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香根草(Vetiveria zizanoides L. Nash)修复苯酚污染的潜力。

Potential of vetiver (Vetiveria zizanoides L. Nash) for phytoremediation of phenol.

机构信息

Nuclear Agriculture and Biotechnology Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400085, India.

出版信息

Ecotoxicol Environ Saf. 2008 Nov;71(3):671-6. doi: 10.1016/j.ecoenv.2007.10.023. Epub 2007 Dec 21.

Abstract

Aseptically grown Vetiveria zizanoides were evaluated for their potential for phytoremediation of phenol from Murashige and Skoog's liquid medium. Phenol was found to be completely removed from incubation medium at the end of 4 days by V. zizanoides plantlets, when medium was supplemented with 50 and 100 mg L(-1) phenol, while with 200, 500, and 1000 mg L(-1) of phenol, 89%, 76% and 70%, respectively, were removed. Phenol removal was found to be associated with inherent production of peroxidase and hydrogen peroxide. Coupled with H(2)O(2) formation, the levels of antioxidant enzymes like superoxide dismutase and peroxidase showed an enhancement when plants were exposed to phenol, whereas catalase levels initially showed a decline due to the utilization of H(2)O(2) by peroxidase for phenol oxidation. However, when peroxidase levels declined, there was an enhancement in catalase levels to minimize the presence of H(2)O(2) in the medium. Having confirmed that the removal of phenol was by V. zizanoides plantlets, in the next phase, micropropagated plantlets and well-developed plants grown in hydroponics were used under in vivo conditions to study the effect of phenol (200 mg L(-1)) on plant growth and reuse. Although plant growth was reduced in presence of phenol, the results of the reuse study indicated the possibility of plants getting adapted to phenol without any decline in potential for phenol remediation.

摘要

无菌生长的香根草被评估为从 Murashige 和 Skoog 的液体培养基中去除酚类物质的潜力。当培养基中添加 50 和 100 mg L(-1) 的苯酚时,香根草植物在第 4 天结束时完全去除了培养介质中的苯酚,而当添加 200、500 和 1000 mg L(-1) 的苯酚时,分别去除了 89%、76%和 70%的苯酚。酚类物质的去除与过氧化物酶和过氧化氢的固有产生有关。过氧化物酶与 H(2)O(2)形成偶联,当植物暴露于苯酚时,超氧化物歧化酶和过氧化物酶等抗氧化酶的水平显示出增强,而过氧化氢酶的水平最初由于过氧化物酶对苯酚氧化的利用而下降。然而,当过氧化物酶水平下降时,过氧化氢酶的水平增强,以最大限度地减少培养基中 H(2)O(2)的存在。已经证实,香根草植物可以去除苯酚,在下一阶段,在水培中使用微繁殖的植物和生长良好的植物在体内条件下研究 200 mg L(-1)苯酚对植物生长和再利用的影响。尽管植物在存在苯酚的情况下生长受到抑制,但再利用研究的结果表明,植物可能适应苯酚而不会降低苯酚修复的潜力。

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