选择打开大门。

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