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首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Stripe rust resistance genes in the UK winter wheat cultivar Claire.
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Stripe rust resistance genes in the UK winter wheat cultivar Claire.

机译:英国冬小麦品种克莱尔的条纹抗锈基因。

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Stripe rust resistance in the winter wheat cultivar Claire had remained effective in the UK and Europe since its release in 1999 and consequently has been used extensively in wheat breeding programs. However, in 2012, reports indicated that this valuable resistance may now have been compromised. To characterise stripe rust resistance in Claire and determine which genes may still confer effective resistance a cross was made between Claire and the stripe rust susceptible cultivar Lemhi. A genetic linkage map, constructed using SSR, AFLP, DArT and NBS-AFLP markers had a total map length of 1,730 cM. To improve the definition of two quantitative trait loci (QTL) identified on the long arm of chromosome 2D further markers were developed from wheat EST. Stripe rust resistance was evaluated on adult plants under field and glasshouse conditions by measuring the extent of fungal growth and sporulation, percentage infection (Pi) and the necrotic/chlorotic responses of the plant to infection, infection type (IT). Four QTL contributing to stripe rust adult plant resistance (APR) were identified in Claire, QYr.niab-2D.1, QYr.niab-2D.2, QYr.niab-2B and QYr.niab-7B. For Pi QYr.niab-2D.1 explained up to 25.4% of the phenotypic variation, QYr.niab-2D.2 up to 28.7%, QYr.niab-2B up to 21.7% and QYr.niab-7B up to 13.0%. For IT the percentages of phenotypic variation explained were 23.4, 31.8, 17.2 and 12.6%, respectively. In addition to the four QTL conferring APR in Claire, a race-specific, seedling expressed resistance gene was identified on chromosome 3B.Digital Object Identifier http://dx.doi.org/10.1007/s00122-013-2077-x
机译:自从1999年发布以来,冬小麦品种克莱尔(Claire)的条纹抗锈性在英国和欧洲一直保持有效,因此已在小麦育种计划中得到广泛使用。但是,在2012年,有报告表明,这种宝贵的抵抗力量现在可能已经受到损害。为了表征克莱尔的条锈病抗性并确定哪些基因仍可以赋予有效的抗性,在克莱尔和易受条锈病的品种Lemhi之间进行了杂交。使用SSR,AFLP,DArT和NBS-AFLP标记构建的遗传连锁图谱的总图谱长度为1,730 cM。为了改善在2D染色体长臂上鉴定的两个数量性状基因座(QTL)的定义,还从小麦EST开发了进一步的标记。通过测量真菌生长和形成孢子的程度,感染百分率(Pi)以及植物对感染,感染类型(IT)的坏死/褪绿反应程度,对成年植物在田间和温室条件下的抗条锈性进行了评估。在克莱尔(Claire),QYr.niab-2D.1,QYr.niab-2D.2,QYr.niab-2B和QYr.niab-7B中鉴定了四个导致条锈病成年植物抗性(APR)的QTL。对于Pi QYr.niab-2D.1解释高达25.4%的表型变异,QYr.niab-2D.2高达28.7%,QYr.niab-2B高达21.7%,QYr.niab-7B高达13.0% 。对于IT,解释的表型变异百分比分别为23.4、31.8、17.2和12.6%。除了克莱尔的四个赋予APR的QTL之外,还在3B染色体上鉴定了一种针对种族的,幼苗表达的抗性基因。数字对象标识符http://dx.doi.org/10.1007/s00122-013-2077-x

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