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The inhibition of polymerization of glucose in carbohydrate under Cu stress in Vigna radiata

机译:Vigna radiata对Cu胁迫下碳水化合物中葡萄糖聚合的抑制作用。

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This study was planned to explore the e ffect of Cu on polymerization of glucose into carbohydrate under Cu stress in seedlings of 15 day old Vigna radiata in relation with photosynthetic pigments. Copper is an important trace metal in carbohydrate metabolism, it e ffects on the sugar contents when in excess. The interaction of Cu with photo-inhibitory and sugar metabolism showed a direct relation in between carbohydrate metabolism and photosynthesis. A decrease in glucose contents may be attributed with Cu toxicity which inhibits the fixation of CO2 that in turns related with formation of first organic complex. A drastic decrease in carbohydrate contents may be related with Cu interference in polymerization of glucose into carbohydrates. Relative growth rate (RGR) and leaf mass ratio (LMR) of stressed plants were significantly lower than that of control plants. Copper was shown to restrain the growth of the seedlings as it is most important immobile micronutrient that inhibits new root growth. A radical disorder in soluble reducing and non reducing sugars like, glucose, sucrose, total soluble sugars and carbohydrate with decrease in chloroplast pigments can be associated with reduction in leaf photosynthesis and also growth reduction is more likely due to a reduction in whole plant leaf area. Reduced leaf expansion with reduced photosynthetic activity may be related with fewer K contents in seedlings which play a crucial role in leaf expansion.
机译:计划进行这项研究,以探讨铜对15日龄Vigna radiata幼苗中铜与光合色素相关的葡萄糖聚合成葡萄糖的影响。铜是碳水化合物代谢中的重要微量金属,过量时会影响糖含量。 Cu与光抑制和糖代谢的相互作用表明碳水化合物代谢与光合作用之间存在直接关系。葡萄糖含量的下降可归因于铜的毒性,其抑制了CO2的固定,而CO2的固定又与第一有机配合物的形成有关。碳水化合物含量的急剧下降可能与铜干扰葡萄糖聚合成碳水化合物的过程有关。胁迫植物的相对生长率(RGR)和叶质量比(LMR)显着低于对照植物。铜被证明可以抑制幼苗的生长,因为铜是抑制新根生长的最重要的固定微量营养素。可溶性还原糖和非还原糖(如葡萄糖,蔗糖,总可溶性糖和碳水化合物)中叶绿体色素减少的根本紊乱可能与叶片光合作用的降低有关,而且由于整个植物叶片面积的减少,生长减少的可能性更大。光合活性降低而叶片膨胀减少可能与幼苗中钾含量降低有关,后者在叶片膨胀中起关键作用。

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