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Identification of QTL associated with resistance to bacterial spot race T4 in tomato

机译:鉴定与对番茄中细菌T4族耐药性相关的QTL

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摘要

Bacterial spot of tomato (Solanum lycopersicum L.), caused by several Xanthomonas sp., is a serious but difficult disease to control by chemical means. Development of resistance has been hindered by emergence of races virulent to tomato, by the quantitative inheritance of resistance, and by a low correlation between seedling assays and resistance in the field. Resistance to multiple races, including race T4, has been described in the S. lycopersicum var. cerasiformae accession PI 114490. We used molecular markers to identify associations with quantitative trait loci (QTL) in an elite inbred backcross (IBC) population derived from OH 9242, PI 114490 and Fla. 7600, a breeding line with tomato accession Hawaii 7998 (H7998) in its pedigree. Race T4 resistance has also been described in the advanced breeding lines Fla. 8233, Fla. 8517, and Fla. 8326, and a selective genotyping approach was used to identify introgressions associated with resistance in segregating progeny derived from crosses with these lines. In the IBC population, loci on chromosomes 11 and 3, respectively, explained as much as 29.4 and 4.8% of resistance variation. Both these loci were also confirmed by selective genotyping: PI 114490 and H7998 alleles on chromosome 11 each provided resistance. The PI 114490 allele on chromosome 3 was confirmed in the Fla. 8517 population, and an allele of undetermined descent was confirmed at this locus in the Fla. 8326 population. A chromosome 12 allele was associated with susceptibility in the Fla. 8517 population. Additional loci contributing minor effects were also implicated in the IBC population or by selective genotyping. Selection for the major QTL in a marker-directed phenotyping approach should significantly improve the efficiency of breeding for resistance to bacterial spot race T4, although as yet undetected QTL would be necessary to carry out strict marker assisted selection.
机译:番茄(Solanum lycopersicum L.)的细菌斑点是由几种Xanthomonas sp。引起的,是一种严重但很难通过化学方法控制的疾病。抗性的发展由于对番茄有毒的小种的出现,抗性的定量遗传以及幼苗试验与田间抗性之间的低相关性而受到阻碍。在S.lycopersicum var。中描述了对包括T4族在内的多个族群的抗性。 cerasiformae登录号PI114490。我们使用分子标记鉴定了来自OH 9242,PI 114490和Fla.7600的优良近交回交(IBC)群体的定量性状基因座(QTL),该品种是番茄登录号Hawaii 7998(H7998) )的血统书。在高级育种品系Fla。8233,Fla。8517和Fla。8326中也描述了T4种族抗性,并且在分离源自与这些品系杂交的后代中,使用选择性基因分型方法来鉴定与抗性相关的基因渗入。在IBC群体中,分别位于11号和3号染色体上的基因座解释了29.4%和4.8%的抗性变异。这两个基因座也通过选择性基因分型得到证实:11号染色体上的PI 114490和H7998等位基因均提供了抗性。在Fla.8517人群中确认了3号染色体上的PI 114490等位基因,并在Fla.8326人群中的该基因座上确认了血统未定的等位基因。第12染色体等位基因与Fla.8517人群的易感性相关。在IBC人群中或通过选择性基因分型也牵涉到贡献较小影响的其他基因座。在标记指导的表型分析方法中选择主要的QTL应当显着提高对细菌斑块T4抗性的育种效率,尽管进行严格的标记辅助选择仍需要检测未检出的QTL。

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  • 来源
    《Theoretical and Applied Genetics》 |2010年第7期|1275-1287|共13页
  • 作者单位

    Gulf Coast Research and Education Center Institute of Food and Agricultural Sciences University of Florida 14625 CR 672 Wimauma FL 33598-6101 USA;

    Gulf Coast Research and Education Center Institute of Food and Agricultural Sciences University of Florida 14625 CR 672 Wimauma FL 33598-6101 USA;

    Department of Vegetable Science College of Agronomy and Biotechnology China Agricultural University No. 2 Yuanmingyuan Xi Lu Haidian District Beijing 100193 People’s Republic of China;

    Department of Horticulture and Crop Science The Ohio State University Ohio Agricultural Research and Development Center 1680 Madison Ave Wooster OH 44691 USA;

    Department of Horticulture and Crop Science The Ohio State University Ohio Agricultural Research and Development Center 1680 Madison Ave Wooster OH 44691 USA;

    Plant Pathology Department University of Florida 2515 Fifield Hall P.O. Box 110680 Gainesville FL 32611-0680 USA;

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