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Increased Sucrose in the Hypocotyls of Radish Sprouts Contributes to Nitrogen Deficiency-Induced Anthocyanin Accumulation

机译:萝卜豆芽下胚轴中蔗糖的增加有助于氮缺乏诱导花青素的积累

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摘要

Effects of nitrogen (N) deficiency and sucrose (Suc) addition on regulation of anthocyanin biosynthesis and their relationship were investigated in this study. Radish sprouts subjected to N deficiency had 50% higher anthocyanin accumulation than when grown in Hoagland solution (a nutrient medium with all macronutrients). The contents of endogenous soluble sugars (Suc, fructose, and glucose) in the hypocotyls were also markedly increased by N limitation, with Suc showing the highest increase. Inhibition of carbohydrate biosynthesis by addition of 3-(3,4-dichlorophenyl)-1,1-dimethylurea (DCMU) also eliminated N deficiency-induced anthocyanin accumulation. The latter was further supported by the expression of anthocyanin biosynthesis related genes and decreased activities of nitrate reductase in the presence of Suc. Together our results indicate that N deficiency-induced anthocyanin accumulation was, at least partly, dependent on the increase of the soluble sugar, especially Suc. This work is the first comprehensive study on relationship between N deficiency and sugar content on anthocyanin accumulation in the hypocotyls of radish sprouts.
机译:本研究探讨了氮(N)缺乏和蔗糖(Suc)添加对花色苷生物合成调控的影响及其关系。与在Hoagland溶液(一种具有所有大量营养素的营养培养基)中生长相比,遭受N缺乏的萝卜新芽的花青素积累高50%。下胚轴中的内源可溶性糖(Suc,果糖和葡萄糖)的含量也因N限制而显着增加,其中Suc的增加最大。通过添加3-(3,4-二氯苯基)-1,1-二甲基脲(DCMU)抑制碳水化合物的生物合成也消除了N缺乏引起的花色苷积累。花青素生物合成相关基因的表达和存在Suc时硝酸还原酶活性的降低进一步支持了后者。我们的研究结果共同表明,N缺乏引起的花色苷积累至少部分取决于可溶性糖,特别是Suc的增加。这项工作是第一个全面研究氮缺乏与糖含量对萝卜新芽下胚轴花色苷积累的关系的综合研究。

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