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首页> 外文期刊>Biological Trace Element Research >Lead (Pb)-Inhibited Radicle Emergence in Brassica campestris Involves Alterations in Starch-Metabolizing Enzymes
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Lead (Pb)-Inhibited Radicle Emergence in Brassica campestris Involves Alterations in Starch-Metabolizing Enzymes

机译:铅(Pb)抑制的甘蓝型油菜胚根出现涉及淀粉代谢酶的变化。

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Lead (Pb) is a toxic heavy metal released into the natural environment and known to cause oxidative damage and alter antioxidant mechanism in plants. However, not much is known about the interference of Pb with the biochemical processes and carbohydrate metabolism during seed germination. We, therefore, investigated the effect of Pb (50–500 μM) upon biochemical alterations in germinating seeds (at 24-h stage) of Brassica campestris L. Pb treatment significantly enhanced protein and carbohydrate contents that increased by ~43% and 200%, respectively, at 500-μM Pb over control. In contrast, the activities of starch/carbohydrate-metabolizing enzymes—α-amylases, β-amylases, acid invertases, and acid phosphatases—decreased by ~54%, 60%, 74%, and 52%, respectively, over control. Activities of peroxidases and polyphenol oxidases, involved in stress acclimation, however, increased by ~1.2- to 3.9-folds and 0.4- to 1.4-folds upon 50–500-μM Pb treatment. Pb enhanced oxidizing ability by 10 to 16.7 times over control suggesting interference with emerging root’s oxidizing capacity. The study concludes that Pb exposure inhibits radicle emergence from B. campestris by interfering with the biochemical processes linked to protein and starch metabolism.
机译:铅(Pb)是一种释放到自然环境中的有毒重金属,已知会导致植物氧化氧化并改变其抗氧化机制。然而,关于种子发芽过程中铅对生化过程和碳水化合物代谢的干扰知之甚少。因此,我们研究了铅(50–500μM)对甘蓝型油菜发芽种子生化变化(24小时阶段)的影响。铅处理显着增强了蛋白质和碳水化合物含量,分别增加了约43%和200%分别以500μMPb的过量控制。相反,淀粉/碳水化合物代谢酶(α-淀粉酶,β-淀粉酶,酸转化酶和酸性磷酸酶)的活性分别比对照降低了约54%,60%,74%和52%。在50-500μM的Pb处理下,参与压力驯化的过氧化物酶和多酚氧化酶的活性增加了约1.2-至3.9倍和0.4-至1.4倍。铅的氧化能力比对照提高了10到16.7倍,表明对新兴根的氧化能力产生了干扰。该研究的结论是,铅的暴露通过干扰与蛋白质和淀粉代谢有关的生化过程而抑制了野菜芽菜的胚根出现。

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