利雅得地区草甘膦的植物微生物降解

A. Abdel-Megeed, S. Mw, A. Ho, H. Ali
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引用次数: 17

摘要

通过温室试验研究了苋属植物、尾状苋属植物和根际分离菌株对土壤和植物中草甘膦残留的清除能力。在实验室条件下对草甘膦的降解进行了分析研究。苋菜、尾状苋菜以及铜绿假单胞菌和巨芽孢杆菌两株分离菌株均能在5天内降解草甘膦。这些结果表明,植物修复可以加速草甘膦残留在植物体内和根际区域的降解。草甘膦对细菌DNA有较强的影响,许多DNA条带受到影响。这可以解释为除草剂草甘膦对蛋白质谱的影响可能以某种方式反射了这些有毒化合物同化过程中发生的DNA突变。因此,在DNA和蛋白质谱中发生的改变被认为是一种程度的耐受性,导致DNA突变以应对该化合物的同化。因此,植物修复方法可以通过确保除草剂和农药替代品的安全性和可获得性来保护公众健康和环境,是一种很有前途的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phyto-Microbial Degradation of Glyphosate in Riyadh Area
Green house studies were conducted to determine the ability of plant Amaranth, Amaranthus caudate and two isolated bacterial strains from rhizosphere region for cleaning up glyphosate residues in soil and plants. The analytical study of the degradation of glyphosate was carried out in the laboratory conditions. Amaranth, Amaranthus caudate and two isolated bacterial strains namely Pseudomonas aeruginosa and Bacillus megaterium could degrade glyphosate in 5 days. These results suggested that phytoremediation could accelerate the degradation of glyphosate residues in plants and in rhizosphere region as well. Glyphosate had strong effect on bacterial DNA where many DNA bands were affected. This could be explained that the effect of herbicide glyphosate on the protein profile may reflex somehow DNA mutation occurred during the assimilation of those toxic compounds. Therefore, the alteration occurred in both DNA and protein profiles is considered a degree of tolerance that lead to DNA mutation to cope with the assimilation of this compound. Therefore, the phytoremediation way could be a promising tool in program is to protect public health and the environment by ensuring the safety and availability of herbicides and pesticide alternatives.
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