2 (25, 50, and 100 '/> Cadmium and copper stress affect seedling growth and enzymatic activities in germinating barley seeds.
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Cadmium and copper stress affect seedling growth and enzymatic activities in germinating barley seeds.

机译:镉和铜胁迫会影响大麦种子发芽时的幼苗生长和酶活性。

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摘要

To assess cadmium (Cd) and copper (Cu) phytotoxicity, barley (Hordeum vulgare L. var. 'Manel') seeds were germinated for a period of 2 days in a solution containing CdCl2 (25, 50, and 100 micro M) or CuSO4 (100, 300, and 500 micro M). The growth of radicles and shoots decreased while the water content in stressed seeds remained near control values. A decline in alpha -amylase, acid phosphatase, and alkaline phosphatase activities was also observed in endosperms, while beta -amylase activity was only slightly modified by heavy metal treatments. Furthermore, Cd and Cu increased lipid peroxidation, enhanced soluble protein and sugar content even at the lowest dose, and induced a significant accumulation of proline, essentially in radicles. A synthesis of the results reveals that the inhibition of seed germination after exposure to Cd or Cu is not a consequence of reduced water uptake by seed tissues, but may be due to a failure in reserve mobilization from the endosperm.
机译:为了评估镉(Cd)和铜(Cu)的植物毒性,将大麦(Hordeum vulgare L. var。'Manel')种子在含有CdCl 2 的溶液中萌发2天(25, 50和100 micro M)或CuSO 4 (100、300和500 micro M)。胚根和芽的生长下降,而胁迫种子中的水分保持在控制值附近。在胚乳中也观察到α-淀粉酶,酸性磷酸酶和碱性磷酸酶活性的下降,而β-淀粉酶活性仅通过重金属处理而略有改变。此外,Cd和Cu甚至在最低剂量下也能增加脂质过氧化作用,增加可溶性蛋白和糖含量,并引起脯氨酸的大量积累,基本上在胚根中。结果的综合表明,暴露于Cd或Cu后抑制种子发芽并不是种子组织吸收水分减少的结果,而是由于胚乳储备动员失败而引起的。

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