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首页> 外文期刊>Acta Physiologiae Plantarum >Cloning and expression of genes related to the sucrose-metabolizing enzymes and carbohydrate changes in peach
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Cloning and expression of genes related to the sucrose-metabolizing enzymes and carbohydrate changes in peach

机译:桃中蔗糖代谢酶和碳水化合物变化相关基因的克隆与表达

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摘要

To shed light on the relationship between sucrose metabolism and expression of genes related to sucrose-metabolizing enzymes, six genes encoding sucrose-metabolizing enzymes were isolated, and the levels of four main carbohydrates and related enzyme activities as well as the expression of these six genes were determined in fruits, leaves and phloem-enriched fraction throughout peach fruit development. Sucrose content in mature fruit ranked first followed by glucose, fructose and sorbitol in that order, while sorbitol was the highest and sucrose lowest in phloem-enriched fraction and leaves. Glucose and fructose had similar change patterns throughout fruit development. Cloning results reveal that the nucleotide sequences of the six genes have high similarity to corresponding genes isolated from other plants. In addition, the expression of these genes and the levels of related enzyme activities varied with tissue and stage of fruit development, suggesting a complexity in relationships between carbohydrates, enzymes activities and related gene expression. Sucrose phosphate synthase maybe a key enzyme involved in sucrose synthesis while sucrose synthase may mainly be responsible for sucrose synthesis in peach fruits at later stages of development. Further studies are needed to genetically and physiologically characterize these genes and enzymes in peach and to gain a better understanding of their functions and relationship with carbohydrate metabolism.
机译:为了阐明蔗糖代谢与蔗糖代谢酶相关基因的表达之间的关系,分离了六个编码蔗糖代谢酶的基因,并分析了四种主要碳水化合物的水平和相关酶的活性以及这六个基因的表达。在整个桃果实发育过程中都在果实,叶片和韧皮部富集部分中测定了含量。成熟果实中的蔗糖含量排在第一位,其次是葡萄糖,果糖和山梨糖醇,而富含韧皮部和叶的山梨糖醇含量最高而蔗糖最低。葡萄糖和果糖在整个果实发育过程中具有相似的变化模式。克隆结果表明,这六个基因的核苷酸序列与从其他植物中分离的相应基因具有高度相似性。另外,这些基因的表达和相关酶活性的水平随组织和果实发育的阶段而变化,这表明碳水化合物,酶活性和相关基因表达之间的关系很复杂。蔗糖磷酸合酶可能是参与蔗糖合成的关键酶,而蔗糖合酶可能主要负责桃果实发育后期的蔗糖合成。为了对桃中的这些基因和酶进行遗传和生理学表征,并更好地了解它们的功能以及与碳水化合物代谢的关系,还需要进一步的研究。

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