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小麦品种中梁88375抗条锈病基因的分子作图 被引量:5
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作者 杨敏娜 徐智斌 +3 位作者 王美南 宋建荣 井金学 李振岐 《中国农业科学》 CAS CSCD 北大核心 2008年第10期2931-2936,共6页
【目的】中梁88375是甘肃省天水市农业科学研究所以中4/S394//咸农4号复合杂交选育而成的冬小麦品系,对小麦三锈免疫。明确其抗条锈病基因及遗传特点,建立与其连锁的微卫星标记,以利于抗源筛选和培育持久抗病新品种。【方法】将中梁8837... 【目的】中梁88375是甘肃省天水市农业科学研究所以中4/S394//咸农4号复合杂交选育而成的冬小麦品系,对小麦三锈免疫。明确其抗条锈病基因及遗传特点,建立与其连锁的微卫星标记,以利于抗源筛选和培育持久抗病新品种。【方法】将中梁88375与感病品种铭贤169杂交、自交和测交并对双亲及其杂交后代进行苗期抗性鉴定。用小麦条锈菌条中31号对其进行遗传分析;采用SSR技术,选用普通小麦的320对微卫星引物对中梁88375及铭贤169的基因组DNA进行PCR扩增和电泳分析。【结果】中梁88375对多个条锈菌小种具有良好的抗病性,对CY31的抗病性由1对显性核基因控制,把该基因暂命名为Yr88375。建立了与Yr88375连锁的6个微卫星标记Xgwm335、Xwmc289、Xwmc810、Xgdm116、Xbarc59与Xwmc783,并将Yr88375定位于小麦5BL。距离Yr88375最近的两个微卫星位点是Xgdm116、Xwmc810,遗传距离分别是3.1cM和3.9cM,最远的标记Xwmc783与Yr88375之间的遗传距离为13.5cM。【结论】系谱分析结合分子标记结果表明,Yr88375很有可能是一个来自中间偃麦草(E.intermedium)并与已知抗条锈病基因不同的新基因。 展开更多
关键词 小麦条锈病 中梁88375 抗病基因 分子作图
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冬小麦新品系中梁88375选育报告 被引量:1
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作者 宋建荣 廖文孝 岳维云 《甘肃农业科技》 2000年第1期10-12,共3页
冬小麦新品系中梁88375 是以远缘杂交八倍体中间材料中4 为亲本,与普通小麦进行亚远缘复合杂交育成。该品系株高80~110 cm ,穗粒数32 粒,千粒重40 g,容重775 g/L,全生育期266 d 左右。经多年试验和... 冬小麦新品系中梁88375 是以远缘杂交八倍体中间材料中4 为亲本,与普通小麦进行亚远缘复合杂交育成。该品系株高80~110 cm ,穗粒数32 粒,千粒重40 g,容重775 g/L,全生育期266 d 左右。经多年试验和抗逆性鉴定结果,该品系抗寒、抗旱性强,对条锈免疫,中抗黄矮病。在1994~1996 年生产示范中,折合产量3 060.0~4 365.0 kg/hm 2,比对照增产10% 以上。 展开更多
关键词 冬小麦 中梁88375 品种选育 栽培技术 特征特性
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Inheritance and Molecular Mapping of Stripe Rust Resistance Gene Yr88375 in Chinese Wheat Line Zhongliang 88375 被引量:4
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作者 YANG Min-na XU Zhi-bin +3 位作者 WANG Mei-nan SONG Jian-rong JING Jin-xue LI Zhen-qi 《Agricultural Sciences in China》 CAS CSCD 2008年第8期901-906,共6页
Stripe rust is one of the most important diseases of wheat worldwide. Inheritance of stripe rust resistance and mapping of resistance gene with simple sequence repeat (SSR) markers are studied to formulate efficient... Stripe rust is one of the most important diseases of wheat worldwide. Inheritance of stripe rust resistance and mapping of resistance gene with simple sequence repeat (SSR) markers are studied to formulate efficient strategies for breeding cultivars resistant to stripe rust. Zhongliang 88375, a common wheat line, is highly resistant to all three rusts of wheat in China. The gene conferring rust disease was deduced originating from Elytrigia intermedium. Genetic analysis of Zhongliang 88375 indicated that the resistance to PST race CYR31 was controlled by a single dominant gene, temporarily designated as Yr88375. To molecular map Yr88375, a F2 segregating population consisting of 163 individuals was constructed on the basis of the hybridization between Zhongliang 88375 and a susceptible wheat line Mingxian 169; 320 SSR primer pairs were used for analyzing the genetic linkage relation. Six SSR markers, Xgwm335, Xwmc289, Xwmc810, Xgdmll6, Xbarc59, and Xwmc783, are linked to Yr88375 as they were all located on chromosome 5BL Yr88375 was also located on that chromosome arm, closely linked to Xgdmll6 and Xwmc810 with genetic distances of 3.1 and 3.9 cM, respectively. The furthest marker Xwmc783 was 13.5 cM to Yr88375. Hence, pedigree analysis of Zhongliang 88375 combined with SSR markers supports the conclusion that the highly resistance gene Yr88375 derived from Elytrigia intermedium is a novel gene for resistance to stripe rust in wheat. It could play an important role in wheat breeding programs for stripe rust resistance. 展开更多
关键词 Puccinia striiformis f. sp. Tritici Zhongliang 88375 resistance gene molecular mapping
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