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Phytotoxic effects of copper on nitrogen metabolism and plant growth in Brassica pekinensis Rupr.

机译:铜对小白菜氮素代谢和植物生长的植物毒理作用

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Copper (Cu) from various anthropogenic and natural sources is one of the major heavy metal contaminants in the environment. To study Cu-induced nitrogen (N) metabolism damage in the popular vegetable Chinese cabbage (Brassica pekinensis Rupr.), aquatic culture experiments with this plant were performed. Two Cu levels (0.3 micromol/L (control) and 10.3 micromol/L) and two N levels (0.05- and 1-fold Hoagland's solution) were used for the aquatic culture experiments. The results demonstrated adverse effects of Cu on N metabolism and plant growth. Cu exposure elevated Cu concentration and decreased nitrate reductase (NR) activity in the roots and shoots and reduced total chlorophyll content. It also shortened root length and produced fewer leaves and lower plant biomass. However, Cu exposure increased total free amino acid content in the leaves. The results also demonstrated effects of N deficiency on N metabolism and plant growth. N deficiency increased the root/shoot ratio of biomass and the total free amino acid content and decreased the nitrate contents and NR activity in roots and leaves. In addition, there were interactive effects between Cu exposure and N level on plant biomass, root/shoot ratio, and chlorophyll and nitrate content in leaves. The results suggested that Cu toxicity to the plant was at least partly due to an influence on N metabolism.
机译:来自各种人为和天然来源的铜(Cu)是环境中的主要重金属污染物之一。为了研究流行蔬菜大白菜(Brassica pekinensis Rupr。)中Cu诱导的氮(N)代谢损伤,对该植物进行了水产养殖实验。水产养殖实验使用两个铜水平(0.3微摩尔/升(对照)和10.3微摩尔/升)和两个氮水平(0.05和1倍的霍格兰溶液)。结果证明了铜对氮代谢和植物生长的不利影响。铜暴露增加了根和茎中的铜浓度,降低了硝酸还原酶(NR)的活性,并降低了总叶绿素含量。它还缩短了根的长度,产生了更少的叶子和更低的植物生物量。但是,铜暴露增加了叶片中总游离氨基酸的含量。结果还证明了氮缺乏对氮代谢和植物生长的影响。氮缺乏增加了生物量的根/茎比和总游离氨基酸含量,并降低了根和叶中的硝酸盐含量和NR活性。此外,铜暴露和氮水平对植物生物量,根/茎长比以及叶片中叶绿素和硝酸盐含量都有交互作用。结果表明,铜对植物的毒性至少部分是由于对氮代谢的影响。

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