Published January 1, 2022
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Sublethal toxicity of cadmium chloride (CdCl ) on the growth parameters of Xenopus laevis tadpoles (Daudin, 1802)
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Tabat, Jacob Lucky, Ja, Adakole, Imk, Gadzama (2022): Sublethal toxicity of cadmium chloride (CdCl ) on the growth parameters of Xenopus laevis tadpoles (Daudin, 1802). International Journal of Fisheries and Aquatic Studies 10 (1): 23-28, DOI: 10.22271/fish.2022.v10.i1a.2624, URL: http://dx.doi.org/10.22271/fish.2022.v10.i1a.2624
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References
- 1. Daniel Hocking J, Kimberly Babbitt J. Amphibian Contributions to Ecosystem Services. Herpetological Conservation and Biology. 2014;9(1):1-17.
- 2. Ali H, Khan E, Ilahi I. Environmental chemistry and ecotoxicology of hazardous heavy metals: environmental persistence, toxicity, and bioaccumulation. Journal of Chemistry. 2019, 1-14.
- 3. Enuneku AA, Ezemonye LI. Acute toxicity of cadmium and lead to adult toad Bufo maculatus. Asian Journal of Biological and Life Sciences. 2012;1(3):238-241.
- 4. Rourke DP. Amphibians used in research and teaching. ILAR Journal. 2007;48(3):183-187.
- 5. Hussain SM, Javed M, Asghar S. Hussain M, Abdullah S, Raza SA, et al. Studies on growth performance of metals mixture stressed Cirrhina mrigala in earthen ponds. Pakistan. Journal of Agricultural Science. 2010;47(3):263-270.
- 6. Tabrez S, Zughaibi TA, Javed M. Bioaccumulation of heavy metals and their toxicity assessment in Mystus species. Saudi Journal of Biological Sciences. 2021;28(2):1459-1464.
- 7. Khan MS, Javed M, Rehman MT, Urooj M, Ahmad MI. Heavy metal pollution and risk assessment by the battery of toxicity tests. Scientific Reports. 2020;10(1):1-10.
- 8. Chauhan A, Islam A, Javed H, Kumar S. Facile fabrication of Amberlite XAD-16 with dipicolylamine for remediation of industrial wastewater containing lead and copper: Isotherm, kinetics, thermodynamics and selectivity studies. Microchemical Journal. 2019;146:606-613.
- 9. Abiona OO, Anifowose AJ, Awojide SH, Adebisi OC, Adesina BT, Ipinmoroti MO. Histopathological biomarking changes in the internal organs of Tilapia (Oreochromis niloticus) and catfish (Clarias gariepinus) exposed to heavy metals contamination from Dandaru pond, Ibadan, Nigeria. Journal of Taibah University for Science. 2019;13(1):903-911.
- 10. Ojha S, Roy A, Mohapatra AK. Environmentally relevant concentrations of Cadmium impair morpho-physiological development and metamorphosis in Polypedates maculatus (Anura, Rhacophoridae) tadpoles. Environmental Chemistry and Ecotoxicology. 2021;3:133-141.
- 11. James SM, Little EE, Semlitsch RD. Metamorphosis of two amphibian species after chronic cadmium exposure in outdoor aquatic mesocosms. Environmental Toxicology and Chemistry: An International Journal. 2005;24(8):1994-2001.
- 12. Gay F, Laforgia V, Caputo I, Esposito C, Lepretti M, Capaldo A. Chronic exposure to cadmium disrupts the adrenal gland activity of the newt Triturus carnifex (Amphibia, Urodela). Biomedical Research international. 2013;13:1-6.
- 13. Viarengo A. Biochemical effects of trace metals. Marine Pollution Bulletin. 1985;16(4):153-158.
- 14. McCarthy J, Shugart L. Biomarkers of environmental contamination, Lewis Publication. Boca Raton. USA. 1990.
- 15. Idrees N, Tabassum B, Abdallah EF, Hashem A, Sarah R, Hashim M. Groundwater contamination with cadmium concentrations in some West UP Regions, India. Saudi Journal of Biological Sciences. 2018;25(7):1365-1368.
- 16. Altindag A, Yigit S. Assessment of heavy metal concentrations in the food web of lake Beysehir, Turkey. Chemosphere. 2005;60(4):552-556.
- 17. Wallingford JB, Liu KJ, Zheng Y. Xenopus. Current Biology. 2010;20(6):R263-R264.
- 18. Morris BL. Understanding and targeting the C-terminal Binding Protein (CtBP) substrate-binding domain for cancer therapeutic development. Virginia Commonwealth University. 2016.
- 19. Green WW, Mirza RS, Wood CM, Pyle GG. Copper binding dynamics and olfactory impairment in fathead minnows (Pimephales promelas). Environmental science and technology. 2010;44(4):1431-1437.
- 20. Rohr JR, Kerby JL, Sih A. Community ecology as a framework for predicting contaminant effects. Trends Ecological Evolution. 2006;21:606-613.
- 21. David M, Kartheek RM. Malathion acute toxicity in tadpoles of Duttaphrynus melanostictus, morphological and behavioural study. The Journal of Basic and Applied Zoology. 2015;72:1-7.
- 22. Guzy JC, McCoy ED, Deyle AC, Gonzalez SM, Halstead N, Mushinsky HR. Urbanization interferes with the use of amphibians as indicators of ecological integrity of wetlands. Journal of Applied Ecology. 2012;49(4):941- 952.
- 23. ASTM Association of Test and Material. Standard guide for conducting the Frog Embryo Teratogenesis Assay Xenopus (FETAX), Philadelphia. 1998, 16.
- 24. Environmental Protection Agency. Methods for Measuring the Acute Toxicity of Effluents and Receiving Waters to Freshwater and Marine Organisms (5th Edition) (1200 Pennsylvania Avenue, Washington DC, USA). 2002.
- 25. Gosner KL. A simplified table for staging anuran embryos and larvae with notes on identification. Herpetological. 1960;16(3):183-190.
- 26. Sharma B, Patino R. Exposure of Xenopus laevis tadpoles to cadmium reveals concentration-dependent bimodal effects on growth and monotonic effects on development and thyroid gland activity. Toxicological Sciences. 2008;105(1):51-58.
- 27. Uhlenhuth E. Relation between thyroid gland, metamorphosis, and growth. The Journal of general physiology. 1919;1(4):473-482.
- 28. Zhang Y, Huang D, Zhao D, Long J, Song G, Li AN. Long-term toxicity effects of cadmium and lead on Bufo raddei tadpoles. Bulletin of Environmental Contamination and Toxicology. 2007;79(2):178-183.
- 29. Ranatunge RAAR, Wijesinghe MR, Ratnasooriya WD, Dharmarathne HASG, Wijesekera RD. Cadmium-Induced Toxicity on Larvae of the Common Asian Toad Duttaphrynus Melanostictus (Schneider 1799): Evidence from Empirical Trials. Bulletin of Environmental Contamination and Toxicology. 2012;89(1):143-146.
- 30. Wang C, Liang G, Chai L, Wang H. Effects of copper on growth, metamorphosis and endocrine disruption of Bufo gargarizans larvae. Aquatic Toxicology. 2016;170:24-30.
- 31. Gross JA, Chen TH, Karasov WH. Lethal and sublethal effects of chronic cadmium exposure on northern leopard frog (Rana pipiens) tadpoles. Environmental Toxicology and Chemistry: An International Journal. 2007;26(6):1192-1197.
- 32. Sun N, Wang H, Ju Z, Zhao H. Effects of chronic cadmium exposure on metamorphosis, skeletal development, and thyroid endocrine disruption in Chinese toad Bufo gargarizans tadpoles. Environmental Toxicology and Chemistry. 2018;37(1):213-223.
- 33. Haywood LK, Alexander GJ, Byrne MJ, Cukrowska E. Xenopus laevis embryos and tadpoles as models for testing for pollution by zinc, copper, lead and cadmium. African Zoology. 2004;39(2):163-174.
- 34. Hu YC, Tang Y, Chen ZQ, Chen JY, Ding GH. Evaluation of the sensitivity of Microhyla fissipes tadpoles to aqueous cadmium. Ecotoxicology. 2019;28(10):1150-1159.