首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Identification and characterization of a new stripe rust resistance gene Yr83 on rye chromosome 6R in wheat
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Identification and characterization of a new stripe rust resistance gene Yr83 on rye chromosome 6R in wheat

机译:小麦黑麦染色体6R新条纹锈蚀基因YR83的鉴定与表征

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Key message A physical map of Secale cereale chromosome 6R was constructed using deletion mapping, and a new stripe rust resistance gene Yr83 was mapped to the deletion bin of FL 0.73-1.00 of 6RL. Rye (Secale cereale L., RR) possesses valuable genes for wheat improvement. In the current study, we report a resistance gene conferring stripe rust resistance effective from seedling to adult plant stages located on chromosome 6R. This chromosome was derived from triticale line T-701 and also carries highly effective resistance to the cereal cyst nematode species Heterodera avenae Woll. A wheat-rye 6R(6D) disomic substitution line exhibited high levels of seedling resistance to Australian pathotypes of the stripe rust (Puccinia striiformis f. sp. tritici; Pst) pathogen and showed an even greater resistance to the Chinese Pst pathotypes in the field. Ten chromosome 6R deletion lines and five wheat-rye 6R translocation lines were developed earlier in the attempt to transfer the nematode resistance gene to wheat and used herein to map the stripe rust resistance gene. These lines were subsequently characterized by sequential multicolor fluorescence in situ hybridization (mc-FISH), genomic in situ hybridization (GISH), mc-GISH, PCR-based landmark unique gene (PLUG), and chromosome 6R-specific length amplified fragment sequencing (SLAF-Seq) marker analyses to physically map the stripe rust resistance gene. The new stripe rust resistance locus was located in a chromosomal bin with fraction length (FL) 0.73-1.00 on 6RL and was named Yr83. A wheat-rye translocation line T6RL (#5) carrying the stripe rust resistance gene will be useful as a new germplasm in breeding for resistance.
机译:关键消息使用缺失映射构建Secale CereALE染色体6R的物理图,并且将新条纹锈蚀基因YR83映射到FL 0.73-1.00的6rl的缺失箱。 Rye(Secale Cereale L.,RR)具有珍贵的小麦改善基因。在目前的研究中,我们报告了赋予幼苗与位于6R染色体上的成人植物阶段的条纹铁锈抗性的抗性基因。该染色体衍生自基质线T-701,并且还携带高效的抗谷物囊肿线虫物种Heterodera Avenae Woll。小麦-RYE 6R(6D)发明替代线对条纹锈病的澳大利亚病理型呈现出高水平的幼苗抗性(PUCCINIA Striformis F.SP.Tritici; PST)病原体,并且对该领域的中国PST病理型表达了更大的抗性。在尝试将线虫电阻基因转移到小麦并在本文中使用以将线虫抗性基因转移到映射条纹铁锈抗性基因的染色体6R删除线和五个小麦-Rye 6R易位线。随后通过原位杂交(MC鱼),原位杂交(GISH),MC-GISH,基于PCR的地标独特基因(栓塞)和染色体6R特异性长度扩增片段测序( SLAF-SEQ)标记分析以物理地映射条纹锈蚀基因。新条纹防锈基因座位于染色体箱中,在6rl上具有馏分长度(FL)0.73-1.00并被命名为YR83。携带条纹防锈基因的小麦-RYE易位线T6RL(#5)将可用作抗性育种的新种质。

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