首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Selecting a set of wild barley introgression lines and verification of QTL effects for resistance to powdery mildew and leaf rust.
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Selecting a set of wild barley introgression lines and verification of QTL effects for resistance to powdery mildew and leaf rust.

机译:选择一组野生大麦渗入系并验证QTL对白粉病和叶锈病的抗性。

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A set of 59 spring barley introgression lines (ILs) was developed from the advanced backcross population S42. The ILs were generated by three rounds of backcrossing, two to four subsequent selfings, and, in parallel, marker-assisted selection. Each line includes a single marker-defined chromosomal segment of the wild barley accession ISR42-8 (Hordeum vulgare ssp. spontaneum), whereas the remaining part of the genome is derived from the elite barley cultivar Scarlett (H. vulgare ssp. vulgare). Based on a map containing 98 SSR markers, the IL set covers so far 86.6% (1041.5 cM) of the donor genome. Each single line contains an average exotic introgression of 39.2 cM, representing 3.2% of the exotic genome. The utility of the developed IL set is illustrated by verification of QTLs controlling resistance to powdery mildew (Blumeria graminis f. sp. hordei L.) and leaf rust (Puccinia hordei L.) which were previously identified in the advanced backcross population S42. Altogether 57.1 and 75.0% of QTLs conferring resistance to powdery mildew and leaf rust, respectively, were verified by ILs. The strongest favorable effects were mapped to regions 1H, 0-85 cM and 4H, 125-170 cM, where susceptibility to powdery mildew and leaf rust was decreased by 66.1 and 34.7%, respectively, compared to the recurrent parent. In addition, three and one new QTLs were localized, respectively. A co-localization of two favorable QTLs was identified for line S42IL-138, which holds an introgressed segment in region 7H, 166-181. Here, a reduction effect was revealed for powdery mildew as well as for leaf rust severity. This line might be a valuable resource for transferring new resistance alleles into elite cultivars. In future, we aim to cover the complete exotic genome by selecting additional ILs. We intend to conduct further phenotype studies with the IL set in regard to the trait complexes agronomic performance, malting quality, biotic stress, and abiotic stress.
机译:从先进的回交群体S42中开发了一组59个春季大麦基因渗入系(IL)。 IL是通过三轮回交,两到四个随后的自交,以及平行进行的标记辅助选择产生的。每条品系均包含野生大麦登录号ISR42-8(大麦属植物自发性孢子)的单个标记定义的染色体片段,而基因组的其余部分则来自精英大麦品种斯嘉丽(H. vulgare ssp。vulgare)。根据包含98个SSR标记的图谱,IL集到目前为止覆盖了供体基因组的86.6%(1041.5 cM)。每个单系平均含有39.2 cM的外来基因渗入,占外来基因组的3.2%。通过验证控制对白粉病(Blumeria graminis f。sp。hordei L.)和叶锈病(Puccinia hordei L.)的抗性的QTL,可以验证已开发的IL组的实用性,这些QTL在先前的回交群体S42中得到了鉴定。 ILs分别证实了分别赋予白粉病和叶锈病抗性的QTL的57.1%和75.0%。最强的有利效应定位在区域1H,0-85 cM和4H,125-170 cM,与反复亲代相比,其对白粉病和叶锈病的敏感性分别降低了66.1和34.7%。此外,分别本地化了三个和一个新的QTL。对于线S42IL-138,鉴定了两个有利QTL的共定位,该线在7H区166-181中具有一个渐渗的片段。在这里,白粉病和叶锈病严重程度都有降低的效果。该品系可能是将新的抗性等位基因转移到优良品种中的宝贵资源。将来,我们旨在通过选择其他IL来覆盖完整的外来基因组。我们打算用IL进行关于性状复合物农艺性能,麦芽品质,生物胁迫和非生物胁迫的进一步表型研究。

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