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首页> 外文期刊>Biological Trace Element Research >Toxic Effect of Nickel (Ni) on Growth and Metabolism in Germinating Seeds of Sunflower (Helianthus annuus L.)
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Toxic Effect of Nickel (Ni) on Growth and Metabolism in Germinating Seeds of Sunflower (Helianthus annuus L.)

机译:镍(Ni)对向日葵(Helianthus annuus L.)萌发种子生长和代谢的毒理作用

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To assess the toxic effect of nickel (Ni) on the growth and some key metabolic processes in sunflower, varying levels of Ni as Ni(NO3)2 up to 60 mg L−1 were applied once to sunflower cultivars SF-187 and Hysun-33 at sowing time in sand culture. An increase in Ni in the growth medium adversely affected growth parameters, sugar concentration (both reducing and non-reducing), as well as the activities of α-amylase and protease. It also slowed down mobilization of stored proteins and amino acids in the germinating seeds. However, an increase in the activities of α-amylase and protease was observed over time from 24 to 120 h after sowing. Cultivar Hysun-33 showed better performance than SF-187 in the presence of excess Ni. Overall, Ni-induced reduction in germination of sunflower seed appeared to be due to disturbance in biochemical metabolism as the availability of sugars for the synthesis of metabolic energy as well as necessary amino acids for the synthesis of proteins and enzymes essential for the growing embryo are generally reduced due to suppression in α-amylase and protease activities.
机译:为了评估镍(Ni)对向日葵生长和某些关键代谢过程的毒性作用,将不同水平的Ni作为Ni(NO 3 2 进行调节,直至60 mg在沙培播种时,将L −1 一次施用于向日葵品种SF-187和Hysun-33。 Ni在生长培养基中的增加会不利地影响生长参数,糖浓度(降低和不降低)以及α-淀粉酶和蛋白酶的活性。它还减慢了发芽种子中存储的蛋白质和氨基酸的动员。然而,播种后24至120小时观察到α-淀粉酶和蛋白酶活性随时间增加。在过量的镍存在下,品种Hysun-33的性能优于SF-187。总体而言,镍诱导的向日葵种子发芽减少似乎是由于生物化学代谢的紊乱,因为糖类可用于代谢能量的合成以及必需的氨基酸,用于合成成长中的胚胎所必需的蛋白质和酶。通常由于抑制α-淀粉酶和蛋白酶活性而降低。

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