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Development and Utilization of InDel Markers to Identify Peanut (Arachis hypogaea) Disease Resistance

机译:开发和利用InDel标记物鉴定花生(花生)的抗病性

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摘要

Peanut diseases, such as leaf spot and spotted wilt caused by Tomato Spotted Wilt Virus, can significantly reduce yield and quality. Application of marker assisted plant breeding requires the development and validation of different types of DNA molecular markers. Nearly 10,000 SSR-based molecular markers have been identified by various research groups around the world, but less than 14.5% showed polymorphism in peanut and only 6.4% have been mapped. Low levels of polymorphism limit the application of marker assisted selection (MAS) in peanut breeding programs. Insertion/deletion (InDel) markers have been reported to be more polymorphic than SSRs in some crops. The goals of this study were to identify novel InDel markers and to evaluate the potential use in peanut breeding. Forty-eight InDel markers were developed from conserved sequences of functional genes and tested in a diverse panel of 118 accessions covering six botanical types of cultivated peanut, of which 104 were from the U.S. mini-core. Results showed that 16 InDel markers were polymorphic with polymorphic information content (PIC) among InDels ranged from 0.017 to 0.660. With respect to botanical types, PICs varied from 0.176 for fastigiata var., 0.181 for hypogaea var., 0.306 for vulgaris var., 0.534 for aequatoriana var., 0.556 for peruviana var., to 0.660 for hirsuta var., implying that aequatoriana var., peruviana var., and hirsuta var. have higher genetic diversity than the other types and provide a basis for gene functional studies. Single marker analysis was conducted to associate specific marker to disease resistant traits. Five InDels from functional genes were identified to be significantly correlated to tomato spotted wilt virus (TSWV) infection and leaf spot, and these novel markers will be utilized to identify disease resistant genotype in breeding populations.
机译:花生病,例如番茄斑萎病病毒引起的叶斑病和青枯病,会大大降低产量和质量。标记辅助植物育种的应用需要开发和验证不同类型的DNA分子标记。世界各地的各个研究小组已鉴定出将近10,000种基于SSR的分子标记,但花生中的多态性不到14.5%,而只有6.4%被定位。低水平的多态性限制了标记辅助选择(MAS)在花生育种计划中的应用。据报道,在某些农作物中,插入/缺失(InDel)标记比SSR更具多态性。这项研究的目的是鉴定新型InDel标记并评估花生育种的潜在用途。从保守的功能基因序列中开发了48种InDel标记物,并在118种种质中进行了测试,这些种质涵盖了6种植物学类型的栽培花生,其中104种来自美国迷你核心。结果显示,InDel中有16个InDel标记是多态的,其多态信息含量(PIC)在0.017至0.660之间。就植物类型而言,事先知情同意书的变化范围为:凤尾草属变种为0.176,紫花变种为0.181,寻常型变种为0.306,水母变种为0.534,百草属变种为0.556,水田变种为0.660,这意味着水母变种。,peruviana变种和hirsuta变种。具有比其他类型更高的遗传多样性,并为基因功能研究提供了基础。进行单标记分析以将特定标记与抗病性状相关联。从功能基因中鉴定出五个InDel与番茄斑萎病毒(TSWV)感染和叶斑显着相关,这些新标记将用于鉴定育种种群的抗病基因型。

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