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首页> 外文期刊>Theoretical and Applied Genetics >QTL identification for early blight resistance (Alternaria solani) in a Solanum lycopersicum × S. arcanum cross
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QTL identification for early blight resistance (Alternaria solani) in a Solanum lycopersicum × S. arcanum cross

机译:茄科植物X.arcanum杂交的早期抗白叶枯病(Alternaria solani)的QTL鉴定

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摘要

Alternaria solani (Ellis and Martin) Sorauer, the causal agent of early blight (EB) disease, infects aerial parts of tomato at both seedling and adult plant stages. Resistant cultivars would facilitate a sustainable EB management. EB resistance is a quantitatively expressed character, a fact that has hampered effective breeding. In order to identify and estimate the effect of genes conditioning resistance to EB, a quantitative trait loci (QTL) mapping study was performed in F2 and F3 populations derived from the cross between the susceptible Solanum lycopersicum (syn. Lycopersicon esculentum) cv. ‘Solentos’ and the resistant Solanum arcanum (syn. Lycopersicon peruvianum) LA2157 and genotyped with AFLP, microsatellite and SNP markers. Two evaluation criteria of resistance were used: measurements of EB lesion growth on the F2 plants in glasshouse tests and visual ratings of EB severity on foliage of the F3 lines in a field test. A total of six QTL regions were mapped on chromosomes 1, 2, 5–7, and 9 with LOD scores ranging from 3.4 to 17.5. Three EB QTL also confer resistance to stem lesions in the field, which has not been reported before. All QTL displayed significant additive gene action; in some cases a dominance effect was found. Additive × additive epistatic interactions were detected between one pair of QTL. For two QTL, the susceptible parent contributed resistance alleles to both EB and stem lesion resistance. Three of the QTL showed an effect in all tests despite methodological and environmental differences.
机译:早疫病(EB)病的病原体是链格孢(Alternaria solani)(Ellis和Martin)Sorauer,在苗期和成年期都感染番茄的空中部分。抗性品种将促进可持续的EB管理。 EB抗性是定量表达的特征,这一事实阻碍了有效育种。为了鉴定和评估基因调节对EB的抗性的影响,在F2和F3种群中进行了数量性状基因座(QTL)定位研究,该种群来自易感番茄(Solaum lycopersicum)(Syn。Lycopersicon esculentum)cv之间的杂交。 “ Solentos”和抗性茄(Solanum arcanum)(Sy。Lycopersicon peruvianum)LA2157,并用AFLP,微卫星和SNP标记进行基因分型。使用了两种抗性评估标准:在温室试验中测量F2植物上EB病害的生长,以及在野外试验中对F3品系的叶子上EB严重程度的目视评定。共有6个QTL区域位于1、2、5-7和9号染色体上,LOD得分在3.4至17.5之间。三个EB QTL还赋予了田间对茎部病害的抗性,这在以前没有报道。所有QTL均显示出显着的加性基因作用;在某些情况下,发现了主导作用。在一对QTL之间检测到加性×加性上位相互作用。对于两个QTL,易感亲本对EB和茎部病灶抗性均贡献了抗性等位基因。尽管方法和环境存在差异,但三个QTL在所有测试中均显示效果。

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  • 来源
    《Theoretical and Applied Genetics》 |2007年第3期|439-450|共12页
  • 作者单位

    Plant Research International P.O. Box 16 6700 AA Wageningen The Netherlands;

    Plant Research International P.O. Box 16 6700 AA Wageningen The Netherlands;

    Plant Research International P.O. Box 16 6700 AA Wageningen The Netherlands;

    Plant Research International P.O. Box 16 6700 AA Wageningen The Netherlands;

    Laboratory of Plant Breeding Department of Plant Sciences Wageningen University P.O. Box 386 6700 AJ Wageningen The Netherlands;

    Plant Research International P.O. Box 16 6700 AA Wageningen The Netherlands;

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