Analysis of transgenic Indian mustard plants for phytoremediation of metal-contaminated mine tailings

被引:149
作者
Bennett, LE
Burkhead, JL
Hale, KL
Terry, N
Pilon, M
Pilon-Smits, EAH
机构
[1] Colorado State Univ, Dept Biol, Ft Collins, CO 80523 USA
[2] Univ Calif Berkeley, Dept Plant & Microbial Biol, Berkeley, CA 94270 USA
关键词
D O I
10.2134/jeq2003.0432
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Transgenic Indian mustard [Brassica juncea (L.) Czern.] plants overproducing the enzymes gamma-glutamylcysteine synthetase (ECS) or glutathione synthetase (GS) were shown previously to have increased levels of the metal-binding thiol peptides phytochelatins and glutathione, and enhanced Cd tolerance and accumulation. Furthermore, transgenic Indian mustard plants overexpressing adenosine triphosphate sulfurylase (APS) were shown to have higher levels of glutathione and total thiols. These results were obtained with a solution culture. To better examine the phytoremediation potential of these transgenics, a greenhouse experiment was performed in which the transgenics were grown on metal-contaminated soil collected from a USEPA Super-fund site near Leadville, Colorado. A grass mixture used for revegetation of the site was included for comparison. The ECS and GS transgenics accumulated significantly (P < 0.05) more metal in their shoot than wild-type (WT) Indian mustard, while the APS plants did not. Of the six metals tested, the ECS and GS transgenics accumulated 1.5-fold more Cd, and 1.5- to 2-fold more Zn, compared with wildtype Indian mustard. Furthermore, the ECS transgenics accumulated 2.4- to 3-fold more Cr, Cu, and Ph, relative to WT. The grass mixture accumulated significantly less metal than Indian mustard: approximately 2-fold less Cd, Cu, Mn, and Zn, and 5.7-fold less Ph than WT Indian mustard. All transgenics removed significantly more metal from the soil compared with WT Indian mustard or an unplanted control. While WT did not remove more metal than the implanted control for any of the metals tested, all three types of transgenics significantly reduced the soil metal concentration, and removed between 6% (Zn) and 25% (Cd) of the soil metal. This study is the first to demonstrate enhanced phytoextraction potential of transgenic plants using polluted environmental soil. The results confirm the importance of metal-binding peptides for plant metal accumulation and show that results from hydroponic systems have value as an indicator for phytoremediation potential.
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页码:432 / 440
页数:9
相关论文
共 44 条
[1]  
[Anonymous], 1999, U.S. and International Markets for Phytoremediation
[2]   A tobacco plasma membrane calmodulin-binding transporter confers Ni2+ tolerance and Pb2+ hypersensitivity in transgenic plants [J].
Arazi, T ;
Sunkar, R ;
Kaplan, B ;
Fromm, H .
PLANT JOURNAL, 1999, 20 (02) :171-182
[3]  
Berti WR, 2000, PHYTOREMEDIATION OF TOXIC METALS, P71
[4]   Phytoremediation of methylmercury pollution:: merB expression in Arabidopsis thaliana confers resistance to organomercurials [J].
Bizily, SP ;
Rugh, CL ;
Summers, AO ;
Meagher, RB .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (12) :6808-6813
[5]   Phytodetoxification of hazardous organomercurials by genetically engineered plants [J].
Bizily, SP ;
Rugh, CL ;
Meagher, RB .
NATURE BIOTECHNOLOGY, 2000, 18 (02) :213-217
[6]   Enhanced accumulation of Pb in Indian mustard by soil-applied chelating agents [J].
Blaylock, MJ ;
Salt, DE ;
Dushenkov, S ;
Zakharova, O ;
Gussman, C ;
Kapulnik, Y ;
Ensley, BD ;
Raskin, I .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1997, 31 (03) :860-865
[7]  
Blaylock MJ, 2000, PHYTOREMEDIATION OF TOXIC METALS, P53
[8]  
Blaylock MJ, 2000, PHYTOREMEDIATION OF CONTAMINATED SOIL AND WATER, P1
[9]  
Chaney RL, 2000, PHYTOREMEDIATION OF CONTAMINATED SOIL AND WATER, P129
[10]  
Cobbett CS, 2000, PHYTOREMEDIATION OF TOXIC METALS, P247