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作 者:熊思[1] 林爱军[1] 宋亮[1] 魏连爽[1] 李强[1]
出 处:《北京化工大学学报(自然科学版)》2013年第6期82-87,共6页Journal of Beijing University of Chemical Technology(Natural Science Edition)
基 金:国家自然科学基金(81072989)
摘 要:用不同质量浓度的Cu处理玉米幼苗,分析了Cu毒性对幼苗生长的影响和体内氧化损伤情况,并采用分步提取技术研究了玉米幼苗地上部分中Cu的化学形态分布.结果表明加Cu处理明显抑制了玉米的生长和发育,并引起肉眼可见的伤害.铜胁迫导致玉米幼苗叶片中抗氧化酶系统中酶活性的变化,在本研究的Cu处理质量浓度范围(5~160 mg/L)内,随着Cu质量浓度的增加,幼苗叶片中的超氧化物歧化酶(SOD)、过氧化物酶(POD)活性升高,过氧化氢酶(CAT)活性先升高后下降.铜胁迫还会导致植物体内的氧化损伤,丙二醛含量随Cu处理质量浓度提高而增加.玉米幼苗累积的Cu在体内以不同的化学形态分布,通过体内结合机制降低体内Cu的移动性是玉米幼苗抵抗Cu污染危害的重要机制之一.Hydroponics experiments were used to investigate the toxic effects of copper( II ) on maize seedlings and the mechanism responsible. When treated with different concentrations of copper( II ), the growth and the oxidative damage of maize seedlings was monitored and a sequential extraction technique was used to study the distribution of chemical forms of Cu2+ in the shoots of maize seedlings. The results showed that the growth inhibition of maize seedlings increased with increasing Cu2+ concentration and the presence of Cu2+ led to macroscopic scars. Copper ( II )-induced stress leads to changes in In the mass concentration range of Cu2+ enzyme activity in the antioxidant enzyme system of maize seedling employed (5 -160 mg/L), the activities of superoxide dismutase blades. (SOD) and peroxidase (POD) increased and the activity of catalase (CAT) initially increased and then decreased with in- creasing Cu2+ concentration. Copper( II) also results in oxidative damage in the plants, and the content of malon- dialdehyde increased with increasing concentration of Cu2 + . The Cu2 + accumulated in maize seedlings in different chemical forms, and one of the main mechanisms to resist Cu2 + pollution is by decreasing the mobility of Cu2 + in plants by means of the binding mechanism.
分 类 号:X173[环境科学与工程—环境科学]
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