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Gummy Stem Blight Resistance in Melon: Inheritance Pattern and Development of Molecular Markers

机译:甜瓜干枯病抗性:遗传模式和分子标记的发展。

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摘要

Gummy stem blight (GSB) causes enormous losses to melon (Cucumis melo L.) production worldwide. We aimed to develop useful molecular markers linked to GSB resistance. In this study, 168 F2 plants were obtained from the F1 population of a cross between the GSB-susceptible ‘Cornell ZPPM 339’ and the GSB-resistant ‘PI482399’ lines. A 3:1 ratio of susceptible and resistant genotypes was observed in the F2 population, indicating control by a single recessive gene. Nucleotide-binding site leucine-rich repeat (NBS-LRR) genes confer resistance against insects and diseases in cucurbits including melon. We cloned and sequenced the TIR-NBS-LRR-type resistance gene MELO3C022157, located on melon chromosome 9, from resistant and susceptible lines. Sequence analysis revealed deletions in the first intron, a 2-bp frameshift deletion from the second exon and a 7-bp insertion in the 4th exon of the resistant line. We developed two insertion/deletion (InDel) markers, GSB9-kh-1 and GSB9-kh-2, which were found in the first intron of MELO3C022157 linked to GSB resistance. We validated these markers with the F2 population and inbred lines. These InDels may be used to facilitate marker-assisted selection of GSB resistance in melon. However, functional analysis of overexpressing and/or knock-down mutants is needed to confirm the frameshift mutation.
机译:胶粘枯萎病(GSB)对全世界的甜瓜(Cucumis melo L.)生产造成巨大损失。我们旨在开发与GSB抗性相关的有用分子标记。在这项研究中,从F1群体中获得了168株F2植株,这些群体来自于GSB敏感的'Cornell ZPPM 339'和耐GSB的'PI482399'品系。在F2种群中观察到3:1的易感基因型和抗性基因型比率,表明受单个隐性基因控制。核苷酸结合位点富含亮氨酸的重复序列(NBS-LRR)基因赋予对瓜类在内的葫芦科昆虫和疾病的抵抗力。我们从抗性和易感品系克隆并测序了位于瓜9号染色体上的TIR-NBS-LRR型抗性基因MELO3C022157。序列分析揭示了抗性系的第一个内含子中的缺失,第二个外显子中的2-bp移码缺失和第4个外显子中的7bp插入。我们开发了两个插入/缺失(InDel)标记GSB9-kh-1和GSB9-kh-2,它们在与GSB抗性相关的MELO3C022157的第一个内含子中发现。我们用F2群体和近交系验证了这些标记。这些InDel可用于促进标记物辅助选择甜瓜中的GSB抗性。但是,需要对过表达和/或敲低突变体进行功能分析,以确认移码突变。

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