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Association mapping reveals the genetic architecture of tomato response to water deficit: focus on major fruit quality traits

机译:关联图揭示了番茄对水分缺乏的响应的遗传结构:关注主要的水果品质性状

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摘要

Water scarcity constitutes a crucial constraint for agriculture productivity. High-throughput approaches in model plant species identified hundreds of genes potentially involved in survival under drought, but few having beneficial effects on quality and yield. Nonetheless, controlled water deficit may improve fruit quality through higher concentration of flavor compounds. The underlying genetic determinants are still poorly known. In this study, we phenotyped 141 highly diverse small fruit tomato accessions for 27 traits under two contrasting watering conditions. A subset of 55 accessions exhibited increased metabolite contents and maintained yield under water deficit. Using 6100 single nucleotide polymorphisms (SNPs), association mapping revealed 31, 41, and 44 quantitative trait loci (QTLs) under drought, control, and both conditions, respectively. Twenty-five additional QTLs were interactive between conditions, emphasizing the interest in accounting for QTLs by watering regime interactions in fruit quality improvement. Combining our results with the loci previously identified in a biparental progeny resulted in 11 common QTLs and contributed to a first detailed characterization of the genetic determinants of response to water deficit in tomato. Major QTLs for fruit quality traits were dissected and candidate genes were proposed using expression and polymorphism data. The outcomes provide a basis for fruit quality improvement under deficit irrigation while limiting yield losses.
机译:缺水构成了农业生产力的关键制约因素。模型植物物种中的高通量方法鉴定了数百种可能在干旱下存活的基因,但很少对品质和产量产生有益影响。但是,控制水分亏缺可以通过提高风味化合物的浓度来改善果实品质。潜在的遗传决定因素仍然知之甚少。在这项研究中,我们在两种不同的浇水条件下对141个高度多样化的小果实番茄种的27个性状进行了表型分析。 55个种质的一个子集表现出增加的代谢物含量并在缺水情况下保持产量。使用6100个单核苷酸多态性(SNP),关联图谱分别揭示了干旱,对照和两种条件下的31、41和44个数量性状基因座(QTL)。 25个其他QTL在条件之间相互影响,强调了通过浇水制度相互作用改善果实品质来考虑QTL的兴趣。将我们的结果与先前在双亲后代中鉴定出的基因座相结合,产生了11个常见的QTL,并首次对番茄对水分亏缺的遗传决定因素进行了详细的表征。剖析了主要的水果品质性状QTL,并使用表达和多态性数据提出了候选基因。这些结果为限制灌溉条件下改善果实质量同时限制产量损失提供了基础。

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