Srivastava Shefali, Mishra Kumkum, Tandon Pramod Kumar
Department of Botany, University of Lucknow, Lucknow 226 007, India.
J Toxicol. 2014;2014:910497. doi: 10.1155/2014/910497. Epub 2014 Nov 19.
Different dilutions, that is, 25, 50, 75, and 100%, of tannery effluent (TE) were chosen for the present study to assess the phytotoxic effects on Vigna mungo L. For amelioration purposes, different levels and combinations of iron and zinc were supplied to the plants along with 50% TE that is chosen on the basis of prior test under Petri dish culture. Cytotoxic and biochemical analysis and plant tolerance index (PTI) of plant were observed. Mitotic index deceased with increase in effluent concentration whereas abnormality % was increased. The pigments (chlorophyll a, total, and carotenoids) were decreased with increasing treatment levels of TE at both growth stages. However, carotenoid content increased significantly at all dilution levels of TE after first growth stage. Chlorophyll b was increased significantly after 35 days of growth but decreased after 70 days. The protein contents were also significantly decreased with increase in all TE treatments and increased significantly in zinc recovery treatments. Activities of catalase and peroxidase enzymes were significantly affected and increased significantly with effluent treatments. PTI showed an enhanced tolerance capacity of plant with treatment of iron and zinc. A negative correlation was found (r = -0.97) between plant height and different dilutions of effluent whereas it was positively correlated (r = 0.95) with iron and zinc treatments. The study represents the ameliorative effect of iron and zinc for phytotoxic damage in V. mungo caused by tannery effluent.
本研究选取了不同稀释度(即25%、50%、75%和100%)的制革废水(TE),以评估其对绿豆(Vigna mungo L.)的植物毒性效应。为了改善这种情况,在基于培养皿培养的前期试验基础上,选择了50%的TE,并向植物提供了不同水平和组合的铁和锌。观察了植物的细胞毒性、生化分析和植物耐受指数(PTI)。有丝分裂指数随废水浓度的增加而降低,而异常率则增加。在两个生长阶段,随着TE处理水平的增加,色素(叶绿素a、总量和类胡萝卜素)含量均降低。然而,在第一个生长阶段后,所有TE稀释水平下的类胡萝卜素含量均显著增加。叶绿素b在生长35天后显著增加,但在70天后降低。随着所有TE处理的增加,蛋白质含量也显著降低,而在锌恢复处理中则显著增加。过氧化氢酶和过氧化物酶的活性受到显著影响,并随着废水处理而显著增加。PTI表明,铁和锌处理增强了植物的耐受能力。发现植株高度与废水不同稀释度之间呈负相关(r = -0.97),而与铁和锌处理呈正相关(r = 0.95)。该研究表明了铁和锌对制革废水对绿豆造成的植物毒性损伤的改善作用。