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Locus Interactions Underlie Seed Yield In Soybeans Resistant to Heterodera glycines

机译:基因座相互作用是大豆抗杂种优势甘氨酸的种子产量的基础。

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In soybean (Glycine max L. Merr.) combining resistance to cyst nematode (SCN; Heterodera glycines I.) with high seed yieldremains problematic. Molecular markers linked to quantitative trait loci (QTL) have not provided a solution. Sets of markers describing a collection of favorable alleles (linkats) may assist plant breeders seeking to combine both traits. The objective of this analysis was to identify linkats in genomic regions underlying seed yield and root SCN resistance QTL. Used were groups of cultivars selected from a single recombinant inbred (RIL) population derived from 'Essex' by 'Forrest' (ExF). The yield was measured at four locations. SCN resistance was determined in greenhouse assays. The mean seed yield was used to define 3 groups (each n = 30), high, medium and low. SCN resistance formed 2 groups (SCN resistant (n = 21) and SCN susceptible (n = 69)). Microsatellite markers (213) alleles were compared with seed yield and root SCN (Hetrodera glycines) resistance using mean analysis. The number, size and position of potential linkats were determined. Loci, genomic regions and linkats associated with seed yield were identified on linkage group (LG) K and with root resistance to SCN e on LG E, G, and D1b+W. A method to identify co-localized genomic regions is presented.
机译:在大豆(Glycine max L. Merr。)中,对囊肿线虫(SCN;异型异型甘氨酸I.)的抗性与高种子产量的结合仍然存在问题。与数量性状基因座(QTL)相关的分子标记尚未提供解决方案。描述有利等位基因(连锁)集合的标记集可以帮助寻求将两种性状结合起来的植物育种者。这项分析的目的是确定基因组区域中种子产量和根部SCN抗性QTL的连锁。使用的是从“ Forrest”(ExF)衍生自“ Essex”的单个重组近交(RIL)群体中选择的栽培品种组。在四个位置测量产量。在温室试验中确定了SCN抗性。平均种子产量用于定义高,中和低3组(每组n = 30)。抗SCN分为2组(抗SCN(n = 21)和易感SCN(n = 69))。使用均值分析比较微卫星标记(213)等位基因与种子产量和根SCN(Hetrodera甘氨酸)抗性。确定了潜在连接的数量,大小和位置。在连锁群(LG)K上鉴定了与种子产量相关的基因座,基因组区域和连锁,并且在LG E,G和D1b + W上对SCN e具有根抗性。提出了一种识别共定位基因组区域的方法。

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