Studying the Efficiency of Suaeda Maritima (L.) Dumort in Phytoremediation of Saline Soil
محورهای موضوعی : Stress PhysiologyMohamed Abd El-Maboud 1 , Walaa Elshalakani 2
1 - Plant Ecology and Range Management,
Desert Research Center, Cairo, Egypt.
2 - Chemistry Department, Faculty of Agriculture, Ain Shams University, Cairo, Egypt
کلید واژه: Salinity, Heavy metals, Total phenols, Suaeda maritima, inorganic solutes,
چکیده مقاله :
The true halophyte, Suaeda maritima is growing naturally at the Mediterranean coast. Terminal shoots and roots of S. maritima and its associated soil were taken from two sites across the Damietta- Port Said coastal road, Egypt through winter and summer, 2019. Soil physical and chemical properties were investigated in details. In addition to heavy metals, water content, phenols content, total ash, Na, K, Ca, Mg, and Cl were determined in both shoots and roots. Also, translocation factor and bioconcentration factor for heavy metals were assessed. Soil near the S. maritima rhizosphere was highly saline and had lower concentration of most metals (Al, Ba, Cd, Cu, Fe, Mo, Pb, Si) and total heavy metals during summer. The heavy metals were highly intake by roots and more sequestered in shoots and roots in summer. Water content and ash content were higher in winter season while the reverse was observed in total phenols and Na in both shoots and roots. Ca content accumulated highest at site 2 during summer for shoots and those growing at site 1 for roots either in winter or summer. Concerning Mg, the maximum value was recorded in plants at site 1 through summer in shoots and roots. Cl content was the greatest accumulation in S. maritima at site 1 through summer in shoots and those at site 2 in winter for roots.
Abd El-Maboud, M. M. 2019. Seasonal variations effect on antioxidant compounds and their role in the adaptation of some halophytes at Wadi Gharandal, Southwest Sinai. Annals of Agricultural Science, 64: 161-166. doi:10.1016/j.aoas.2019.11.001.
Abd El-Maboud, M. M. 2021. Seasonal physiological response of Salicornia europaea L. Research & Reviews: Journal of Botanical Sciences, 10: 118-124.
Abd El-Maboud, M. M., and E. R. Elsharkawy, 2021. Ecophysiological responses of the genus Sarcocornia A. J. Scott growing at the Mediterranean Sea coast, Egypt. Pakistan Journal of Botany, 53(2): 517-523.
Abd El-Maboud, M. M., and O. H. Abd Elbar, 2020. Adaptive responses of Limoniastrum monopetalum (L.) Boiss. growing naturally at different habitats. Plant Physiology Reports, 25: 325-334.
Alhdad, G. M., and T. J. Flowers, 2021. Salt tolerance in the halophyte Suaeda maritima L. Dum. —the effect of oxygen supply and culture medium on growth. Journal of Soil Science and Plant Nutrition, 21: 578-586.
Behr, J. H., A. Bouchereau, S. Berardocco, C. E. Seal, T. J. Flowers and C. Zörb, 2017. Metabolic and physiological adjustment of Suaeda maritima to combined salinity and hypoxia. Annals of Botany, 119: 965–976.
Beulah, G., D. Divya, N. S. Kumar, M. V. N. Sravya, K. G. Rao, A. D. Chintagunta, G. Divya, S. H. Chandana, B. D. Blessy and G. Simhachalam, 2021. Purification and characterization of bioactive compounds extracted from Suaeda maritima leaf and its impact on pathogenicity of Pseudomonas aeruginosa in Catla catla fingerlings. AMB Expr, 11: 135.
Bilal, M. A., and M. A. Hussain, 2019. Antibacterial activity of different crude extracts of Suaeda maritima used traditionally for the treatment of hepatitis. Biocatalysis and Agricultural Biotechnology, 22: 101383.
Bouyoucos, G. J. 1951. A calibration of the hydrometer method for making mechanical analyses of soils. Agron Jour, 43: 434-438.
Casella, G. 2008. Statistical Design. 1st ed. Springer, Gainesville, FL 32611-8545, USA
Chen, S., Q. Wang, H. Lu, J. Li, D. Yang, J. Liu, and C. Yan, 2019. Phenolic metabolism and related heavy metal tolerance mechanism in Kandelia Obovata under Cd and Zn stress. Ecotoxicology and Environmental Safety, 169: 134-143.
Harris, D. C. 2007. Quantitative chemical analysis. W. H. Freeman and Company New York 7th ed. 424-452.
Hoffmann, J., R. Berni, J. F. Hausman and G. Guerriero, 2020. A review on the beneficial role of silicon against salinity in non-accumulator crops: tomato as a model. Biomolecules, 1: 1284.
Ibraheem, F., A. Al-Zahrani and A. Mosa, 2022. Physiological Adaptation of Three Wild Halophytic Suaeda Species: Salt Tolerance Strategies and Metal Accumulation Capacity. Plants, 11: 537.
Ismail, B.P. 2017. 'Ash Content Determination'. In: Food Analysis Laboratory Manual. Food Science Text Series. Springer, Cham.
Jackson, M. L. 1967. Soil Chemical Analysis. Prentice Hall of India Private, New Delhi.
Kisa, D., M. Elmastas L. Ӧztürk and Ӧ. Kayir, 2016. Responses of the phenolic compounds of Zea mays under heavy metal stress. App Biol Chem, 59 (6): 813-820.
Kojima, Y. and Y. J. J. E. Machida, 2020. DNA–protein crosslinks from environmental exposure: Mechanisms of formation and repair. Environ. Mol. Mutagenesis, 61: 716-729.
Liang, L., W. Liu, Y. Sun, X. Huo, S. Li and Q. Zhou, 2016. Phytoremediation of heavy metal contaminated saline soils using halophytes: current progress and future perspectives. Environmental Reviews, 25(3): 269-281.
Mujeeb, A., I. Aziz, M. Z. Ahmed, S. Shafiq, S. Fatima and S. K. Alvi, 2021. Spatial and seasonal metal variation, bioaccumulation and biomonitoring potential of halophytes from littoral zones of the Karachi Coast. Science of the Total Environment, Vol. 781 Pages 146715.
Mukherjee, P., P. Pramanick, S. Zaman and A. Mitra, 2021. Phytoremediation of heavy metals by the dominant mangrove associate species of Indian Sundarbans. Journal of Environmental Engineering and Landscape Management, 29: 391-402.
Nawaz, I., M. Iqbal, M. Bliek and H. Schat, 2017. Salt and heavy metal tolerance and expression levels of candidate tolerance genes among four extremophile Cochlearia species with contrasting habitat preferences. Science of the Total Environment, 584:731-741.
Pan, X., P. Wu and X. Jiang, 2016. Levels and potential health risk of heavy metals in marketed vegetables in Zhejiang, China. Scientific Reports, 6: 20317.
Rainwater, F. H. and L. L. Thatcher, 1960. Methods for Collection and Analysis of Water Samples. U.S. Geol. Survey. Water Supply, pp. 301.
Reitemeier, R. F. 1943. Semimicro analysis of saline soil solutions. Ind. Eng. Chem. Anal. Ed., 15: 393-402.
Rout, G. R. 2015. Role of iron in plant growth and metabolism. Reviews in Agricultural Science, 3: 1-2.
Rowell, D. L. 1994. Soil Science: Methods and Applications. Dept of Soil Science, Univ. of Reading. Co-published in the US with John Willey and Sons Inc.; New York.
Samundeeswari, S. and S. Lakshmi, 2018. Heavy metals phytoremediation of Suaeda maritima (L.) Dumort. and Sesuvium portulacastrum L. from influence of tannery effluents. International Journal of Current Research in Life Sciences, 7(4): 1934-1941.
Satarug, S., G. C Gobe, D. A. Vesey and K. R. Phelps, 2020. Cadmium and Lead Exposure, Nephrotoxicity, and Mortality. Toxics, 8(4):86. doi: 10.3390/toxics8040086. PMID: 33066165; PMCID: PMC7711868.
Shah, S. B. 2021. Heavy Metals in the Marine Environment—An Overview. In: Heavy Metals in Scleractinian Corals. SpringerBriefs in Earth Sciences. Springer, Cham.
Sharma, A., B. Shahzad, A. Rehman, R. Bhardwaj, M. Landi and B Zheng, 2019. Response of phenylpropanoid pathway and the role of polyphenols in plants under abiotic stress. Molecules, 24, 2452;
Skoog, D. A., D. M. West and F. J. Holler, 2012. Fundamentals of Analytical Chemistry, 9th Edition,Thomson Learning, Inc, USA.
Vadyanitskii, Y. N. 2016. Standards for the contents of heavy metals in soils of some states. Annals of Agrarian Science, 14: 257-263.
Wang, L., X. Wang, L. Jiang, K. Zhang, M. Tanveer, C. Tian and Z. Zhao, 2021. Reclamation of saline soil by planting annual euhalophyte Suaeda salsa with drip irrigation: A three-year field experiment in arid northwestern China. Ecological Engineering, 159, p.106090.
Wiszniewska, A., I. Kamińska, A. Koźmińska and E. Hanus-Fajerska, 2018. 'Aspects of Co-tolerance Towards Salt and Heavy Metal Stresses in Halophytic Plant Species'. In: Hasanuzzaman, M., Fujita, M., Oku, H., Nahar, K., Hawrylak-Nowak, B. (eds) Plant Nutrients and Abiotic Stress Tolerance. Springer, Singapore.
Yan, A., Y. Wang, S. N. Tan, M. L. Yusof, S. Ghosh and Z. Chen, 2020. Phytoremediation: a promising approach for revegetation of heavy metal-polluted land. Front. Plant Sci., 11: 359.
Yan, G., X. Fan, W. Zheng, Z. Gao, C. Yin, T. Li and Y. Liang, 2021. Silicon alleviates salt stress-induced potassium deficiency by promoting potassium uptake and translocation in rice (Oryza sativa L.). Journal of Plant Physiology, 258-259, 153379.