植物油厂废水对芸苔种子生理特性的影响

Durga Lal Regar, Pragya Dadhich, Poonam Jaiswal
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摘要

工业化使我们的日常生活更加便利,也是任何国家经济增长的关键决定因素。但在黑暗的一面,众所周知,工业也会造成几乎所有类型的污染,包括土壤、空气和水污染。未经处理的工业废水排入农田会影响农作物的整体生产。OME被认为对种子萌发和整个植物生长具有植物毒性作用。本研究于2020年7月至2022年6月期间进行,旨在研究大豆和芥菜油厂废水的毒性及其对芸苔(Brassica compestris L.)种子活力指数、种子活力指数和耐受指数的影响。确定了两组试验,一组为芥菜OME,另一组为大豆OME。制备不同浓度的OME;0%油厂废水(自来水),10%、20%、30%、40%、50%、60%、70%、80%、90%和100% OME(未稀释)。用自来水处理作为对照。将10粒种子贴在湿滤纸上,在23℃的培养箱中进行萌发试验。采用标准方法计算种子活力指数、种子活力指数、耐受性指数和植物毒性。活力指数(VI)与对照组(无OME)相比,随着OME浓度的增加,活力指数(VI)下降到近1/5。当OME浓度达到10%时,对种子活力指数几乎没有负面影响,但超过10%后,对种子活力指数的负面影响更大。在两个处理中,随着OME浓度从0%(水)增加到100%,耐受性指数(TI)降低到近50%。在大豆萌发初期,大豆OME的毒性更为明显,但在萌发后期,随着OME浓度的增加,两种OME的毒性都有所增加。由此可见,高浓度植物油厂废水对种子活力和活力有不利影响,这可能是由于高浓度OME降低了种子的耐受性,增加了种子的毒性。这些参数均与OME浓度具有显著的高相关性。
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Effect of Vegetable Oil Mill Effluents on Physiological Properties of Brassica compestris L. Seeds
Industrialization has made our day-to-day life easier and is also a key determinant of the economic growth of any nation. But on the dark side, industries are also known to cause almost all types of pollution including soil, air, and water pollution. Untreated industrial effluents when discharged in agricultural fields affect overall crop production. OME is believed to induce a phytotoxic effect on seed germination and overall plant growth. This paper aims to test the toxicity of soybean and mustard oil mill effluents and their impact on the Vitality Index, Seed Vigour Index, and Tolerance Index of seeds of Brassica compestris L. The study was conducted during July 2020 - June 2022. Two sets of experiments were settled, one for mustard OME and another for soybean OME. Various concentrations of OME were prepared; 0% oil mill effluent (tap water),10%, 20%, 30%, 40%, 50%, 60%, 70%, 80%, 90%, and 100% OME (not diluted). Treatment with tap water was treated as a control. A germination test with 10 seeds mounted on moist filter paper was conducted in an incubator at a temperature of 23°C. Seed vitality index, Seed vigour index, Tolerance index, and Phyto-toxicity were calculated with standard methods. Vitality index (VI) decreases to almost 1/5 with increasing OME concentration as compared to control (without OME) with both the OME. Up to 10% OME concentration in both cases there is almost no negative impact, but after that soybean OME concentration shows more negative effect on the seed vigour index. The tolerance index (TI) was reduced to almost 50% with increasing OME concentration from 0% (water) to 100% in both treatments. Toxicity is more pronounced with soybean OME during the early germination period but later it shows that toxicity increases with increasing OME concentration with both the OME. It can be concluded that higher concentrations of vegetable oil mill effluent negatively affect seed vitality, vigour and this may be due to reduced tolerance and increased toxicity with higher concentrations of OME. All these parameters under study have a significantly high correlation with the concentration of OME.
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