Lead heavy metal toxicity induced changes on growth and antioxidative enzymes level in water hyacinths [Eichhornia crassipes (Mart.)]

被引:277
作者
Malar, Srinivasan [1 ]
Vikram, Sahi Shivendra [2 ]
Favas, Paulo J. C. [3 ]
Perumal, Venkatachalam [1 ]
机构
[1] Periyar Univ, Dept Biotechnol, Plant Genet Engn & Mol Biol Lab, Salem 636011, TN, India
[2] Western Kentucky Univ, Dept Biol, Bowling Green, KY 42101 USA
[3] Univ Tras Os Montes & Alto Douro, Sch Life Sci & Environm, UTAD, P-5000801 Quinta De Prados, Vila Real, Portugal
关键词
Heavy metal stress; Aquatic plant; Reactive oxygen species; Lead hyperaccumulation; Phytoremediation; OXIDATIVE STRESS; DEFENSE SYSTEM; PIGMENT COMPOSITION; LIPID-PEROXIDATION; WASTE-WATER; CADMIUM; L; PLANT; TOLERANCE; PHYTOREMEDIATION;
D O I
10.1186/s40529-014-0054-6
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Background: Lead (Pb) heavy metal pollution in water bodies is one of the serious problems across the world. This study was designed to find out the effect of Pb toxicity on physiological and biochemical changes in Eichhornia crassipes (water hyacinth) seedlings. Results: The plant growth was significantly inhibited (50%) at 1000 mg/L Pb concentration. Accumulation of Pb was higher in root than in shoot tissues. The maximum level of Pb accumulation was noticed in roots (5.45%) followed by petiole (2.72%) and leaf tissues (0.66%). Increasing the Pb concentration gradually decreased the chlorophyll content. Intracellular distribution of Pb was also studied using SEM-EDX, where the Pb deposition was observed in both root and leaf tissues. MDA content increased in both the leaf and root tissues up to the 400 mg/L Pb treatment and slightly decreased at higher concentrations. The activity of antioxidative enzymes, such as APX and POX, positively correlated with Pb treatment, while in the case of SOD and CAT enzymes increased up to 800 mg/L treatment and then slightly decreased at higher concentration in both leaf and root tissues. Conclusions: These results suggest that water hyacinth plants have efficient mechanism to tolerate Pb toxicity, as evidenced by an increased level of antioxidative enzymes. Results clearly indicate that water hyacinth is a feasible plant for hyperaccumulation of heavy metals from polluted wetlands.
引用
收藏
页数:11
相关论文
共 57 条
[1]   Role of superoxide dismutases (SODs) in controlling oxidative stress in plants [J].
Alscher, RG ;
Erturk, N ;
Heath, LS .
JOURNAL OF EXPERIMENTAL BOTANY, 2002, 53 (372) :1331-1341
[2]   SUPEROXIDE DISMUTASE - IMPROVED ASSAYS AND AN ASSAY APPLICABLE TO ACRYLAMIDE GELS [J].
BEAUCHAM.C ;
FRIDOVIC.I .
ANALYTICAL BIOCHEMISTRY, 1971, 44 (01) :276-&
[3]  
BEERS RF, 1952, J BIOL CHEM, V195, P133
[4]  
BRADFORD MM, 1976, ANAL BIOCHEM, V72, P248, DOI 10.1016/0003-2697(76)90527-3
[5]   Lead accumulation in the roots of grass pea (Lathyrus sativus L.): a novel plant for phytoremediation systems? [J].
Brunet, Judicaelle ;
Repellin, Anne ;
Varrault, Gilles ;
Terryn, Nancy ;
Zuily-Fodil, Yasmine .
COMPTES RENDUS BIOLOGIES, 2008, 331 (11) :859-864
[6]   Lead contamination reduces chlorophyll biosynthesis and genomic template stability in Brassica rapa L. [J].
Cenkci, Sueleyman ;
Cigerci, Ibrahim Hakki ;
Yildiz, Mustafa ;
Ozay, Cennet ;
Bozdag, Ahmet ;
Terzi, Hakan .
ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2010, 67 (03) :467-473
[7]   Bioaccumulation and physiological effects of mercury in Pteris vittata and Nephrolepis exaltata [J].
Chen, Jian ;
Shiyab, Safwan ;
Han, Fengxiang X. ;
Monts, David L. ;
Waggoner, Charles A. ;
Yang, Zhimin ;
Su, Yi .
ECOTOXICOLOGY, 2009, 18 (01) :110-121
[8]   The King's initiatives using water hyacinth to remove heavy metals and plant nutrients from wastewater through Bueng Makkasan in Bangkok, Thailand [J].
Chunkao, Kasem ;
Nimpee, Chatri ;
Duangmal, Kittichai .
ECOLOGICAL ENGINEERING, 2012, 39 :40-52
[9]   Morphogenetic, ultrastructural and physiological damages suffered by submerged leaves of Elodea canadensis exposed to cadmium [J].
Dalla Vecchia, F ;
La Rocca, N ;
Moro, I ;
De Faveri, S ;
Andreoli, C ;
Rascio, N .
PLANT SCIENCE, 2005, 168 (02) :329-338
[10]   Behaviour of antioxidant defense system in the adaptive response to salt stress in Helianthus annuus L. cells [J].
Davenport, SB ;
Gallego, SM ;
Benavides, MP ;
Tomaro, ML .
PLANT GROWTH REGULATION, 2003, 40 (01) :81-88