bar -1反转录转座子标记在大麦网斑病主要抗性基因定位中的应用。

O Manninen, R Kalendar, J Robinson, A H Schulman
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引用次数: 161

摘要

网斑,这是由真菌引起的。f.泰瑞斯。对全世界的大麦生产来说,这是一个严重的问题,对它的抗性来源的识别和部署是许多育种者的关键目标。在这里,我们报告了在抗性品系C19819和敏感cv之间的杂交中鉴定出一个主要的抗性基因,占应答变异的65%。Rolfi。利用新近开发的两种基于反转录转座子的分子标记系统REMAP和IRAP,将抗性基因定位到6H染色体上。共定位到239个BARE-1和Sukkula反转录转座子标记,抗性效果显著的位点所在的30 cm片段包含26个标记。标记的类型和局部密度将有助于未来基于图谱的抗性基因克隆以及通过回交育种对抗性进行操纵。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of BARE-1 retrotransposon markers to the mapping of a major resistance gene for net blotch in barley.

Net blotch, which is caused by the fungus Pyrenophoral teres Drechs. f. teres Smedeg., presents a serious problem for barley production worldwide, and the identification and deployment of sources of resistance to it are key objectives for many breeders. Here, we report the identification of a major resistance gene, accounting for 65% of the response variation, in a cross between the resistant line C19819 and the susceptible cv. Rolfi. The resistance gene was mapped to chromosome 6H with the aid of two recently developed systems of retrotransposon-based molecular markers, REMAP and IRAP. A total of 239 BARE-1 and Sukkula retrotransposon markers were mapped in the cross, and the 30-cM segment containing the locus with significant resistance effect contained 26 of the markers. The type and local density of the markers should facilitate future map-based cloning of the resistance gene as well as manipulation of the resistance through backcross breeding.

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