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首页> 外文期刊>TAG Theoretical and Applied Genetics >Genetic analyses of the host-pathogen system Turnip yellows virus (TuYV)—rapeseed (Brassica napus L.) and development of molecular markers for TuYV-resistance
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Genetic analyses of the host-pathogen system Turnip yellows virus (TuYV)—rapeseed (Brassica napus L.) and development of molecular markers for TuYV-resistance

机译:油菜(甘蓝型油菜)宿主-病原体系统萝卜黄病毒(TuYV)的遗传分析和抗TuYV分子标记的开发

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The aphid transmitted Turnip yellows virus (TuYV) has become a serious pathogen in many rapeseed (Brassica napus L.) growing areas. Three-years’ field trials were carried out to get detailed information on the genetics of TuYV resistance derived from the resynthesised B. napus line ‘R54’ and to develop closely linked markers. F1 plants and segregating doubled-haploid (DH) populations derived from crosses to susceptible cultivars were analysed using artificial inoculation with virus-bearing aphids, followed by DAS-ELISA. Assuming a threshold of E 405 = 0.1 in ELISA carried out in December, the results led to the conclusion that pre-winter inhibition of TuYV is inherited in a monogenic dominant manner. However, the virus titre in most resistant lines increased during the growing period, indicating that the resistance is incomplete and that the level of the virus titre is influenced by environmental factors. Bulked-segregant marker analysis for this resistance locus identified two closely linked SSR markers along with six closely linked and three co-segregating AFLP markers. Two AFLP markers were converted into co-dominant STS markers, facilitating efficient marker-based selection for TuYV resistance. Effective markers are particularly valuable with respect to breeding for TuYV resistance, because artificial inoculation procedures using virus-bearing aphids are extremely difficult to integrate into practical rapeseed breeding programs. Communicated by R. Visser.
机译:蚜虫传播的芜菁黄病毒(TuYV)已成为许多油菜(Brassica napus L.)种植区的严重病原体。进行了为期三年的田间试验,以获取有关从重新合成的甘蓝型油菜“ R54”品系获得的TuYV抗性遗传学的详细信息,并开发紧密相连的标记。使用带有病毒的蚜虫进行人工接种,然后通过DAS-ELISA,分析了F 1 植物和从杂交到易感品种的分离的双单倍体(DH)群体。假设在12月进行的ELISA中E 405 的阈值= 0.1,则得出结论,认为TuYV的冬季前抑制作用是以单基因显性方式遗传的。然而,大多数抗性品系中的病毒滴度在生长期增加,表明抗性不完全,并且病毒滴度水平受环境因素影响。针对该抗性位点的散装分离子标记分析确定了两个紧密相连的SSR标记以及六个紧密相连的AFLP和三个共同分离的AFLP标记。将两个AFLP标记转换为共主要的STS标记,以促进基于标记的TuYV抗性的有效选择。有效的标记物在抗TuYV的育种方面特别有价值,因为使用携带病毒的蚜虫进行的人工接种程序非常难以整合到实际的油菜籽育种程序中。由R. Visser沟通。

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