INRA, UMR AGAP Amélioration Génétique et Adaptation des Plantes, 2 Place Viala, F-34060 Montpellier, France.
Plant Sci. 2013 Jun;207:18-24. doi: 10.1016/j.plantsci.2013.02.011. Epub 2013 Mar 1.
Expression quantitative locus (eQTL) mapping was proposed as a valuable approach to dissect the genetic basis of transcript variation, one of the prime causes of natural phenotypic variation. Few eQTL studies have been performed on woody species due to the difficulty in sample homogenisation. Based on previous knowledge on berry colour formation, we performed eQTL mapping in field experimentation of grapevine with appropriate sampling criteria. The transcript level of VvUFGT, a key enzyme for anthocyanin synthesis was measured by real-time qRT-PCR in grape berry on a 191-individual pseudo-F1 progeny, derived from a cross between Syrah and Grenache cultivars. Two eQTLs were identified: one, explaining 20%, of genotypic variance and co-locating with VvUFGT itself (cis-eQTL), was principally due to the contrast between Grenache alleles; the other, explaining 35% of genotypic variance, was a trans-eQTL due to Syrah allelic contrast and co-located with VvMYBAs, transcription factors known to activate the expression of VvUFGT. This study assessed and validated the feasibility of eQTL mapping approach in grapevine and offered insights and new hypotheses on grape skin colour formation.
表达数量性状基因座 (eQTL) 作图被提议作为剖析转录变异遗传基础的一种有价值的方法,转录变异是自然表型变异的主要原因之一。由于样本均一化的难度,木质物种的 eQTL 研究很少。基于对浆果颜色形成的先前知识,我们根据适当的采样标准,在葡萄田间实验中进行了 eQTL 作图。通过对来自 Syrah 和 Grenache 品种杂交的 191 个个体拟 F1 后代的葡萄浆果进行实时 qRT-PCR 测量,测定了 VvUFGT(花青素合成的关键酶)的转录水平。鉴定出两个 eQTL:一个解释 20%的基因型方差,与 VvUFGT 本身(顺式 eQTL)共定位,主要是由于 Grenache 等位基因的差异;另一个解释 35%的基因型方差,是由于 Syrah 等位基因差异的反式 eQTL,与已知激活 VvUFGT 表达的转录因子 VvMYBAs 共定位。本研究评估并验证了在葡萄中进行 eQTL 作图方法的可行性,并为葡萄皮颜色形成提供了新的见解和假设。