HOW PHYTOHORMONE IAA AND CHELATOR EDTA AFFECT LEAD UPTAKE BY ZN/CD HYPERACCUMULATOR PICRIS DIVARICATA

被引:62
作者
Du, Rui-Jun [2 ]
He, Er-Kai [2 ]
Tang, Ye-Tao [1 ,2 ]
Hu, Peng-Jie [2 ]
Ying, Rong-Rong [2 ]
Morel, Jean-Louis [3 ]
Qiu, Rong-Liang [1 ,2 ]
机构
[1] Guangdong Prov Key Lab Environm Pollut Control &, Guangzhou 510275, Guangdong, Peoples R China
[2] Sun Yat Sen Univ, Sch Environm Sci & Engn, Guangzhou 510275, Guangdong, Peoples R China
[3] UMR 1120 INPL ENSAIA INRA, Lab Sols & Environm, Vandoeuvre Les Nancy, France
关键词
EDTA; IAA; lead; Picris divaricata; root system; transpiration; SEDUM-ALFREDII; MINERAL-NUTRITION; PLANT-GROWTH; ROOT-GROWTH; ZINC; ACCUMULATION; CADMIUM; PHYTOREMEDIATION; PHYTOEXTRACTION; AUXIN;
D O I
10.1080/15226514.2010.549862
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In this paper, the effects of indole-3-acetic acid (IAA) and/or ethylenediaminetetraacetic acid (EDTA) on lead uptake by a Zn/Cd hyperaccumulator Picris divaricata were studied. P. divaricata responded to Pb by better root system and increased biomass in presence of phytohormone IAA, which was able to reduce the inhibiting effects of Pb on transpiration without reducing the uptake of Pb The application of 100 mu M IAA increased plant transpiration rate by about 20% and Pb concentration in leaves by about 37.3% as compared to treatment exposed to Pb alone. The enhanced phytoextraction efficiency could be attributed to the mechanisms played by IAA through alleviating Pb toxicity, creating better root system and plant biomass, promoting a higher transpiration rate as well as regulating the level of nutrient elements. On the contrary, inefficiency of phytoextraction was found with EDTA or the combination of IAA and EDTA probably because most Pb was in the form of Pb-EDTA complex which blocked the uptake by P. divaricata. The present study demonstrated that IAA was able to enhance the phytoextraction of Pb by Zn/Cd hyperaccumulator P. divaricata, providing a feasible method for the phytoremediation of polymetallic contaminated soils.
引用
收藏
页码:1024 / 1036
页数:13
相关论文
共 40 条
[11]  
Han-Min Zhou, 2007, Huanjing Kexue, V28, P2085
[12]  
He B, 2002, ACTA BOT SIN, V44, P1365
[13]   Tolerance, accumulation and distribution of zinc and cadmium in hyperaccumulator Potentilla griffithii [J].
Hu, Peng-Jie ;
Qiu, Rong-Liang ;
Senthilkumar, Palaninaicker ;
Jiang, Dan ;
Chen, Zhong-Wei ;
Tang, Ye-Tao ;
Liu, Feng-Jie .
ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2009, 66 (02) :317-325
[14]   Role of EDTA in alleviating lead toxicity in accumulator species of Sedum alfredii H. [J].
Huang, Huagang ;
Li, Tingxuan ;
Tian, Shengke ;
Gupta, D. K. ;
Zhang, Xizhou ;
Yang, Xiao-e .
BIORESOURCE TECHNOLOGY, 2008, 99 (14) :6088-6096
[15]   Lead phytoextraction: Species variation in lead uptake and translocation [J].
Huang, JW ;
Cunningham, SD .
NEW PHYTOLOGIST, 1996, 134 (01) :75-84
[16]   Root development and heavy metal phytoextraction efficiency: comparison of different plant species in the field [J].
Keller, C ;
Hammer, D ;
Kayser, A ;
Richner, W ;
Brodbeck, M ;
Sennhauser, M .
PLANT AND SOIL, 2003, 249 (01) :67-81
[17]  
Liao YC, 2006, CHEMOSPHERE, V65, P343, DOI 10.1016/j.chemosphere.2006.02.010
[18]   Auxin-enhanced root growth for phytoremediation of sewage-sludge amended soil [J].
Liphadzi, M. S. ;
Kirkham, M. B. ;
Paulsen, G. M. .
ENVIRONMENTAL TECHNOLOGY, 2006, 27 (06) :695-704
[19]   Enhancement of lead uptake by hyperaccumulator plant species Sedum alfredii Hance using EDTA and IAA [J].
Liu, D. ;
Li, T. ;
Yang, X. ;
Islam, E. ;
Jin, X. ;
Mahmood, Q. .
BULLETIN OF ENVIRONMENTAL CONTAMINATION AND TOXICOLOGY, 2007, 78 (3-4) :280-283
[20]   Gibberellic acid, kinetin, and the mixture indole-3-acetic acid-kinetin assisted with EDTA-induced lead hyperaccumulation in alfalfa plants [J].
Lopez, Martha L. ;
Peralta-Videa, Jose R. ;
Parsons, Jason G. ;
Benitez, Tenoch ;
Gardea-Torresdey, Jorge L. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2007, 41 (23) :8165-8170