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Impact of Wild Loci on the Allergenic Potential of Cultivated Tomato Fruits

机译:野生基因座对栽培番茄果实致敏性的影响

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摘要

Tomato (Solanum lycopersicum) is one of the most extensively consumed vegetables but, unfortunately, it is also able to induce allergic reactions. In the past, it has been shown that the choice of tomato cultivar significantly influenced the allergic reaction of tomato allergic subjects. In this study we investigated the allergenic potential of the cultivated tomato line M82 and of two selected lines carrying small chromosome regions from the wild species Solanum pennellii (i.e. IL7-3 and IL12-4). We evaluated the positive interactions of IgEs of allergic subjects in order to investigate the different allergenic potential of the lines under investigation. We used proteomic analyses in order to identify putative tomato allergens. In addition, bioinformatic and transcriptomic approaches were applied in order to analyse the structure and the expression profiles of the identified allergen-encoding genes. These analyses demonstrated that fruits harvested from the two selected introgression lines harbour a different allergenic potential as those from the cultivated genotype M82. The different allergenicity found within the three lines was mostly due to differences in the IgE recognition of a polygalacturonase enzyme (46 kDa), one of the major tomato allergens, and of a pectin methylesterase (34 kDa); both the proteins were more immunoreactive in IL7-3 compared to IL12-4 and M82. The observed differences in the allergenic potential were mostly due to line-dependent translational control or post-translational modifications of the allergens. We demonstrated, for the first time, that the introgression from a wild species (S. pennellii) in the genomic background of a cultivated tomato line influences the allergenic properties of the fruits. Our findings could support the isolation of favorable wild loci promoting low allergenic potential in tomato.
机译:番茄(Solanum lycopersicum)是食用最广泛的蔬菜之一,但不幸的是,它也能够引起过敏反应。过去已经表明,番茄品种的选择显着影响番茄过敏对象的过敏反应。在这项研究中,我们调查了栽培的M82番茄系和两个选择的携带野生Pennellii野生植物(即IL7-3和IL12-4)小染色体区域的品系的致敏潜力。为了研究所研究品系的不同致敏潜力,我们评估了过敏性受试者的IgE的正向相互作用。我们使用蛋白质组学分析来鉴定推定的番茄过敏原。此外,应用生物信息学和转录组学方法来分析已鉴定的过敏原编码基因的结构和表达谱。这些分析表明,从两个选择的渗入系收获的果实具有与从栽培基因型M82收获的果实不同的致敏潜力。在这三个品系中发现的不同的致敏性主要是由于主要半乳糖变应原之一的聚半乳糖醛酸酶(46 kDa)和果胶甲基酯酶(34 kDa)在IgE识别上的差异所致。与IL12-4和M82相比,这两种蛋白在IL7-3中的免疫反应性更高。观察到的潜在致敏性差异主要归因于过敏原的株系依赖性翻译控制或翻译后修饰。我们首次证明了在栽培番茄品系的基因组背景下野生物种(S. pennellii)的渗入会影响果实的变应原特性。我们的发现可能支持分离有利的野生基因座,从而促进番茄的低致敏性。

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