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首页> 外文期刊>Scientia horticulturae >Mining and comparison of the genes encoding the key enzymes involved in sugar biosynthesis in apple, grape, and sweet orange.
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Mining and comparison of the genes encoding the key enzymes involved in sugar biosynthesis in apple, grape, and sweet orange.

机译:苹果,葡萄和甜橙中糖生物合成所涉及的关键酶编码基因的挖掘和比较。

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摘要

Fruit taste depends on the contents and types of soluble sugars and organic acids. The large-scale identification and comparison of genes involved in sugar biosynthesis in apple, grape, and sweet orange based on the genome and expressed sequence tag information have not been reported. In this study, we found that sorbitol-6-phosphate dehydrogenase (S6PDH) was one of the most important genes in sorbitol biosynthesis in apple leaf, and was decomposed by NAD+-dependent sorbitol dehydrogenase (NAD+SDH) in apple fruit. The high expression level of soluble acidic invertase (AIV) gene possibly caused the high soluble sugar content (i.e., glucose and fructose) in grape. The expression level of sucrose synthase (SUS) in grape and sweet orange was also significantly higher than that in apple. The results show that SUS was involved in the resynthesis of fructose and UDP-glucose into sucrose in grape and sweet orange. By contrast, sucrose was transported into a vacuole and decomposed into glucose and fructose by AIV. Thus, ADP-glucose pyrophosphorylase (AGP), granule-bound starch synthase (GBSS), isoamylase 1 (ISA1), and isoamylase 2 (ISA2) could be the key genes in starch biosynthesis, whereas alpha -amylase (AMY3), isoamylse 3 (ISA3), and pullulanase (PUL) could be the key genes in starch degradation in apple. This study provides new insight into the isolation and comparison of candidate genes involved in the sugar biosynthetic pathway among multiple plants.
机译:水果的味道取决于可溶性糖和有机酸的含量和类型。尚未报道基于基因组和表达的序列标签信息的苹果,葡萄和甜橙糖生物合成相关基因的大规模鉴定和比较。在这项研究中,我们发现山梨糖醇6-磷酸脱氢酶(S6PDH)是苹果叶片中山梨糖醇生物合成中最重要的基因之一,并且被NAD + 依赖性山梨糖醇脱氢酶(NAD <苹果果实中的sup> + SDH)。可溶性酸性转化酶(AIV)基因的高表达水平可能导致葡萄中的高可溶性糖含量(即葡萄糖和果糖)。葡萄和甜橙中的蔗糖合酶(SUS)的表达水平也明显高于苹果。结果表明,SUS参与了葡萄和甜橙中果糖和UDP-葡萄糖向蔗糖的再合成。相反,蔗糖被转运到液泡中并通过AIV分解成葡萄糖和果糖。因此,ADP-葡萄糖焦磷酸化酶(AGP),颗粒结合淀粉合酶(GBSS),异淀粉酶1(ISA1)和异淀粉酶2(ISA2)可能是淀粉生物合成的关键基因,而α-淀粉酶(AMY3),异淀粉酶3 (ISA3)和支链淀粉酶(PUL)可能是苹果淀粉降解的关键基因。这项研究为分离和比较参与多种植物糖生物合成途径的候选基因提供了新的见识。

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