首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Ryd4 Hb a novel resistance gene introgressed from Hordeum bulbosum into barley and conferring complete and dominant resistance to the barley yellow dwarf virus
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Ryd4 Hb a novel resistance gene introgressed from Hordeum bulbosum into barley and conferring complete and dominant resistance to the barley yellow dwarf virus

机译:Ryd4 Hb是一种新的抗性基因,从球茎大麦渗入大麦,并赋予对大麦黄矮病毒的完全抗性和显性抗性

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摘要

Barley yellow dwarf virus (BYDV) causes high yield losses in most of the major cereal crops worldwide. A source of very effective resistance was detected within the tetraploid wild species of Hordeum bulbosum. Interspecific crosses between a resistant H. bulbosum accession and H. vulgare cv. 'Igri' were performed to transfer this resistance into cultivated barley. Backcrosses to H. vulgare resulted in offspring which carried a single subterminal introgression of H. bulbosum chromatin on barley chromosome 3HL and proved to be fully resistant to BYDV-PAV, as inferred by ELISA values of zero or close to zero and lack of BYDV symptoms. Genetic analysis indicated a dominant inheritance of the BYDV-PAV resistance factor, which we propose to denote Ryd4 Hb . The identity and effect of Ryd4 Hb are discussed in relation to other known genes for BYDV resistance or tolerance, as well as the relevance of this gene for resistance breeding in barley.
机译:大麦黄矮病毒(BYDV)导致全球大多数主要谷物作物的高产损失。在球形大麦的四倍体野生物种中检测到非常有效的抗性来源。抗性球茎腐殖质种质和普通种之间的种间杂交。进行“ Igri”将这种抗性转移到栽培的大麦中。与普通种的回交导致后代携带大麦染色体3HL上的鳞茎嗜铬细胞的单个亚末端渗入,并通过ELISA值为零或接近零且缺乏BYDV症状证明对BYDV-PAV具有完全抗性。遗传分析表明BYDV-PAV抗性因子具有显性遗传,我们建议将其表示为Ryd4 Hb。讨论了Ryd4 Hb的身份和作用与其他已知的BYDV抗性或耐受性基因以及该基因与大麦抗性育种的相关性。

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