首页> 外文期刊>Journal of Experimental Botany >Down-regulation of sorbitol dehydrogenase and up-regulation of sucrose synthase in shoot tips of the transgenic apple trees with decreased sorbitol synthesis.
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Down-regulation of sorbitol dehydrogenase and up-regulation of sucrose synthase in shoot tips of the transgenic apple trees with decreased sorbitol synthesis.

机译:在山梨糖醇合成减少的情况下,转基因苹果树梢中山梨糖醇脱氢酶的下调和蔗糖合酶的上调。

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摘要

Both sorbitol and sucrose are translocated to, and utilized in, sink tissues of apple (Malus domestica). Considering that antisense suppression of aldose 6-phosphate reductase resulted in lower concentrations of sorbitol and higher concentrations of sucrose in source leaves without altering the vegetative growth of apple trees, it was hypothesized that sorbitol metabolism is down-regulated and sucrose metabolism is up-regulated in shoot tips of the transgenic plants. Carbohydrate measurements indicated that sorbitol concentration was lower whereas sucrose concentration was higher in the shoot tips of transgenic apple plants with decreased sorbitol synthesis compared with the untransformed control. However, the shoot relative growth rate was not altered in the transgenic plants. Sorbitol dehydrogenase (SDH) activity was decreased; acid invertase activity and neutral invertase activity remained the same, whereas sucrose synthase (SUSY) activity was increased in shoot tips of the transgenic plants. The SDH transcript level was lower whereas the SUSY transcript level was higher in shoot tips of the transgenic plants. SDH activity and SDH transcript level were specifically stimulated by exogenous sorbitol fed to the shoot tips via the transpiration stream but were specifically inhibited by sucrose. SUSY activity and SUSY transcript level were dramatically enhanced by sucrose, but decreased by glucose and fructose. Neither acid invertase nor neutral invertase activity responded to sucrose, glucose, fructose, or any other sugars tested. It is concluded that sorbitol dehydrogenase is down-regulated, whereas sucrose synthase is up-regulated in shoot tips of the transgenic apple trees with decreased sorbitol synthesis, leading to homeostasis of vegetative growth. Sorbitol and sucrose act as signal molecules to modulate the expression and activities of sorbitol dehydrogenase and sucrose synthase, both of which play an important role in determining the sink strength of apple shoot tips..
机译:山梨糖醇和蔗糖都易位到苹果(Malus domestica)的下沉组织中并在其中使用。考虑到醛糖6-磷酸还原酶的反义抑制导致源叶中较低的山梨醇浓度和较高的蔗糖浓度,而不会改变苹果树的营养生长,因此假设山梨醇代谢被下调而蔗糖代谢被上调转基因植物的茎尖。碳水化合物的测定表明,与未转化的对照相比,在具有降低的山梨醇合成的转基因苹果植物的茎尖中,山梨醇浓度较低,而蔗糖浓度较高。然而,在转基因植物中,芽的相对生长速率没有改变。山梨糖醇脱氢酶(SDH)活性降低;酸性转化酶活性和中性转化酶活性保持不变,而蔗糖合酶(SUSY)活性在转基因植物的茎尖增加。在转基因植物的茎尖中,SDH转录物水平较低,而SUSY转录物水平较高。 SDH活性和SDH转录水平由通过蒸腾流进芽梢的外源性山梨糖醇特异性刺激,但受到蔗糖特异性抑制。蔗糖显着提高了SUSY活性和SUSY转录水平,但葡萄糖和果糖却降低了SUSY活性和SUSY转录水平。酸性转化酶或中性转化酶活性均未对蔗糖,葡萄糖,果糖或任何其他测试的糖产生响应。结论是山梨糖醇脱氢酶被下调,而蔗糖合酶在转基因苹果树的枝梢中被上调,而山梨糖醇的合成减少,导致营养生长的动态平衡。山梨糖醇和蔗糖是信号分子,可调节山梨糖醇脱氢酶和蔗糖合酶的表达和活性,两者在确定苹果梢的下沉强度中起重要作用。

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