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A Tonoplast Sugar Transporter Underlies a Sugar Accumulation QTL in Watermelon

机译:液泡糖转运蛋白是西瓜中糖分累积QTL的基础

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摘要

How sugar transporters regulate sugar accumulation in fruits is poorly understood and particularly so for species storing high-concentration Suc. Accumulation of soluble sugars in watermelon (Citrullus lanatus) fruit, a major quality trait, had been selected during domestication. Still, the molecular mechanisms controlling this quantitative trait are unknown. We resequenced 96 recombinant inbred lines, derived from crossing sweet and unsweet accessions, to narrow down the size of a previously described sugar content quantitative trait locus, which contains a putative Tonoplast Sugar Transporter gene (ClTST2). Molecular and biochemical analyses indicated that ClTST2 encodes a vacuolar membrane protein, whose expression is associated with tonoplast uptake and accumulation of sugars in watermelon fruit flesh cells. We measured fruit sugar content and resequenced the genomic region surrounding ClTST2 in 400 watermelon accessions and associated the most sugar-related significant single-nucleotide polymorphisms (SNPs) to the ClTST2 promoter. Large-scale population analyses strongly suggest increased expression of ClTST2 as a major molecular event in watermelon domestication associated with a selection sweep around the ClTST2 promoter. Further molecular analyses explored the binding of a sugar-induced transcription factor (SUSIWM1) to a sugar-responsive cis‐element within the ClTST2 promoter, which contains the quantitative trait locus (QTL) causal SNP. The functional characterization of ClTST2 and its expression regulation by SUSIWM1 provide novel tools to increase sugar sink potency in watermelon and possibly in other vegetable and fruit crops.
机译:糖转运蛋白如何调节水果中糖的积累知之甚少,尤其是对于存储高浓度Suc的物种而言。在驯化过程中已选择了西瓜(Citrullus lanatus)果实中的一种主要品质特征,即可溶性糖的积累。但是,控制这种定量性状的分子机制仍然未知。我们对96个重组自交系进行了重新测序,这些自交系来自甜和不甜的杂交品种,以缩小先前描述的糖含量定量性状基因座的大小,该基因座包含一个假定的Tonoplast糖转运蛋白基因(ClTST2)。分子和生化分析表明,ClTST2编码液泡膜蛋白,其表达与液泡膜吸收和西瓜果肉细胞中糖的积累有关。我们测量了水果糖含量,并对400个西瓜种中ClTST2周围的基因组区域进行了重新测序,并将与糖相关的最重要的显着单核苷酸多态性(SNP)与ClTST2启动子相关联。大规模的种群分析强烈表明,ClTST2表达的增加是西瓜驯化中的主要分子事件,与围绕ClTST2启动子的选择扫荡有关。进一步的分子分析探索了糖诱导的转录因子(SUSIWM1)与ClTST2启动子中糖反应性顺式元件的结合,该启动子包含定量性状基因座(QTL)因果SNP。 ClTST2的功能表征及其通过SUSIWM1调控的表达提供了新颖的工具来提高西瓜以及可能在其他蔬菜和水果作物中的糖吸收能力。

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