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Comparative Transcriptome Analysis of Cultivated and Wild Watermelon during Fruit Development

机译:果实发育过程中栽培西瓜与野生西瓜的转录组比较分析

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摘要

Watermelon [Citrullus lanatus (Thunb.) Matsum. & Nakai] is an important vegetable crop world-wide. Watermelon fruit quality is a complex trait determined by various factors such as sugar content, flesh color and flesh texture. Fruit quality and developmental process of cultivated and wild watermelon are highly different. To systematically understand the molecular basis of these differences, we compared transcriptome profiles of fruit tissues of cultivated watermelon 97103 and wild watermelon PI296341-FR. We identified 2,452, 826 and 322 differentially expressed genes in cultivated flesh, cultivated mesocarp and wild flesh, respectively, during fruit development. Gene ontology enrichment analysis of these genes indicated that biological processes and metabolic pathways related to fruit quality such as sweetness and flavor were significantly changed only in the flesh of 97103 during fruit development, while those related to abiotic stress response were changed mainly in the flesh of PI296341-FR. Our comparative transcriptome profiling analysis identified critical genes potentially involved in controlling fruit quality traits including α-galactosidase, invertase, UDP-galactose/glucose pyrophosphorylase and sugar transporter genes involved in the determination of fruit sugar content, phytoene synthase, β-carotene hydroxylase, 9-cis-epoxycarotenoid dioxygenase and carotenoid cleavage dioxygenase genes involved in carotenoid metabolism, and 4-coumarate:coenzyme A ligase, cellulose synthase, pectinesterase, pectinesterase inhibitor, polygalacturonase inhibitor and α-mannosidase genes involved in the regulation of flesh texture. In addition, we found that genes in the ethylene biosynthesis and signaling pathway including ACC oxidase, ethylene receptor and ethylene responsive factor showed highly ripening-associated expression patterns, indicating a possible role of ethylene in fruit development and ripening of watermelon, a non-climacteric fruit. Our analysis provides novel insights into watermelon fruit quality and ripening biology. Furthermore, the comparative expression profile data we developed provides a valuable resource to accelerate functional studies in watermelon and facilitate watermelon crop improvement.
机译:西瓜[Citrullus lanatus(Thunb。)Matsum。 &Nakai]是全球重要的蔬菜作物。西瓜的果实品质是一个复杂的特征,取决于各种因素,例如糖含量,果肉颜色和果肉质地。栽培和野生西瓜的果实品质和发育过程存在很大差异。为了系统地了解这些差异的分子基础,我们比较了栽培西瓜97103和野生西瓜PI296341-FR的果实组织的转录组概况。我们在果实发育过程中分别鉴定出栽培肉,栽培中果皮和野生肉中的2,452、826和322个差异表达基因。这些基因的基因本体富集分析表明,与果实品质有关的生物学过程和代谢途径(如甜度和风味)仅在果实发育过程中的97103肉中发生了显着变化,而与非生物胁迫响应有关的生物学过程和代谢途径则主要在果皮中发生了变化。 PI296341-FR。我们的比较转录组分析分析确定了可能与控制水果品质性状有关的关键基因,包括α-半乳糖苷酶,转化酶,UDP-半乳糖/葡萄糖焦磷酸化酶和参与确定水果糖含量的糖转运蛋白基因,八氢番茄红素合酶,β-胡萝卜素羟化酶,9参与类胡萝卜素代谢的β-顺式-环氧类胡萝卜素双加氧酶和类胡萝卜素裂解双加氧酶基因,以及4-香豆酸酯:辅酶A连接酶,纤维素合酶,果胶酯酶,果胶酯酶抑制剂,聚半乳糖醛酸酶抑制剂和α-甘露糖苷酶基因参与肉的质地调节。此外,我们发现乙烯生物合成和信号传导途径中的基因(包括ACC氧化酶,乙烯受体和乙烯反应因子)显示出高度成熟相关的表达模式,表明乙烯可能在水果开发和西瓜成熟(非更年期)中发挥作用。水果。我们的分析为西瓜果实品质和成熟生物学提供了新颖的见解。此外,我们开发的比较表达谱数据为加速西瓜的功能研究并促进西瓜作物的改良提供了宝贵的资源。

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