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Research Articles

Carboxylic acid-induced freshwater acidification effects on behavior and operculum ultrastructure in the gastropod mollusc Bellamya bengalensis

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Pages 1-21 | Received 18 Jul 2023, Accepted 21 Nov 2023, Published online: 01 Dec 2023

References

  • Owokotomo AI, Ajayi OO, Alabi OO, et al. Watershed land use, surface water vulnerability and public health risks of two urban rivers, Ado-Ekiti, South-West Nigeria. SN Applied Sciences. 2020;2(11):1–21. doi:10.1007/s42452-020-03572-7
  • Saha S, Chandra Saha N, Chatterjee A, et al. Integrated multi-biomarker responses in Mozambique tilapia, Oreochromis mossambicus under acute and chronic Diazinon® exposures. Chemistry and Ecology. 2023;39(3):235–255.
  • Lyu L, Liang H, Huang Y, et al. Annual hypoxia causing long-term seawater acidification: evidence from low-molecular-weight organic acids in the Changjiang Estuary and its adjacent sea area. Sci Total Environ. 2022;818:151819. doi:10.1016/j.scitotenv.2021.151819
  • Lyu L-N, Lu D, Sun C, et al. A new software of calculating the pH values of coastal seawater: considering the effects of low molecular weight organic acids. Mar Chem. 2019;211:108–116. doi:10.1016/j.marchem.2019.03.011
  • Lyu L-N, Sun C, Jin H, et al. Annual variation of low-molecular-weight organic acids in the surface seawater of the Jiaozhou Bay. Mar Chem. 2017;194:43–54. doi:10.1016/j.marchem.2017.03.008
  • Garcia-Segura S, Salazar R, Brillas E. Mineralization of phthalic acid by solar photoelectro-Fenton with a stirred boron-doped diamond/air-diffusion tank reactor: influence of Fe3+ and Cu2+ catalysts and identification of oxidation products. Electrochim Acta. 2013;113:609–619. doi:10.1016/j.electacta.2013.09.097
  • Velegraki T, Balayiannis G, Diamadopoulos E, et al. Electrochemical oxidation of benzoic acid in water over boron-doped diamond electrodes: statistical analysis of key operating parameters, kinetic modeling, reaction by-products and ecotoxicity. Chem Eng J. 2010;160(2):538–548. doi:10.1016/j.cej.2010.03.065
  • Del Olmo A, Calzada J, Nuñez M. Benzoic acid and its derivatives as naturally occurring compounds in foods and as additives: uses, exposure, and controversy. Crit Rev Food Sci Nutr. 2017;57(14):3084–3103. doi:10.1080/10408398.2015.1087964
  • Sharma P, Garai P, Banerjee P, et al. Behavioral toxicity, histopathological alterations and oxidative stress in Tubifex tubifex exposed to aromatic carboxylic acids-acetic acid and benzoic acid: A comparative time-dependent toxicity assessment. Sci Total Environ. 2023;876:162739. doi:10.1016/j.scitotenv.2023.162739
  • Leduc AO, Munday PL, Brown GE, et al. Effects of acidification on olfactory-mediated behaviour in freshwater and marine ecosystems: a synthesis. Philos Trans R Soc, B. 2013;368(1627):20120447. doi:10.1098/rstb.2012.0447
  • Weiss LC, Pötter L, Steiger A, et al. Rising pCO2 in freshwater ecosystems has the potential to negatively affect predator-induced defenses in Daphnia. Curr Biol. 2018;28(2):327–332. e323. doi:10.1016/j.cub.2017.12.022
  • Monteith D, Hildrew A, Flower R, et al. Biological responses to the chemical recovery of acidified fresh waters in the UK. Environ Pollut. 2005;137(1):83–101. doi:10.1016/j.envpol.2004.12.026
  • Гадер А, Мохаммад К, Фадия А-ХХ, et al. Comparative direct esterification of glycerol with phenyl acetic acid, and benzoic acid. Аллея науки. 2020;1(12):3–9.
  • Økland J. Effects of acidic water on freshwater snails: results from a study of 1000 lakes throughout Norway. Environ Pollut. 1992;78(1–3):127–130. doi:10.1016/0269-7491(92)90020-B
  • Muniz IP. Freshwater acidification: its effects on species and communities of freshwater microbes, plants and animals. P Roy Soc Edinb B. 1990;97:227–254. doi:10.1017/S0269727000005364
  • Balian EV, Segers H, Martens K, et al. The freshwater animal diversity assessment: an overview of the results. Cham: Springer; 2008.
  • Beaune D, Sellier Y, Luquet G, et al. Freshwater acidification: an example of an endangered crayfish species sensitive to pH. Hydrobiologia. 2018;813:41–50. doi:10.1007/s10750-018-3504-4
  • Parker LM, Ross PM, O’Connor WA, et al. Wright JM: predicting the response of molluscs to the impact of ocean acidification. Biology. 2013;2(2):651–692. doi:10.3390/biology2020651
  • Ross PM, Parker L, Byrne M. Transgenerational responses of molluscs and echinoderms to changing ocean conditions. ICES J Mar Sci. 2016;73(3):537–549. doi:10.1093/icesjms/fsv254
  • Webster KL, Leach JA, Houle D, et al. Acidification recovery in a changing climate: observations from thirty-five years of stream chemistry monitoring in forested headwater catchments at the Turkey Lakes watershed, Ontario. Hydrol Processes. 2021;35(9):e14346. doi:10.1002/hyp.14346
  • Solomon CT, Jones SE, Weidel BC, et al. Ecosystem consequences of changing inputs of terrestrial dissolved organic matter to lakes: current knowledge and future challenges. Ecosystems. 2015;18:376–389. doi:10.1007/s10021-015-9848-y
  • Pletterbauer F, Melcher A, Graf W. Climate change impacts in riverine ecosystems. Riverine Ecosys Manage Aquat Ecol Ser. 2018;8:203–223. doi:10.1007/978-3-319-73250-3_11
  • APHA, AWWA, WEF. Standard methods for the examination of water and waste water, 22nd edition. Washington, DC: American Public Health Association; 2012.
  • Cagauan AG, Galaites MC, Fajardo LJ. Evaluation of botanical piscicides on Nile tilapia Oreochromis niloticus L. and mosquito fish Gambusia affinis Baird and Girard. In: Proceedings on ISTA: 2004. 12–16.
  • Del Piero S, Masiero L, Casellato S. Toxicity and bioaccumulation of fluoride ion on Branchiura sowerbyi, Beddard, (Oligochaeta, Tubificidae). Zoosymposia. 2014;9:44–50. doi:10.11646/zoosymposia.9.1.9
  • Adeogun A, Chukwuka A. Effect of textile factory effluent on otolith and somatic growth parameters in Clarias gariepinus. Zoologist. 2011;9:70–77.
  • Newman MC, Ownby DR, Mézin LC, et al. Applying species-sensitivity distributions in ecological risk assessment: assumptions of distribution type and sufficient numbers of species. Environ Toxicol Chem. 2000;19(2):508–515.
  • Dowse R, Tang D, Palmer CG, et al. Risk assessment using the species sensitivity distribution method: data quality versus data quantity. Environ Toxicol Chem. 2013;32(6):1360–1369. doi:10.1002/etc.2190
  • Reish DJ, Oshida OS. Manual of methods in aquatic environment research. Part 10, Short Term Static Bioassay. FAO Fish Technology Paper. Rome: Food & Agriculture Org; 1987.
  • Dhara K, Saha S, Pal P, et al. Biochemical, physiological (haematological, oxygen-consumption rate) and behavioural effects of mercury exposures on the freshwater snail, Bellamya bengalensis. Comp Biochem Phys C. 2021;251:109195.
  • Adeogun A, Babatunde T, Chukwuka A. Evaluation of response patterns in somatic and otolith features of laboratory-reared and wild clarias exposed to industrial effluent. Res J Appl Sci Eng Technol. 2013;5:626–634. doi:10.19026/rjaset.5.4999
  • Saha S, Chukwuka AV, Mukherjee D, et al. Chronic effects of diazinon® exposures using integrated biomarker responses in freshwater walking catfish, Clarias batrachus. Applied Sciences. 2021;11(22):10902. doi:10.3390/app112210902
  • Kaviraj A, Bhunia F, Saha N. Toxicity of methanol to fish, crustacean, oligochaete worm, and aquatic ecosystem. Int J Toxicol. 2004;23(1):55–63. doi:10.1080/10915810490265469
  • Jerome FC, Hassan A, Omoniyi-Esan GO, et al. Metal uptake, oxidative stress and histopathological alterations in gills and hepatopancreas of callinectes amnicola exposed to industrial effluent. Ecotoxicol Environ Saf. 2017;139:179–193. doi:10.1016/j.ecoenv.2017.01.032
  • Connell DW, Qiming JY, Verma V. Influence of exposure time on toxicity—An overview. Toxicology. 2016;355:49–53. doi:10.1016/j.tox.2016.05.015
  • Broderius S, Kahl M. Acute toxicity of organic chemical mixtures to the fathead minnow. Aquat Toxicol. 1985;6(4):307–322. doi:10.1016/0166-445X(85)90026-8
  • Gillette R, Saeki M, Huang R-C. Defense mechanisms in notaspid snails: acid humor and evasiveness. J Exp Biol. 1991;156(1):335–347. doi:10.1242/jeb.156.1.335
  • Herberholz J, Marquart GD. Decision making and behavioral choice during predator avoidance. Front Neurosci. 2012;6:125. doi:10.3389/fnins.2012.00125
  • Zakharov I. Avoidance behavior of the snail. Neurosci Behav Physiol. 1994;24(1):63–69. doi:10.1007/BF02355654
  • Pynnönen K. Effect of pH, hardness and maternal pre-exposure on the toxicity of Cd, Cu and Zn to the glochidial larvae of a freshwater clam Anodonta cygnea. Water Res. 1995;29(1):247–254. doi:10.1016/0043-1354(94)00126-R
  • Chase R. Lessons from snail tentacles. Chem Senses. 1986;11(4):411–426. doi:10.1093/chemse/11.4.411
  • Audesirk T, Audesirk G. Behavior of gastropod molluscs. In: Willows AOD, editor. The mollusca: Neurobiology and behavior, part 1 (Vol. 8). Orlando, FL: Academic Press; 1985. p. 1–94.
  • Vehovszky Á, Horváth R, Farkas A, et al. The allelochemical tannic acid affects the locomotion and feeding behaviour of the pond snail, Lymnaea stagnalis, by inhibiting peripheral pathways. Invertebr Neurosci. 2019;19:1–12. doi:10.1007/s10158-019-0229-7
  • Dhara K, Chukwuka AV, Saha S, et al. Effects of short-term selenium exposure on respiratory activity and proximate body composition of early-life stages of Catla catla, Labeo rohita and Cirrhinus mrigala. Environ Toxicol Pharmacol. 2022;90:103805. doi:10.1016/j.etap.2021.103805
  • Chukwuka AV, Saha S, Mukherjee D, et al. Deltamethrin-Induced respiratory and behavioral effects and adverse outcome pathways (AOP) in short-term exposed Mozambique Tilapia, Oreochromis mossambicus. Toxics. 2022;10(11):701. doi:10.3390/toxics10110701
  • Panda F, Pati SG, Bal A, et al. Control of invasive apple snails and their use as pollutant ecotoxic indicators: A review. Environ Chem Lett. 2021;19(6):4627–4653. doi:10.1007/s10311-021-01305-9
  • Saha N, Bhunia F, Kaviraj A. Comparative toxicity of three organic acids to freshwater organisms and their impact on aquatic ecosystems. Hum Ecol Risk Assess. 2006;12(1):192–202. doi:10.1080/10807030500430625
  • Cole GA, Weihe PE. Textbook of limnology (5th ed.). Long Grove, IL: Waveland Press; 2015.
  • Alyakrinskaya I. Functional significance and weight properties of the shell in some mollusks. Biol Bull. 2005;32(4). doi:10.1007/s10525-005-0118-y
  • Leeuwis RHJ, Gamperl AK. Adaptations and plastic phenotypic responses of marine animals to the environmental challenges of the high intertidal zone. 2022.
  • Marshall DJ, McQuaid CD, Williams GA. Non-climatic thermal adaptation: implications for species’ responses to climate warming. Biol Lett. 2011;7(1):160. doi:10.1098/rsbl.2010.1033
  • Ries JB, Cohen AL, McCorkle DC. Marine calcifiers exhibit mixed responses to CO2-induced ocean acidification. Geology. 2009;37(12):1131–1134. doi:10.1130/G30210A.1
  • McClure KJ. Geographic variation in the morphology, diet, and performance of an intertidal snail (Doctoral dissertation). Boston: Northeastern University; 2017.
  • Mollapour M, Shepherd A, Piper PW. Novel stress responses facilitate Saccharomyces cerevisiae growth in the presence of the monocarboxylate preservatives. Yeast. 2008;25(3):169–177. doi:10.1002/yea.1576
  • Banfi S, Maiocchi A, Moggi A, et al. Hydrogen peroxide oxygenation of alkanes catalysed by manganese (III)-tetraarylporphyrins: the remarkable co-catalytic effect of lipophilic carboxylic acids and heterocyclic bases. J Chem Soc, Chem Commun. 1990;24:1794–1796. doi:10.1039/c39900001794
  • Vistoli G, Pedretti A, Testa B. Assessing drug-likeness–what are we missing? Drug Discov Today. 2008;13(7–8):285–294. doi:10.1016/j.drudis.2007.11.007
  • Yang K, Wei C, Zhao G, et al. Dietary supplementation of tannic acid modulates nitrogen excretion pattern and urinary nitrogenous constituents of beef cattle. Livest Sci. 2016;191:148–152. doi:10.1016/j.livsci.2016.07.020
  • Vera T, Villanueva F, Wimmerová L, et al. An overview of methodologies for the determination of volatile organic compounds in indoor air. Appl Spectrosc Rev. 2022;57(8):625–674. doi:10.1080/05704928.2022.2085735
  • Araki A. Study on the Physiological Role of Administered Acetic Acid in Rats. 2017.
  • de Freitas Tallarico L. Freshwater gastropods as a tool for ecotoxicology assessments in Latin America. Am Malacol Bull. 2015;33(2):330–336. doi:10.4003/006.033.0220
  • Davies J. Aspects of the life history and physiological ecology of long-lived nudibranch molluscs (Doctoral dissertation). London: University of St. Andrews; 1993.

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