首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >A strategy for identifying markers linked with stem rust resistance in wheat harbouring an alien chromosome introgression from a non-sequenced genome
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A strategy for identifying markers linked with stem rust resistance in wheat harbouring an alien chromosome introgression from a non-sequenced genome

机译:鉴定与源自未测序的基因组的外星染色体血液中的茎生锈阻力相关的标记的策略

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Key messageA set of molecular markers was developed for Sr26 from comparative genomic analysis. The comparative genomic approach also enabled the identification of a previously uncharacterised wheat chromosome that carried Sr26.AbstractStem rust of wheat, a biotic stress caused by a fungal pathogen, continues to pose significant threats to wheat production. Considerable effort has been directed at surveillance and breeding approaches to minimize the impact of the widely virulent race of the stem rust pathogen (Puccinia graminis f. sp. tritici, Pgt) commonly known as Ug99 (TTKSK) and other races in its lineage. The stem rust resistance gene Sr26, derived from Thinopyrum ponticum, is an excellent example of the successful utilization of a gene from a wild relative of a crop plant and remains one of the few durable sources of resistance currently effective against all known field isolates of Pgt. We explored comparative genomic analysis of the nucleotide binding leucine rich repeat (NLR) genes of the diploid D genome and bread wheat genomes to target the Sr26 region from the non-sequenced Th. ponticum genome. A chromosomal interval harboring NLR genes in the distal end of homoeologous group 6 chromosomes was used to demarcate the Sr26 locus. A set of closely linked PCR-based molecular markers was developed for Sr26. Furthermore, the comparative analysis approach enabled the unambiguous identification of a previously uncharacterised wheat chromosome that carried Sr26 in an introgressed Th. ponticum segment and was validated by fluorescent and genomic in situ hybridisation (FISH/GISH) experiments. The genetic information generated from the target interval based on this study will benefit future related studies on group 6 chromosomes of wheat, including 6D(t) from Aegilops tauschii, and chromosome 6Ae#1 from Th. ponticum.
机译:关键Messagea集分子标志物用于比较基因组分析的SR26。比较基因组方法还使鉴定鉴定先前无特征化的小麦染色体,其携带SR26.Abstractstem Rust的小麦生锈,由真菌病原体引起的生物应激继续对小麦生产构成重大威胁。在监测和育种方法中旨在最大限度地努力,以最大限度地减少茎生锈病原体(PUCCINIA Graminis F.SC。SP.Tritici,PGT)在其谱系中被称为UG99(TTKSK)和其他比赛的影响。来自甲状腺髓质瘤的茎锈病基因SR26是从作物植物的野生相对的基因的成功利用基因的优秀典范,并且仍然是目前对所有已知的PGT的所有已知场隔离物有效的耐用潜力源之一。我们探讨了二倍体D基因组和面包小麦基因组的富含重复(NLR)基因的核苷酸结合亮氨酸的比较基因组分析,从未测定的TH靶向SR26区域。 Ponticum基因组。含有在同优素族染色体的远端中染色NLR基因的染色体间隔用于分析SR26基因座。为SR26开发了一组密切的基于PCR的分子标记。此外,比较分析方法使得能够明确鉴定先前无特征的小麦染色体,其在狭窄的TH中携带SR26。猪段并通过荧光和基因组验证原位杂交(鱼/ GISH)实验。根据该研究的目标间隔产生的遗传信息将使未来的小麦染色体的未来相关研究,包括来自Aegilops Tauschii的6d(t),以及来自Th的染色体6ae#1。 ponticum。

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