Bioremediation of copper stressed Trigonella foenum graecum
Автор: Dowidar Samha M.A.
Журнал: Журнал стресс-физиологии и биохимии @jspb
Статья в выпуске: 4 т.9, 2013 года.
Бесплатный доступ
Copper is one of the heavy metals, although it is an essential microelement through interference with numerous physiological processes, when it absorbed in excess amounts, it can be toxic and induce a number of deleterious effects. A pot experiment was conducted in order to assess the possible effects of Nostoc muscorum (2 g/ kg soil fresh pellets) on the growth and some metabolic activities of Trigonella foenum gracum at 30 and 60 days of growth growing under copper stress. This experimental plant was grown in clay-sandy soil (2:1 W/W) amended either with different concentrations of CuSO 4 (0.4, 0.6, 0.8 and 1.0 g/kg soil) or Nostoc mixed with Cu (0.6, 0.8 and 1.0 g/kg soil). Application of Nostoc in a mixture with Cu significantly increased fresh and dry weight of root and shoot, photosynthetic pigments and activity at 30 and 60 days of growth when compared with their counterparts of Cu treatment. In addition, the content of K +, Ca 2+, P 3+ and iron were increased with the exception of a decrease in Cu level at 60 days of growth. On the other hand, the content of starch was significantly decreased at 30 and 60 days of growth. Moreover, the activity of both peroxidase (POD) and superoxide dismutase (SOD) were reduced by applying Nostoc to the soil having different concentrations of Cu.
Alleviation, antioxidant enzymes, carbohydrate, copper, dry weight, fresh weight, mineral content, nostoc muscorum, pigment, trigonella foenum gracum
Короткий адрес: https://sciup.org/14323818
IDR: 14323818
Список литературы Bioremediation of copper stressed Trigonella foenum graecum
- Abd El-Baky, H.H., Hussein, M.M. and El-Baroty, G.S. (2008) Algal extracts improve antioxidant defense abilities and salt tolerance of wheat plant irrigated with sea water. African Biochem. Res., 2, 151 -164
- Agarwal, S., Sairam, K.R., Srivastava, G.C., Aruna, T. and Meena, C.R. (2005) Role of ABA, salicylic acid, calcium and hydrogen peroxide on antioxidant enzymes induction in wheat seedlings. Plant Sci., 169, 559-570
- Allen, S.G., Girmshaw, H.M., Parkinson, J.A. and Quarmby, C. (1974) Chemical analysis of ecological materials. Black Well Sci. Publ. Oxford, London. 565 pp
- Anjana, K., Kaushik, A., Kiran, B. and Nisha, R. (2007) Biosorption of Cr (VΙ) by immobilized biomass of two indigenous strains of Cyanobacteria isolated from metal contaminated soil. Hazard. Mater., 148, 383-386
- Arnon, D.I. (1949) copper enzymes in isolated chloroplasts, polyphenoxidase in beta vulgaris. Plant Physiology, 24, 1-15
- Beauchamp, C. and Fridovich, I. (1971) Superoxide dismutase; improved assays and an assay applicable to acrylamide gels. Anal. Biochem., 44, 276-287
- Beyer, W.F. and Fridovich, I. (1987) Assaying for superoxide dismutase activity: Some large consequences of minor changes in conditions. Anal Biochem., 161, 559-566
- Bhowmik, D., Dubey, J. and Mehra, S. (2010) Evaluating Potential of Spirulina as innoculant for pulses. Acad. Plant Sci., 3, 161-164
- Bishop, O.N. (1983) “Statistics in Biology”. Longman Penguin London. 56 -63
- Caspi, V., Droppa, M., Horváth, G., Malkin, S., Marder, J.B. and Raskin, V.I. (1999) The effect of copper on chlorophyll organization during greening of barley leaves. Photosynth. Res., 62, 165-174
- Deef, H.E. (2007) Copper treatment and their effects on growth, carbohydrates, minerals and essential oils contents of Rosmarinus officinalis L. World Agric. Sci., 3, 322-328
- Deni, B. (1995) Encyclopaedia of Herbs and Their Uses, The Herb Society of America Published in the United States by Dorling Kiindensley Publishing Inc. 95 Madison Avenue, New York, 10016. P.364
- Dowidar, S.A. (2002) Assessment of the influence of cyanobacterium Anabaena Oryza on growth and some physiological activities of Sorghum bicolor L. Az. Pharm. Sci., 29, 1-18
- Dreakeiwicz, M. (1994) Chlorophyllase: occurrence, functions, mechanism of action, effect of external and internal factors. Photosynth., 30, 321-332
- El-Sheekh, M.M., El-Shouny, W.A., Osman, M.E.H. and El-Gammal, E.W.E. (2005) Growth and heavy metals removal efficiency of Nostoc muscorum and Anabaena subcylindrica in sewage and industrial wastewater effluents. Environ. Toxicol. and Pharma., 19, 357-365
- Fernandes, J.C. and Henriques, F.S. (1991) Biochemical, physiological and structural effects of excess Cu in plants. Bot. Rev., 57, 246-273
- Florence, T.M. and Stauber, J.L. (1986) Toxicity of copper complexes to the marine diatom Nitzschia closterium. Aquat. Toxicol., 8, 11-26
- Florence, T.M., Lumsden, B.G. and Fardy, J.J. (1984) Algae as indicators of copper speciation. (In: Kramer, C.J.M. and J.C. Duinker Eds.), Complexion of Trace Metals in Natural Waters. Dordrecht, the Netherlands: Dr. W. Junk Publishers, 411-418
- Foyer, C.H., Lelandais, M. and Kunert, K.J. (1994) Photooxidative stress in plants. Physiol. Plant., 92, 696-717
- Foyer, C.H., Looez-Delgado, H., Dat, J.F. and Scott, I.M. (1997) Hydrogen peroxide and glutathione-associated mechanisms of acclamatory stress tolerance and signaling. Physiol. Plant., 100, 241-254
- Gao, S., Yan, R., Cao, M., Yang, W., Wang, S. and Chen, F. (2008) Effects of copper on growth, antioxidant enzymes and phenylalanine ammonia-lyase activities in Jatropha curcas L. seedling. Plant Soil Environ., 54, 117-122
- Gardea-Torresdey, J.L., Becker-Hapak, M.K., Hosea, J.M. and Darnell, D.W. (1990) Effect of chemical modification of algal carboxyl groups on metal ion binding. Environ. Sci. Technol., 19, 1372-1379
- Gora, L., Van Assche, F. and Clijsters, H. (1985) Effects of toxic copper treatment on chloroplast properties of Phaseolus vulgaris. Arch. Int. Physiol. Biochim., 93, PF8
- Halder, A.K., Mishra, A.K. and Chakrabarty, P.K. (1991) Solubilization of inorganic phosphates by Bradyrhizobium. Ind. Exp. Biol., 29, 28-31
- Haroun, SA. and Hussein, M.H. (2003) The promotive effect of algal biofertilizers on growth, protein pattern and some metabolic activities of Lupinus termis plants grown in siliceous soil. Asian Plant Sci., 2, 944-951
- Havaux, M., Eymery, F., Porfirova, S., Rey, P. and Dörmann, P. (2005a) Vitamin E protects against photoinhibition and photoxidative stress in Arabidopsis thaliana. Plant Cell,17, 3451-3469
- Hendry, G.A.F. and Grime, J.P. (1993) Methods in comparative plant ecology.Chapman and Hall, the Hague
- Horváth, G., Kissimon, J. and Faludi-Dániel, Á. (1972) Effect of light intensity on the formation of carotenoids in normal and mutant maize leaves. Phytochemistry, 11, 183-187
- Johnson, C.M., Ood, U. and Lrich, A. (1959) Analytical methods for use in plant analysis. Calif. Agric. Exp. Sta. Bull., 766, 26-78
- Jouili, H. and El-Feriani, E. (2003) Changes in antioxidant and lignifying enzyme activities in sunflower roots (Helianthus annuus) stressed with copper excess. C.R. Biol., 326, 639-644
- Katircioglu, H., Yavuz, B., Belma, A., Zehra, Y. and Tahir, A. (2006) Screening for antimicrobial agent production of some microalgae in fresh water. The Inter. Microbiol., 2, 1-9
- Kato, M. and Shimizu, S. (1987) Chlorophyll metabolism in higher plants VΙΙ-chlorophyll degradation in senescing tobacco leaves; phenolic-dependent peroxidative degredation. Cand. Bot., 65, 729-735
- Kim, C.S., Han, G.H., Kim, J.M. and Jung, J. (1993) In situ susceptibilities of photosystems I and II to photosensitized in activation via singlet oxygen mechanism. Photochem Photobiol., 57, 1069-1074
- Kissimon, J. (1999) Analysis of the photosynthetic pigment composition. Proceedings of the International Workshop and Training Course on Microalgal Biol. and Biotech. Mosonmagyar, Hungary. 13-26
- Kováčik, J., Klejdus, B., Hedbavny, J., Štrok, F. and Bačkor, M. (2009) Comparison of cadmium and copper effect on phenolic metabolism, mineral nutrients and stress-related parameters in Matricaria chamomilla plants. Plant Soil, 320, 231-242
- Lakshmi, P.T.V. and Annamalai, A. (2008) The effects of cyanobacterial (blue-green algae) culture filtrates on the biomass and biochemicals of Withania somnifera Dunnal. Asian Plant Sci., 7, 37-43
- Li, Y., Song, Y., Shi, G., Wang, J. and Hou, X. (2009) Response of antioxidant activity to excess copper in two cultivars of Brassica campestris ssp. chinensis Makino. Acta Physiol. Plant, 31, 155-162
- Likhitkar, V.S. and Tarar, J.L. (1995) Effect of presoaking seed treatment with Nostoc muscorum extract on cotton. Ann. Plant Physiol., 9, 113-116
- Manivasagaperumal, R., Vijayarengan, P., Balamurugan, S. and Thiyagarajan, G. (2011) Effect of copper on growth, dry matter yield and nutrient content of Vigna radiata (L.) wilczek. Phycol., 3, 53-62
- Martins, L.L. and Mourato, M.P. (2006) Effect of excess copper on tomato plants: growth parameters, enzyme activities, chlorophyll and mineral content. Plant Nutr., 29, 2179-2198
- Mateos-Naranjo, E., Redondo-Gomez, S., Cambrolle, J. and Figueroa, M.E. (2008) Growth and photosynthetic responses to copper stress of an invasive cordgrass, Spartina densiflora. Mar. Environ. Res., 66, 459-465
- Mohamed, S.I. (1994) Influence of heavy metals on the biological and biochemical of plants. Plant and Soil, 192, 255-263
- Mohanty, N., Vass, I. and Demeter, S. (1989) Copper toxicity affects photosystem II electrons transport at the secondary quinine acceptor, QB. Plant Physiol., 90, 175-179
- Monerri, C., Garacia-Luis, A. and Guardiola, J.L. (1986) Sugar and starch changes in pea cotyledons during germination. Physiol. Plant, 76, 45-49
- Naguib, M.I. (1963) Colorimetric estimation of plant polysaccharides. Zucker, 16, 15-18
- Naguib, M.I. (1964) Effect of sevin on carbohydrate and nitrogen metabolism during germination of cotton seeds Ind. Exp. Bot., 2, 149-152
- Naguib, M.I., Youssef, E. and Kinawy, M.M. (1968) Effect of kinetin on the nitrogen metabolism of radish plants. Bull. Fac. Sci. Cairo Univ., 42, 13-22
- Nenova, V., Merakchiy, M., Geneva, G., Zozikova, E. and Landjeva, S. (2009) Physiological response of Wheat (Triticum aestivum L.)-Aegilops Sharonensis introgression Lines to excess copper. Agron. and Crop Sci., 195, 197-203
- Osman, M.E.H., El-Sheekh, M.M., El-Naggar, A.H. and Gheda, S.F. (2010) Effect of two species of cyanobacteria as biofertilizers on some metabolic activities, growth, and yield of pea plant. Biol Fertil Soils., 46, 861-875
- Panou-Filotheou, H. and Bosabalidis, A. (2004) Root structural aspects associated with copper toxicity in oregano (Origanum vulgare subsp. hirtum). Plant Sci., 166, 1497-1504
- Passardi, F., Cosio, C., Penel, C. and Dunand, C. (2005) Peroxidases have more functions than a Swiss army knife. Plant Cell Rep., 24, 255-265
- Peng, H.Y., Yang, X.E., Yang, M.J. and Tian, S.K. (2006) Responses of antioxidant enzyme system to copper toxicity and copper detoxification in the leaves of Elsholtzia splendens. Plant Nutr., 29, 1619-1635
- Posmyk, M.M., Kontek, R. and Janas, K.M. (2009) Antioxidant enzymes activity and phenolic compounds content in red cabbage seedlings exposed to copper stress. Ecotoxicol. and Environ. Safety, 72, 596-602
- Potters, G., Pasternak, T., Guisez, Y., Palmeand, K. and Jansen, M. (2007) Stress-induced morphogenic responses: growing out of trouble. Trends Plant Sci., 12, 98-105
- Rippka, R., Demellas, J., Waterbury, J.B., Herdman, M. and Stanier, R.Y. (1979) Generic assignments, strain histories and properties of pure culture of cyanobacter. Gen. Microbiol., 111, 1-61
- Rodgers, G.A., Bergman, B., Henriksson, E. and Urdis, M. (1979) Utilization of blue-green as biofertilizers. Plant and Soil, 52, 99-107
- Schűtzendubel, A. and Polle, A. (2002) Plant responses to a biotic stresses: heavy metal-induced oxidative stress and protection by mycorrhization. Exp. Bot., 53, 1351-1365
- Sharma, A. and Singh, G.S. (2013) Studies on the effect of Cu (II) ions on the antioxidant enzymes in chickpea (Cicer arietinum L) cultivars. Journal of Stress Physiology & Biochemistry, 9(1), 5-13
- Singh, V.P. and Trehan, T. (1973) Effect of extracellular products of Aulesira fertilissuna on the growth of rice seedlings. Plant and Soil, 38, 457-464
- Soliman, A.R.I., Hussein, M.H., Shaban-Dossouki, S.A. and Torky, Y. (2000) Production of phytohormones by some blue green algae used as soil inoculate for rice fields in Egypt. Union Arab Biol., Cairo, (8B), 83-102
- Sultan, P., Williams, S.M.I., Jan, A. and Ahmad, N. (2007) Biochemical basis of heavy metal induced stress tolerance in the N2 fixing cyanbacterium Anabaena Doliolum. Afric. Clini. and Exp. Microbiol., 8, 8-22
- Sunda, W.G. and Huntsman, S.A. (1983) Effect of competitive interaction between manganese and growth in estuarine and oceanic species of the diatom Thalossiosira. Limnol. Oceanogr., 28, 924-934
- Tanyolac, D., Ekmekci, Y. and Unalan, S. (2007) Changes in photochemical and antioxidant enzyme activities in maize (Zea mays L.) leaves exposed to excess copper. Chemosphere, 67, 89-98
- Teisseire, H. and Guy, V. (2000) Copper-induced changes in antioxidant enzymes activities in fronds of duckweed (Lemna minor). Plant Sci., 153, 65-72
- Verma, S. and Dubey, R.S. (2001) Effect of cadmium on soluble sugars and enzymes of their metabolism. Biol. Plant., 44, 117-123
- Viarengo, A., Pertica, M., Manciell, G., Capell, R. and Orunesu, M. (1981) Effect of copper on the uptake of amino acids, on protein synthesis and on ATP content in different tissues of Mytilus galloprovincialis. Mar. Envir. Res., 4, 145-152
- Woolhouse, H.W. (1983) Toxicity and tolerance in the response of plants to metals. In: Lang, O.L., Nobel, S., Osmand, L.B. and Ziegler, H. (eds) 245-300. Physiological plant ecology ΙΙΙ. Encyclopaedia of plant physiology 99, New series 12c, Springer Verlag, Berlin
- Xiong, Z.T., Liu, C. and Geng, B. (2006) Phytotoxic effects of copper on nitrogen metabolism and plant growth in Brassica penkinensis. Rupr. Ecotoxicol. Environ. Saf., 64, 273-280
- Yang, C.M., Change, I.F., Lin, S.J. and Chou, C.H. (2004) Effects of three allelopathic phenolics on chlorophyll accumulation of rice (Oryza sativa) seedlings. II. Stimulation of consumption-orientation. Bot. Bull. Acad. Sin., 45, 119-125
- Yanni, Y.G. (1991) Protection of rice against “rosette long-day” disorder by inoculation with Aulosira fertilissima vs treatment with gibberellic acid. World Microbiol Biotech., 7, 436-438
- Yruela, I. (2005) Copper in plants. Braz. Plant Physiol., 17, 145-156
- Yurekli, F. and Porgali, Z.B. (2006) The effects of excessive exposure to copper in bean plants. Acta Biol. Cracov., 48, 7-13