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Substrate Utilization by Suspension Cultures and Somatic Embryos of Daucus carota L. Measured by 13C NMR

机译:悬浮培养和胡萝卜的体细胞胚对基质的利用。13CNMR测定

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摘要

The uptake and utilization of sucrose by embryogenic suspension cultures of carrot (Daucus carota L.) growing in the presence of 2,4-D and by somatic embryos derived from these cultures was monitored using 13C nuclear magnetic resonance. The exogeneously supplied sucrose was completely hydrolyzed before cell entry; glucose was taken up preferentially when the cells were cultured in the presence of 2,4-D, while glucose and fructose were utilized at similar rates by somatic embryos in the absence of 2,4-D. Both suspension cells and somatic embryos accumulated high intracellular levels predominantly of glucose and sucrose, the latter being resynthesized intracellularly from the constitutive hexoses. Initially, fructose was converted mainly into glucose and sucrose rather than being catabolized directly through glycolysis or the pentose phosphate pathway. Carbohydrate supply that exceeded cellular demand resulted in intracellular accumulation of mono- or disaccharides. The capacity of cultured carrot cells to produce somatic embryos appeared to be positively correlated with high intracellular levels of glucose.
机译:使用 13 C核磁监测在2,4-D存在下生长的胡萝卜(Daucus carota L.)的胚发生悬浮培养以及这些培养物中衍生的体细胞胚对蔗糖的吸收和利用谐振。外源供应的蔗糖在进入细胞之前已完全水解;当在2,4-D存在下培养细胞时,葡萄糖优先吸收,而在没有2,4-D的情况下,体细胞胚以相似的速率利用葡萄糖和果糖。悬浮细胞和体细胞胚都积累了较高的细胞内水平,主要是葡萄糖和蔗糖,后者是从组成型己糖在细胞内重新合成的。最初,果糖主要转化为葡萄糖和蔗糖,而不是通过糖酵解或戊糖磷酸途径直接分解代谢。超出细胞需求的碳水化合物供应导致单糖或双糖在细胞内的积累。培养的胡萝卜细胞产生体细胞胚的能力似乎与高细胞内葡萄糖水平呈正相关。

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