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High resolution mapping of a fruit firmness-related QTL in tomato reveals epistatic interactions associated with a complex combinatorial locus

机译:番茄中与果实硬度相关的QTL的高分辨率图谱揭示了与复杂组合位点相关的上位相互作用

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摘要

Fruit firmness in tomato (Solanum lycopersicum) is determined by a number of factors including cell wall structure, turgor, and cuticle properties. Firmness is a complex polygenic trait involving the coregulation of many genes and has proved especially challenging to unravel. In this study, a quantitative trait locus (QTL) for fruit firmness was mapped to tomato chromosome 2 using the Zamir Solanum pennellii interspecific introgression lines (ILs) and fine-mapped in a population consisting of 7,500 F2 and F3 lines from IL 2-3 and IL 2-4. This firmness QTL contained five distinct subpeaks, Firs.p.QTL2.1 to Firs.p.QTL2.5, and an effect on a distal region of IL 2-4 that was nonoverlapping with IL 2-3. All these effects were located within an 8.6-Mb region. Using genetic markers, each subpeak within this combinatorial locus was mapped to a physical location within the genome, and an ethylene response factor (ERF) underlying Firs.p.QTL2.2 and a region containing three pectin methylesterase (PME) genes underlying Firs.p.QTL2.5 were nominated as QTL candidate genes. Statistical models used to explain the observed variability between lines indicated that these candidates and the nonoverlapping portion of IL 2-4 were sufficient to account for the majority of the fruit firmness effects. Quantitative reverse transcription-polymerase chain reaction was used to quantify the expression of each candidate gene. ERF showed increased expression associated with soft fruit texture in the mapping population. In contrast, PME expression was tightly linked with firm fruit texture. Analysis of a range of recombinant lines revealed evidence for an epistatic interaction that was associated with this combinatorial locus.
机译:番茄(Solanum lycopersicum)的果实硬度取决于许多因素,包括细胞壁结构,膨松度和表皮特性。坚固性是一个复杂的多基因性状,涉及许多基因的调控,并且证明解开具有挑战性。在这项研究中,使用Zamir Solanum pennellii种间基因渗入系(IL)将果实硬度的定量性状基因座(QTL)定位到番茄2号染色体上,并精细映射到包含来自IL 2-3的7,500条F2和F3系的种群和IL 2-4。牢固性QTL包含五个不同的亚峰,即Firs.p.QTL2.1至Firs.p.QTL2.5,以及对IL 2-4远端区域的影响,该区域不与IL 2-3重叠。所有这些影响都位于8.6 Mb的区域内。使用遗传标记,将该组合基因座内的每个亚峰定位到基因组内的物理位置,以及位于Firs.p.QTL2.2下方的乙烯反应因子(ERF)和位于Firs下方的包含三个果胶甲基酯酶(PME)基因的区域。 p.QTL2.5被提名为QTL候选基因。用于解释观察到的品系间变异性的统计模型表明,这些候选品和IL 2-4的不重叠部分足以说明大多数水果硬度影响。定量逆转录-聚合酶链反应用于定量每个候选基因的表达。 ERF在作图群体中显示出与软果质地相关的表达增加。相反,PME的表达与牢固的果实质地紧密相关。对一系列重组品系的分析揭示了与该组合基因座相关的上位相互作用的证据。

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