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Copper toxicity in young maize (Zea mays L.) plants: effects on growth, mineral and chlorophyll contents, and enzyme activities.

机译:幼玉米(Zea mays L.)植物中的铜毒性:对生长,矿物质和叶绿素含量以及酶活性的影响。

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Changes in the growth parameters and in enzyme activities were studied in roots and leaves of 14-day-old maize grown in a nutrient solution containing various copper concentrations (i.e. 0.01 to 10 muM). A significant decrease in root and leaf biomass was only found at 10 muM Cu. In contrast, changes in several enzyme activities occurred at lower copper concentrations in the solution, corresponding to different threshold values which are lower than those observed for growth parameters. Peroxidase (POD) activity significantly increased in all investigated plant organs (i.e. 3rd-leaf, 4th-leaf and roots) in relation to their copper content. Additionally, glucose-6-phosphate dehydrogenase (G-6-PDH), and isocitrate dehydrogenase (ICDH) activities decreased in the leaves, especially in the 4th leaf. However, the activity of malic enzyme (ME), G-6-PDH, glutamate dehydrogenase (GDH) and ICDH increased with the copper content in roots. According to the relationship between POD activity and copper content,the toxic critical value was set at 26 mg Cu per kg dry matter (DM) in roots and 21 mg Cu per kg DM in the 3rd leaf. In roots, a new isoenzyme of peroxidase appeared for copper content above 12.6 mg Cu kg DM-1. It is suggested that measurement of enzymeactivity, especially that of POD and Cu-specific changes in the (iso)peroxidase pattern, might be used as biomarkers to assess the phytotoxicity for maize grown on copper-contaminated substrata.
机译:研究了在含各种铜浓度(即0.01至10μM)的营养液中生长的14天龄玉米的根和叶的生长参数和酶活性的变化。根和叶生物量仅在10μMCu下才显着减少。相反,在溶液中较低的铜浓度下,几种酶的活性发生了变化,这对应于不同的阈值,这些阈值低于对生长参数观察到的阈值。与所有铜含量有关的过氧化物酶(POD)活性在所有调查过的植物器官(即第三叶,第四叶和根)中均显着增加。此外,叶片中的葡萄糖-6-磷酸脱氢酶(G-6-PDH)和异柠檬酸脱氢酶(ICDH)的活性降低,尤其是在第四片叶片中。然而,苹果酸酶(ME),G-6-PDH,谷氨酸脱氢酶(GDH)和ICDH的活性随根中铜含量的增加而增加。根据POD活性与铜含量之间的关系,将根的毒性临界值定为26 mg Cu / kg干物质(DM),在第三叶中将其毒性临界值定为21 mg Cu / kg干物质。在根中,当铜含量超过12.6 mg Cu kg DM-1时,就会出现一种新的过氧化物酶同工酶。建议将酶活性的测量,尤其是POD的测量和(异)过氧化物酶模式中Cu的特定变化,用作生物标记,以评估在铜污染的基质上生长的玉米的植物毒性。

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