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Biodegradation effects of o-cresol by Pseudomonas monteilii SHY on mustard seed germination

机译:假单胞菌SHY对邻甲酚对芥菜种子萌发的生物降解作用

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摘要

Cresols are ubiquitous due to industrial production and natural presence. o-cresol (2-methyl phenol) is highly toxic to both fauna and flora. It has been included in the EPA list as one of the priority pollutants. The deleterious effects of pesticides, herbicides, and many other chemical compounds on seed germination are known. However, the effect of o-cresol on seed germination is not known. Therefore, it is of interest to study the effect of o-cresol on germination of 13 different vegetable crop seeds using standard Filter Paper Method. There is no effect on germination for brinjal, red chili, and (green gram, chickpea, cucumber, tomato, fenugreek, cowpea, Green pea, coriander, and spinach, seeds even at 1500 mg/l of o-cresol However, okra and mustard were found to be sensitive to ocresol. Germination of mustard under controlled concentration of o-cresol showed similar results by soil method. It was found that germination percentage and seedling vigour (Vigour Index) was reduced by o-cresol. The percent germination was reduced to 64 and 12 at 25 and 50 mg o-cresol/kg soil as against 100% in the case of untreated control. The vigour index was reduced to 160 and 10, respectively as against of 646 that for the control. The viability of seeds by 2,3,5 - tetrazolium trichloride (TTC) test showed that a considerable reduction was observed at 200mg/l o-cresol. Reduced protease and amylase activity in o-cresol shows inhibited mustard generation. However, mustard generation inhibition was restored by the bioremediation of o-cresol using Pseudomonas monteilii SHY. Thus, the biodegradation effects of o-cresol by Pseudomonas monteilii SHY on mustard seed germination are shown.
机译:由于工业生产和自然存在,甲酚无处不在。邻甲酚(2-甲基苯酚)对动植物都有剧毒。它已被列为EPA清单中的优先污染物之一。农药,除草剂和许多其他化合物对种子发芽的有害作用是已知的。但是,邻甲酚对种子发芽的作用尚不清楚。因此,使用标准滤纸法研究邻甲酚对13种蔬菜作物种子萌发的影响是很有意义的。茄子,红辣椒和(绿克,鹰嘴豆,黄瓜,番茄,葫芦巴,cow豆,绿豌豆,香菜和菠菜)的种子对种子发芽都没有影响,即使邻甲酚的浓度为1500 mg / l。发现芥菜对甲酚敏感,在邻甲酚控制浓度下芥菜的发芽结果与土壤法相似,发现邻甲酚降低了发芽率和幼苗活力(Vigour Index)。在25和50 mg邻甲酚/ kg土壤下,对照组的活力指数分别降低到160和10,而在25和50 mg邻甲酚/ kg土壤时降低到64和12。 2,3,5-三氯化四氮唑(TTC)试验表明,在200mg / l邻甲酚中可观察到明显的减少,邻甲酚中蛋白酶和淀粉酶活性的降低表明芥菜的产生受到抑制,但芥菜产生的抑制作用得以恢复。通过邻苯二酚的生物修复使用蒙特卡洛假单胞菌SHY的esol。因此,显示了Pseudomonas monteilii SHY对邻甲酚对芥菜种子发芽的生物降解作用。

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