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Effect of Copper Sulphate on Seed Germination, Plant Growth and Peroxidase Activity of Mung Bean (Vigna radiata)

机译:硫酸铜对绿豆种子萌发,植物生长和过氧化物酶活性的影响

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The aim of this study was to find the effect of copper as a micronutrient for enhanced plant growth, protein content and anti oxidant enzyme activity of mungbean (Vigua radiota) under the influence of different concentrations of copper. The effect of various copper sulphate solution has insignificant effect on the percent germination of mungboan while plumule and radicle length decreased with increase in copper concentration (50, 200, 500 and 1000 mu M copper sulphate solution). Total protein content in root was significantly higher (127.7%) than shoot (83.7%) as compared to control. Peroxidase activity, in case of shoot, increases with increase in copper sulphate concentration i.e., (1.423 of control to 1.713, 2.29, 2.52, 2.88 and 3.02 OD/min/mg protein in different copper sulphate solutions treatments after 72 h) while for the root copper sulphate solution has negative effect on the peroxidase activity i.e., (11.41 of control to 11.19, 10.85, 10.04, 9.73 and 9.40 OD/min/mg protein in different copper sulphate solutions treatments after 72 h). The present experiment revealed that copper is an essential micronutrient which promoted the seedlings growth :it less than 50 mu M concentration. Higher concentration significantly decreases shoot and root length. The protein concentration in both shoot and root of the seedling was recorded to be enhanced with increase in the concentration of copper sulphate as compared to control. POD activity in root decreased at higher levels of copper concentration while POD activity in shoot increased with increasing concentration.
机译:这项研究的目的是发现铜作为一种微量营养素,在不同浓度的铜的影响下对绿豆(Vigua radiota)的生长,蛋白质含量和抗氧化酶活性的促进作用。各种硫酸铜溶液对绿豆发芽率的影响不显着,而随着铜浓度(50、200、500和1000μM硫酸铜溶液)的增加,幼芽和胚根长度减小。与对照相比,根中的总蛋白质含量显着高于芽(83.7%)(127.7%)。在芽的情况下,过氧化物酶活性随硫酸铜浓度的增加而增加,即(72小时后,在不同硫酸铜溶液处理中,对照的1.423达到1.713、2.29、2.52、2.88和3.02 OD / min / mg蛋白),而根硫酸铜溶液对过氧化物酶活性有负面影响,即(72小时后,在不同硫酸铜溶液处理中,对照的11.41分别控制为11.19、10.85、10.04、9.73和9.40 OD / min / mg蛋白)。本实验表明,铜是促进幼苗生长的必需微量元素:浓度小于50μM。较高的浓度会显着降低枝条和根长。与对照相比,记录了幼苗的茎和根中的蛋白质浓度均随着硫酸铜浓度的增加而增强。铜浓度较高时,根中的POD活性降低,而芽中的POD活性则随着浓度的升高而增加。

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