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1.
Ying Yong Sheng Tai Xue Bao ; 25(10): 2999-3005, 2014 Oct.
Article in Chinese | MEDLINE | ID: mdl-25796911

ABSTRACT

A pot experiment was conducted to study the effects of plant growth regulator GA3 and metal chelate EDTA on enhancing the remediation of Pb contaminated soil, and the detoxification mechanism of Lolium perenne grown on Pb contaminated soil at 250 and 500 mg · kg(-1). The results showed that cell wall deposition and vacuolar compartmentalization played important roles in the detoxification of Pb in L. perenne shoot. The addition of EDTA alone increased Pb concentration in plants and Pb proportions in soluble fraction and organelles fraction, and enhanced the toxicity of Pb to plant, leading to the significant reduction of the plant biomass (P < 0.05). Foliar spray of lower concentration of GA3 (1 µmol · L(-1) or 10 µmol · L(-1)) alone significantly increased Pb accumulation by L. perenne (P < 0.05), but Pb proportions in soluble and organelles fraction were decreased, which alleviated the adverse effects of Pb on plant, thus improving the growth of plants (P < 0.05), with 1 µmol · L(-1) GA3 being the most effective. In contract, the addition of 100 µmol · L(-1) GA3 decreased Pb concentration in L. perenne, but increased the proportions of Pb in soluble fraction and organelles fraction, resulting in the reduction of plant biomass. Lower concen- tration of GA3 might alleviate the adverse effects of Pb and/or EDTA on plant, since the biomass amounts in the different treatments were in order of GA3 alone of lower concentration > GA3 of lower concentration + EDTA > EDTA alone. The combination application of low concentration of GA3 and EDTA showed a synergistic effect on the Pb accumulation in L. perenne (P < 0.05). Especially, Pb concentration in shoot and Pb extraction efficiency reached 1250.6 mg · kg(-1) and 1.1%, respec- tively, under the treatment of EDTA + 1 µmol L(-1) GA3 on the Pb 500 mg · kg(-1) soil. Therefore, the application of 1 µmol · L(-1) GA3 along with EDTA appeared to be a potential approach for phytoremediation of Pb contaminated soil.


Subject(s)
Edetic Acid/pharmacology , Gibberellins/pharmacology , Lead/chemistry , Lolium/drug effects , Soil Pollutants/chemistry , Soil/chemistry , Biodegradation, Environmental , Biomass
2.
Ying Yong Sheng Tai Xue Bao ; 22(2): 481-7, 2011 Feb.
Article in Chinese | MEDLINE | ID: mdl-21608265

ABSTRACT

A pot experiment was conducted to study the combined effects of Cu (0-1500 mg x kg(-1)) and simulated acid rain (pH 2.5-5.6) on the copper accumulation, growth, and antioxidant enzyme activities of Rumex acetosa. With the increasing concentration of soil Cu, the Cu accumulation in R. acetosa increased, being higher in root than in stem and leaf. The exposure to low pH acid rain promoted the Cu uptake by R. acetosa. With the increase of soil Cu concentration and/or of acid rain acidity, the biomass of R. acetosa decreased, leaf and root MDA contents increased and had good correlation with soil Cu concentration, and the SOD and POD activities in leaf and root displayed a decreasing trend after an initial increase. This study showed that R. acetosa had a strong adaptive ability to Cu and acid rain stress, exhibiting a high application potential in the remediation of Cu-contaminated soil in acid rain areas.


Subject(s)
Acid Rain/adverse effects , Copper/metabolism , Environmental Restoration and Remediation/methods , Rumex/metabolism , Soil Pollutants/metabolism , Absorption , Computer Simulation , Rumex/drug effects , Rumex/enzymology , Rumex/growth & development , Superoxide Dismutase/metabolism
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