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Detection of QTL for yield-related traits using recombinant inbred lines derived from exotic and elite US Western Shipping melon germplasm

机译:利用源自美国西部航运甜瓜种质的重组近交系检测与产量相关性状的QTL

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摘要

The inheritance of yield-related traits in melon (Cucumis melo L.; 2n = 2x = 24) is poorly understood, and the mapping of quantitative trait loci (QTL) for such traits has not been reported. Therefore, a set of 81 recombinant inbred lines (RIL) was developed from a cross between the monoecious, highly branched line USDA 846-1 and a standard vining, andromonoecious cultivar, ‘Top Mark’. The RIL, parental lines, and three control cultivars (‘Esteem’, ‘Sol Dorado’, and ‘Hales Best Jumbo’) were grown at Hancock, WI and El Centro, CA in 2002, and evaluated for primary branch number (PB), fruit number per plant (FN), fruit weight per plant (FW), average weight per fruit (AWF), and percentage of mature fruit per plot (PMF). A 190-point genetic map was constructed using 114 RAPD, 43 SSR, 32 AFLP markers, and one phenotypic trait. Fifteen linkage groups spanned 1,116 cM with a mean marker interval of 5.9 cM. A total of 37 QTL were detected in both locations (PB = 6, FN = 9, FW = 12, AWF = 5, and PMF = 5). QTL analyses revealed four location-independent factors for PB (pb1.1, pb1.2, pb2.3, and pb10.5), five for FN (fn1.1, fn1.2, fn1.3, fn2.4, and fn8.8), four for FW (fw5.8, fw6.10, fw8.11, and fw8.12), two for AWF (awf1.3 and awf8.5), and one for PMF (pmf10.4). The significant (P ≤ 0.05) positive phenotypic correlations observed among PB, FN, and FW, and negative
机译:对甜瓜(Cucumis melo L.; 2n = 2x = 24)中与产量相关的性状的遗传了解甚少,并且尚未报道这些性状的数量性状基因座(QTL)的作图。因此,从单性,高度分支的USDA 846-1系与标准的酿酒雄性品种“ Top Mark”之间的杂交中,开发出了81种重组自交系。 RIL,亲本系和三个对照品种(“ Esteem”,“ Sol Dorado”和“ Hales Best Jumbo”)于2002年在威斯康星州汉考克和加利福尼亚州埃尔森特罗市种植,并评估了一级分支编号(PB) ,每株水果的数量(FN),每株水果的重量(FW),每株水果的平均重量(AWF)和每块地成熟水果的百分比(PMF)。使用114 RAPD,43个SSR,32个AFLP标记和一个表型性状构建了190点遗传图谱。 15个连锁组的跨度为1,116 cM,平均标记间隔为5.9 cM。在两个位置(PB = 6,FN = 9,FW = 12,AWF = 5和PMF = 5)中总共检测到37个QTL。 QTL分析揭示了PB的四个位置无关因素(pb1.1,pb1.2,pb2.3和pb10.5),五个FN的位置独立因素(fn1.1,fn1.2,fn1.3,fn2.4和fn8.8),四个用于FW(fw5.8,fw6.10,fw8.11和fw8.12),两个用于AWF(awf1.3和awf8.5),一个用于PMF(pmf10.4)。在PB,FN和FW之间观察到显着(P≤0.05)的正表型相关性,而在阴性之间

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  • 来源
    《Theoretical and Applied Genetics》 |2007年第7期|1185-1201|共17页
  • 作者单位

    US Department of Agriculture Agricultural Research Service Vegetable Crops Unit Department of Horticulture University of Wisconsin 1575 Linden Dr. Madison WI 53706 USA;

    US Department of Agriculture Agricultural Research Service Vegetable Crops Unit Department of Horticulture University of Wisconsin 1575 Linden Dr. Madison WI 53706 USA;

    US Department of Agriculture Agricultural Research Service Agricultural Research Station 1636 East Alisal Salinas CA 93905 USA;

    Department of Life Sciences Dongguk University Seoul 100-715 Republic of Korea;

    US Department of Agriculture Agricultural Research Service Vegetable Crops Unit Department of Horticulture University of Wisconsin 1575 Linden Dr. Madison WI 53706 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cucumis melo; Best linear unbiased prediction (BLUP); Best linear unbiased estimation (BLUE); Composite interval mapping; Epistasis; Quantitative trait loci;

    机译:黄瓜;最佳线性无偏预测(BLUP);最佳线性无偏估计(BLUE);复合区间作图;表皮消散;数量性状位点;

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