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Assessment of Sugar Components and Genes Involved in the Regulation of Sucrose Accumulation in Peach Fruit

机译:桃果实中蔗糖积累调控糖成分和基因的评估

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Soluble sugar contents in mature fruits of 45 peach accessions were quantified using gas chromatography analysis. Sucrose is the predominant sugar in mature fruit, followed by glucose and fructose, which have similar concentrations. Overall, sucrose metabolism and accumulation are crucial determinants of sugar content in peach fruit, and there is a wide range of sucrose concentrations among peach genotypes. To understand the mechanisms regulating sucrose accumulation in peach fruit, expression profiles of genes involved in sucrose metabolism and transport were compared among four genotypes. Two sucrose-cleaving enzyme genes (SUS4 and NINV8), one gene involved in sucrose resynthesis (SPS3), and three sugar transporter genes (SUT2, SUT4, and TMT2) were prevalently expressed in peach fruit, and their expression levels are significantly correlated with sucrose accumulation. In contrast, the VAINV genes responsible for sucrose cleavage in the vacuole were weakly expressed in mature fruit, suggesting that the sucrose-cleaving reaction is not active in the vacuole of sink cells of mature peach fruit. This study suggests that sucrose accumulation in peach fruit involves the coordinated interaction of genes related to sucrose cleavage, resynthesis, and transport, which could be helpful for future peach breeding.
机译:使用气相色谱分析法定量了45个桃种成熟果实中的可溶性糖含量。蔗糖是成熟果实中的主要糖,其次是葡萄糖和果糖,其浓度相似。总体而言,蔗糖的代谢和积累是桃果实中糖含量的关键决定因素,桃基因型之间的蔗糖浓度范围很广。为了了解调节桃果实中蔗糖积累的机制,比较了四种基因型中涉及蔗糖代谢和转运的基因的表达谱。在桃果实中普遍表达了两个蔗糖裂解酶基因(SUS4和NINV8),一个参与蔗糖再合成的基因(SPS3)和三个糖转运蛋白基因(SUT2,SUT4和TMT2),它们的表达水平与桃果显着相关。蔗糖积累。相反,负责液泡中蔗糖裂解的VAINV基因在成熟果实中弱表达,表明蔗糖裂解反应在成熟桃果实的沉没细胞液泡中不活跃。这项研究表明,桃果实中的蔗糖积累涉及与蔗糖裂解,再合成和转运相关的基因之间的协调相互作用,这可能对将来的桃育种有帮助。

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