Effects of Environmentally Relevant Ammonium Nitrate Levels Caused by Agricultural Activities on Four Amphibian Species in The Eastern Black Sea Region

Effects of Environmentally Relevant Ammonium Nitrate Levels Caused by Agricultural Activities on Four Amphibian Species in The Eastern Black Sea Region

Within the scope of this research, the chronic effects of ammonium nitrate, which is the most widely used fertilizer worldwide, on the tadpoles of Marsh Frog (Pelophylax ridibundus), the Iranian LongLegged Frog (Rana macrocnemis), the Caucasian Parsley Frog (Pelodytes caucasicus) and the Variable Green Toad (Bufotes variabilis) were examined. To assess the chronic effects of the fertilizer, the tadpoles of all the species were exposed to 0, 5, 10, 15, 20, 25 mg/L concentrations in same conditions. The chronic concentrations were applied from the 25th developmental stage to the 42nd developmental stage. It was defined at the end of the experiments that although there were some variability between different populations of the same species or between different species in the observed effects, chronic levels of ammonium nitrate caused decreased growth rate, prolonging in time to complete metamorphosis, increased abnormalities, and mortality in general. Among the 4 amphibian species, the Variable Green Toad was the most damaged one in terms of growth reduction (on average 31-41 %), abnormality rates (on average 50-75 %), prolonged time to complete metamorphose (14-21 days on average) and mortality rates (%54-100). The most adaptive species and the least damaged one was an Iranian long-legged frog for growth reduction (on average 0-15 %), prolonged time to complete metamorphose (7-9 days on average), and mortality rates (%9- 15). All the harmful effects of chronic fertilizer levels caused by agricultural activities in the region had very important for examined species in our researches and it can be said that important environmental and biodiversity problems may occur if certain precautions are not taken regarding the use of the fertilizers and if the attitudes of the farmers on this issue cannot be changed.

___

  • Ak O, Çakmak E, Aksungur M, Çavdar Y, Zengin B. 2008. Akarsu Üzerindeki Doğal ve İnsan Kaynaklı Faaliyetlerin Sucul Ekosisteme Etkisine Bir Örnek: Yanbolu Deresi (Arsin, Trabzon). Erciyes Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 24: 1-2, 389-400.
  • Alford RA, Bradfield KS, Richards SJ. 2007. Global warming and amphibian losses. Nature, 447, E3-E4.
  • Amano H, Nakagawa K, Berndtsson R. 2016. Groundwater geochemistry of a nitrate-contaminated agricultural site. Environ. Earth Sci., 75: 1145.
  • Arendt J. 2009. Influence of sprint speed and body size on predator avoidance in New Mexican spadefoot toads (Spea multiplicata). Behav. Ecol., 159: 455-461.
  • Attademo A, Peltzer PM, Lajmanovich RC. 2007. Feeding habits of Physalaemus biligonigerus (Anura, Leptodactylidae) from soybean field of Córdoba province, Argentina. Russian Journal of Herpetology, 14(1): 1-6.
  • Attademo AM, Peltzer PM, Lajamanovich RC. 2005 Amphibians occurring in soybean and implications for biological control in Argentina. Agriculture, Ecosystems and Environment, 106: 389–394.
  • Baker NJ, Bancroft BA, Garcia TS. 2013. A meta-analysis of the effects of pesticides and fertilizers on survival and growth of amphibians. Sci. Total Environ., 449: 150-156.
  • Beck CW, Congdon JD. 2000. Effects of age and size at metamorphosis on performance and metabolic rates ofSouthern Toad, Bufo terrestris, metamorphs. Funct Ecol., 14:32-8
  • Beebee TJC, Griffiths RA. 2005. The amphibian decline crisis: a watershed for conservation biology? Biol. Conserv, 125: 271-285. Bellezi L, Ilha P, Schiesari L. 2015. Ontogenetic variation in the sensitivity of the gladiator frog, Hypsiboas faber, to inorganic nitrogen. Copei, 103: 14–21.
  • Berven, K. 1990. Factors affecting population fluctuations in larval and adult stages of the wood frog (Rana sylvatica). Ecology, 71:1599-1608.
  • Brockes JP, Kumar A. 2008.Comparative aspects of animal regeneration. Annu Rev Cell Dev Biol.,24:525-49.
  • Browne RK, Pomering M, Hamer AJ. 2003. High density effects on the growth, development and survival of Litoria aurea tadpoles. Aquaculture. 215: 109-121.
  • Burgett AA, Wright CD, Smith GR, Fortune DT, Johnson SL. 2007. Impact of ammonium nitrate on wood frog (Rana sylvatica) tadpoles: effects on survivorship and behavior. Herpetol. Conserv. Biol., 2: 29–34.
  • Burghelea C, Zaharescum D, Palanca A. 2013. Phenotypic indicators of developmental instability in an endemic amphibian from an altered landscape (Monegros, NE Spain). Amphib-Reptil., 34: 505-516.
  • Camargo JA, Alonso A, Salamanca A. 2005. Nitrate toxicity to aquatic animals: a review with new data for freshwater invertebrates. Chemosphere, 58: 1255-1267.
  • Camargo JA, Alonso A. 2006. Ecological andtoxicological effects of inorganic nitrogen pollution in aquatic ecosystems: a global assessment. Environment International, 32: 831-849. Carpio AJ, Oteros J, Tortosa FS, Guerrero-Casado J. 2016. Land use and biodiversity patterns of the herpetofauna: the role of olive groves. Acta Oecol., 70: 103-111.
  • Chovanec A. 1992. The influence of tadpole swimming behaviour on predation by dragonfly nymphs. AmphibiaReptilia, 13: 341-349. Clavero M, L´opez V, Franch N, Pou-Rovira Q, Queral JM. 2015. Use of seasonally flooded rice fields by fish and crayfish in a Mediterranean wetland. Agric. Ecosyst. Environ., 213: 39-46. Collins JP, Crump ML. 2009. Extinction in Our Times: Global Amphibian Decline. Oxford University Press, New York, New York, USA.
  • Cordier JM, Aguilar R, Lescano JN, Leynaud GC, Bonino A, Miloch D, Loyola R, Nori J. 2021. A global assessment of amphibian and reptile responses to land-use changes, Biological Conservation, 253: 1-10
  • Cushman SA. 2006. Effects of habitat loss and fragmentation on amphibians: a review and prospectus. Biol. Conserv., 128: 231–240.
  • Daam MA, Ilha P, Schiesari L. 2020. Acute toxicity of inorganic nitrogen (ammonium, nitrate and nitrite) to tadpoles of five tropical amphibian species. Ecotoxicology. 29: 1516-1521.
  • Davidson J, Good C, Welsh C, Summerfelt ST. 2014. Comparing the effects of high vs. low nitrate on the health, performance, and welfare of juvenile rainbow trout Oncorhynchus mykiss within water recirculating aquaculture systems. Aquacult. Eng., 59: 30-40.
  • Dayton GH, Fitzgerald LA. 2001. Competition, predation, and the distributions of four desert anurans. Oecologia, 129: 430-435. Denver RJ. 1998. Hormonal Correlates of Environmentally Induced Metamorphosis in the Western Spadefoot Toad,Scaphiopus hammondii.General and Comparative Endocrinology, 110(3): 326-336.
  • Devine GJ, Furlong, MJ. 2007. Insecticide use: contextsand ecological consequences. Agriculture and HumanValues, v.24, p.281-306, 2007.
  • Dodd CK, Barichivich WJ. 2007. Establishing a Baseline and Faunal History in Amphibian Monitoring Programs: The Amphibians of Harris Neck, GA. Southeastern Naturalist, 6:125.
  • Donald DB, Aitken WT, Paquette C, Wulff SS. 2011. Winter snowfall determines the occupancy of northern prairie wetlands by tadpoles of the wood frog (Lithobates sylvaticus). Can. J. Zool., 89: 1063-1073.
  • Egea-Serrano A, Tejedo M, Torralva M. 2009. Populational divergence in the impact of three nitrogenous compounds and their combination on larvae of the frog Pelophylax perezi (Seoane, 1885). Chemosphere, 76: 869-877.
  • Egea-Serrano A, Tejedo M, Torralva M. 2011. Behavioral responses of the Iberian waterfrog, Pelophylax perezi (Seoane, 1885), to three nitrogenous compoundsin laboratory conditions. Ecotoxicology, 20: 1246-1257.
  • Egea-Serrano A, Tejedo M. 2014. Contrasting effects of nitrogenous pollution on fitness and swimming performance of Iberian waterfrog, Pelophylax perezi (Seoane, 1885), larvae in mesocosms and field enclosures. Aquat. Toxicol., 146: 144-153.
  • Falaschi M, Melotto A, Manenti R, Ficetola GF. 2020. Invasive species and amphibian conservation. Herpetologica, 76: 216- 227.
  • Feder ME. 1983. The relation of air breathing and locomotion to predation on tadpoles, Rana berlandieri, by turtles. Physiol. Zool., 56: 522-531.
  • Foden, W, Mace G, Vi´e, J.C, Angulo A, Butchart S, DeVantier L, Dublin H, Gutsche A, Stuart S, Turak E. 2008. Species susceptibility to climate change impacts. In: Vi´e, J.C., Hilton-Taylor, C., Stuart, S.N. (Eds.), The 2008 Review of the IUCN Red List of Threatened Species. IUCN, Gland, Switzerland, pp., 77–88.
  • Gallant AL, Klaver RW, Casper GS, Lannoo MJ. 2007. Global rates of habitat loss and implications for amphibian conservation. Copeia, 2007:967-979.
  • García-Mu˜noz E, Guerrero F, Bicho RC, Parra G. 2011b. Effects of ammonium nitrate on larval survival and growth of four Iberian amphibians. Bull. Environ. Contam. Toxicol., 87: 16-20.
  • García-Mu˜noz E, Guerrero F, Parra G. 2011a. Effects of previous sublethal pulse to ammonium nitrate on mortality and total length on Epidalea calamita larvae. Chemosphere, 84: 671-675.
  • García-Padrón LY. 2021. Diet of a community of frogs in an agroecosystem in western Cuba Caribbean Herpetology, 76: 1–8.
  • Garriga N, Montori A, Llorente G.A. 2017. Impact of ammonium nitrate and sodium nitrate on tadpoles of Alytes obstetricans. Ecotoxicology, 26: 667-674.
  • Gervasi SS, Foufopoulos J. 2008. Costs of plasticity: Responses to desiccation decrease post-metamorphic immune function in a pond-breeding amphibian. Functional Ecology, 22(1):100 - 108
  • Gillespie GR. 2002. Impacts of sediment loads, tadpole density, and food type on the growth and development of tadpoles of the spotted tree frog Litoria spenceri: an in-stream experiment. Biol. Conserv., 106: 414-150.
  • Goater CP, Semlitsch RD, Bernasconi M. 1993. Effects of body size and parasite infection on the locomotory performance of juvenile toads Bufo bufo. Oikos, 66: 129-136.
  • Gomez Isaza DF, Cramp RL, Franklin CE. 2018. Negative impacts of elevated nitrate on physiological performance are not exacerbated by low pH. Aquat. Toxicol., 200: 217-225.
  • Gomez Isaza, DF., Cramp, RL, Franklin, CE, 2020., Living in polluted waters: A meta-analysis of the effects of nitrate and interactions with other environmental stressors on freshwater taxa, Environmental Pollution, 261: 114091-114502.
  • Gomez-Mestre I, Kulkarni S, Buchholz DR. 2013. Mechanisms and Consequences of Developmental Acceleration in Tadpoles Responding to Pond Drying. PLoS ONE, 8(12): e84266.
  • Gosner K. 1960. A simplified table for staging anuran embryos and larvae with notes on identification. Herpetologica, 16: 183-190.
  • Govender T, Dawood A, Esterhuyse AJ, Katerere DR. 2012. Antimicrobial properties of the skin secretions of frogs. South African Journal of Science, 108(5-6):25-30
  • Griffis-Kyle KL, Ritchie, ME. 2007. Amphibian survival, growth and development in response to mineral nitrogen exposure and predator cues in the field: an experimental approach. Oecologia, 152: 633-642.
  • Griffis-Kyle KL. 2007. Sublethal effects of nitrite on eastern tiger salamander (Ambystoma tigrinum tigrinum) and wood frog (Rana sylvatica) embryos and larvae: implications for field populations. Aquat. Toxicol., 41: 119-127.
  • Guerra C, Aráoz E. 2016. Amphibian malformations and body condition across an agricultural landscape of northwest Argentina. Dis. Aquat. Organ., 121: 105-116.
  • Guillette LJ, Edwards TM. 2005. Is nitrate an ecologically relevant endocrine disruptor in vertebrates? Integr. Comp. Biol.,45(1):19-27.
  • Gupta ML, Khosla R, Precision Nitrogen Management and Global Nitrogen Use Eficiency, 11th International Conference on Precision Agriculture, Indianapolis, Indiana, 2012.
  • Hanaˇcek, K, Rodríguez-Labajos B. 2018. Impacts of land-use and management changes on cultural agroecosystem services and environmental conflicts – a global review. Global Environ. Change 50: 41-59.
  • Harfoot MBJ, Johnston A, Balmford A, Burgess ND, Butchart SHM, Dias MP, Hazin C, Hilton-Taylor C, et al. 2021. Using the IUCN Red List to map threats to terrestrial vertebrates at global scale. Nature Ecology & Evolution.
  • Hatch AC, Blaustein AR. 2000. Combined effects of UV-B, nitrate and low pH reduce the survival and activity level of larval Cascades frogs (Rana cascadae). Archives of Environmental Contamination and Toxicology, 39:494-499.
  • Hecnar S., 1995. Acute and chronic toxicity of ammonium nitrate fertilizer to amphibians from southern Ontario. Environ. Toxicol. Chem., 14: 2131-2137.
  • Hegde G, Krishnamurthy SV, Berger G. 2019. Common frogsresponse to agrochemicals contamination in coffee plantations, WesternGhats, India. Chemistry and Ecology,35(5): 397–407
  • Herzon I, Helenius J. 2008. Agricultural drainage ditches, their biological importance and functioning. Biological Conservation, 141(5):1171-1183
  • Hooke RLB, Martín-Duque JF, Pedraza J. 2012. Land transformation by humans: A review. GSA Today, 22: 4–10.
  • Huey DW, Beitinger TL. 1980. Hematological responses of larval Rana catesbeiana to sublethal nitrite exposures. Bulletin of Environmental Contamination and Toxicology, 25: 574-577.
  • Ilha P, Schiesari L, 2014. Lethal and sublethal effects of inorganic nitrogen on gladiator frog tadpoles (Hypsiboas faber, Hylidae). Copeia, 221–230.
  • IUCN 2021. IUCN (International Union for Conservation of Nature and Natural Resources). https://www.iucnredlist.org/ search?query=Amphibians&searchType=species IUCN, 2020. The IUCN Red List of Threatened Species. International Union for Conservation of Nature and Natural Resources. https://www. iucnredlist.org.
  • Johansson M, Ra¨sa¨nen K, Merila¨ J. 2001. Comparisonof nitrate tolerance between different populations of the common frog, Rana temporaria. Aquatic Toxicology, 54: 1-14.
  • Karaoglu H, Kutrup B, Ogut H. 2010. Intraspecific differences in responses of marsh frog (Pelophylax ridibundus) tadpoles exposed to environmentally relevant and acute levels of ammonium nitrate fertilizers. J. Freshw. Ecol., 25: 353-366
  • Karaoglu H. 2011.Amonyum nitrat suni gübresinin Kafkas Kurbağası (Pelodytes caucasicus) larvaları üzerindeki akut ve kronik etkileri, Doktora tezi, Karadeniz Teknik Üniversitesi, Fen Bilimleri Enstitüsü, Trabzon, Türkiye.
  • Knutson MG, Richardson WB, Reineke DM, Gray BR, Parmelee JR, Weick SE. 2004. Agricultural ponds support amphibian populations. Ecol. Appl., 14: 669-684.
  • Krishnamurthy SV, Smith GR. 2010.Growth, abnormalities, and mortality of tadpoles of American toad exposed to combinations of malathion and nitrate. Environ Toxicol Chem., 29: 2777-2782.
  • Lent EM, Babbitt KJ. 2020. The effects of hydroperiod and predator density on growth, development, and morphology of wood frogs (Rana sylvatica). Aquat. Ecol., 54; 369-386.
  • Liu XL, Han G, Zeng J, Liu M, Li XQ, Boeckx P. 2021.
  • Identifying the sources of nitrate contamination using a combined dual isotope, chemical and Bayesian model approach in a tropical agricultural river: case study in the Mun River, Thailand. Sci. Total Environ., 760, 143938. loss and implications for amphibian conservation. Copeia 2007:967–979
  • Marco A, Cash D, Belden LK, Blaustein AR. 2001. Sensitivity to urea fertilization in three amphibian species. Arch. Environ. Contam. Toxicol., 40: 406-409.
  • Marco A, Cash D, Belden LK., Blaustein AR. 2001. Sensitivity to urea fertilization in three amphibian species. Arch. Environ. Contam. Toxicol., 40: 406-409.
  • Marco A, Ortiz-Santaliestra M.E. 2009. Impact of reactive nitrogen on amphibians. In: Heatwole, H., Wilkinson, J.W. (Eds.), Amphibian Decline: Diseases, Parasites, Maladies and Pollution, vol. 8. Surrey Beatty & Sons, Baulkham Hills, New South Wales, Australia. Amphibian Biology.
  • Marco A, Quilchano C, Blaustein AR. 1999. Sensitivity to nitrate and nitrite in pond-breeding amphibians from the Pacific Northwest. Environmental Toxicology and Chemistry, 18: 2836-2839.
  • McGurk MD, Landry F, Tang A, Hanks, CC. 2006. Acute and chronic toxicity of nitrate to early life stages of lake trout (Salvelinus namaycush) and lake whitefish (Coregonus clupeaformis). Environ. Toxicol. Chem., 25: 2187-2196.
  • McKenzie DJ, Shingles A, Claireaux G, Domenici P. 2009. Sublethal concentrations of ammonia impair performance of the Teleost fast-start escape response. Physiol Biochem Zool, 82: 353-362.
  • MEA (Millennium Ecosystem Assessment). 2005. Ecosystems and Human Well-Being: Scenarios. Island Press, Washington DC. Mester B, Lengyel S, Puky M. 2015. Low frequency of amphibian morphological anomalies in a large protected wetland and grassland complex in Hungary. Herpetol Conserv Biol.,10: 679–687.
  • Miaud C, Meril¨a J. 2001. Local adaptation or environmental induction? Causes of population differentiation in alpine amphibians. Biota, 2:31–50.
  • Miller SA, Landis AE, Theis TL. 2006. Use of Monte Carlo analysis to characterize nitrogen fluxes in agroecosystems. Environ. Sci. Technol, 40: 2324-2332.
  • Monsees, H, Klatt L, Kloas W, Wuertz S. 2017. Chronic exposure to nitrate significantly reduces growth and affects the health status of juvenile Nile tilapia (Oreochromis niloticus L.) in recirculating aquaculture systems. Aquacult. Res., 48: 3482- 3492.
  • Newman RA, Dunham AE. 1994. Size at metamorphosis and water loss in a desert anuran (Scaphiopus couchii). Copeia, 1994: 372-381.
  • Nugent, M, Kamrin MA, Wolfson L., D’Itri FM. 2001. Nitrate: a drinking water concern. Michigan State University Extension Service, Extension bulletin WQ-19. http://www.msue.msu.edu/ objects/content_revision/download.cfm/revision_id.499674/ workspace_id.-4/01500617.html. Accessed 18 September 2006.
  • Ödün NA. 2013. Fırtına Vadisi’nde (Çamlıhemşin-Rize) Çay Tarımında Kullanılan Suni ve Doğal Gübrelerin Oluşturduğu Su Kirliliğinin Akuatik Ekosisteme Etkisi. Recep Tayyip Erdoğan Üniversitesi, Fen Bilimleri Enstitüsü, Rize,Türkiye. Olivares J, Bedmar, EJ, Sanju´an J. 2013. Biological nitrogen fixation in the context of global change. Mol. Plant Microbe Interact, 26: 486-494.
  • Ortiz ME, Marco A, Saiz N, Lizana M. 2004. Impact of ammonium nitrate on growth and survival of six European amphibians. Arch. Environ. Contam. Toxicol., 47: 234-239. Ortiz-Santaliestra ME, Fern´andez-Ben´eitez MJ, Marco A, Lizana M. 2010. Influence of ammonium nitrate on larval anti-predatory responses of two amphibian species. Aquat. Toxicol., 99: 198-204.
  • Ortiz-Santaliestra ME, Fern´andez-Ben´eitez MJ, Marco A. 2012. Density effects on ammonium nitrate toxicity on larval amphibians. Survival, growth and cannibalism. Aquat. Toxicol., 110–111, 170–176.
  • Ortiz-Santaliestra ME, Marco A, Fern´andez MJ, Lizana M. 2006. Influence of developmental stage on sensitivity to ammonium nitrate of aquatic stages of amphibians. Environ. Toxicol. Chem., 25: 105-111.
  • Öziş Ü, Baran T, Durnabaşı İ, Özdemir Y. 1997. Türkiye’nin Su Kaynakları Potansiyeli. Meteoroloji Mühendisliği, TMMOB Meteoroloji Mühendisleri Odası Yayın Organı, 2; 40-45.
  • P´andi I, Penksza K, Botta-Duk´at Z, Kr¨oel-Dulay G. 2014. People move but cultivated plants stay: abandoned farmsteads support the persistence and spread of alien plants. Biodivers. Conserv, 23: 1289-1302.
  • Pereira HM, Leadley PW, Proença V, Alkemade R, Scharlemann JPW, Fern´andez-Manjarr´es JF, Araújo MB, Balvanera P, Biggs R, Cheung WWL, Chini L, Cooper HD, Gilman EL, Gu´enette S, Hurtt GC, Huntington HP, Mace GM, Oberdorff T, Revenga C, Rodrigues P, Scholes RJ, Sumaila US, Walpole M. 2010. Scenarios for global biodiversity in the 21st century. Science, 330: 1496-1501.
  • Piha H, Pekkonen M, Merilä, J. 2006. Morphological abnormalities in amphibians in agricultural habitats: a case study of the common frog Rana temporaria. Copeia, 2006: 810-817.
  • Pounds JA, Bustamante MR, Coloma LA, Consuegra JA, Fogden MPL, Foster PN, La Marca E, Masters KL, Merino-Viteri A, Puschendorf R, Ron SR, S´anchez-Azofeifa GA, Still CJ, Young BE. 2006. Widespread amphibian extinctions from epidemic disease driven by global warming. Nature, 439: 161-167.
  • Powell TWR, Lenton TM. 2013. Scenarios for future biodiversity loss due to multiple drivers reveal conflict between mitigating climate change and preserving biodiversity. Environ Res Lett., 8: 025024.
  • Rathod S, Rathod P. 2013.Amphibian communities in three different coffee plantation regimes in the Western Ghats. India. J Threat Taxa., 5: 4404-4413.
  • Roelants K, Gower DJ, Wilkinson M, Loader PS, Biju SD, Guillaume K, Moriau L, Bossuyt F. 2007. Global patterns of diversification in the history of modern amphibians. Pnas, 104,3: 887-892.
  • Ruso GE, Hogan NS, Sheedy C, Gallant MJ, Jardine TD. 2021. Effects of Agricultural Stressors on Growth and an Immune Status Indicator in Wood Frog (Lithobates sylvaticus) Tadpoles and Metamorphs. Environmental Toxicology and Chemistry, 40(8): 2269-2281.
  • Russo RC. 1985. Ammonia, nitrite and nitrate, p. 455–471. In: Fundamentals of Aquatic Toxicology. M. G. Rand and S. R. Petrochelli (eds.). Hemisphere Publishing Corporation, Washington, D.C.
  • Sala OE, Chapin FS, Armesto JJ, Berlow E, Bloomfield J, Dirzo R, Huber- Sanwall E, Huenneke LF, Jackson RB, Kinzig A, Leemans R, Lodge DM, Mooney HA, Oesterheld M, Poff NL, Sykes MT, Walker B., Walker M, Wall DH. 2000. Global biodiversity scenarios for the year 2100. Science, 287: 1770- 1774.
  • Scott GR, Sloman KA, 2004. The effects of environmental pollutants on complex fish behaviour: integrating behavioural and physiological indicators of toxicity. Aquat. Toxicol., 68: 369-392.
  • Semlitsch RD. 1993. Asymmetric competition in mixed populations of tadpoles of the hybridogenetic Rana esculenta complex. Evolution, 47: 510-519.
  • Shinn C, Marco A, Serrano L. 2008. Inter- and intra-specific variation on sensitivity of larval amphibians to nitrite. Chemosphere, 7: 507-514.
  • Sievers M, Hale R, Swearer SE, Parris KM. 2018. Contaminant mixtures interact to impair predator-avoidance behaviours and survival in a larval amphibian. Ecotoxicol. Environ. Saf., 161: 482-488.
  • Simplício N, Muniz D, Rocha F, Martins D, Dias Z, Farias B, Oliveira-Filho E. 2017. Comparative analysis between ecotoxicity of nitrogen-, phosphorus-, and potassium-based fertilizers and their active ingredients. Toxic., 5: 2.
  • Şişman T, Keskin MÇ, Dane H, Adil Ş, Geyikoğlu F, Çolak S, Canpolat E. 2021. Marsh Frog (Pelophylax ridibundus) as a Bioindicator to Assess Pollution in an Agricultural Area. Pakistan J. Zool.,53(1): 337-349.
  • Slaby S, Marin M, Marchand G, Lemiere S. 2019. Exposures to chemical contaminants: what can we learn from reproduction and development endpoints in the amphibian ecotoxicology literature? Environ. Pollut., 248: 478-495.
  • Smith DC. 1987. Adult recruitment in chorus frogs: effects ofsize and date at metamorphosis. Ecology, 68: 344-350.
  • Smith GR. 2007. Lack of effect of nitrate, nitrite, and phosphate on wood frog (Rana sylvatica) tadpoles. Appl. Herpetol., 4: 287-291.
  • Sodhi NS, Bickford D, Diesmos AC, Lee TM, Koh LP, Brook BW, Sekerciogl, C H, Bradshaw CJA. 2008. Measuring the meltdown: drivers of global amphibian extinction and decline. PloS One 3, e1636.
  • Soucek DJ, Dickinson A. 2016. Influence of chloride on the chronic toxicity of sodium nitrate to Ceriodaphnia dubia and Hyalella azteca. Ecotoxicolog 25: 1406-1416.
  • Teplitsky C, Plenet S, L´ena, JP, Mermet N, Malet E, Joly P. 2005. Escape behaviour and ultimate causes of specific induced defences in an anuran tadpole. J. Evol. Biol., 18: 180- 190.
  • Todd BD, Bergeron CM, Hepner MJ, Hopkins WA. 2011. Aquatic and terrestrial stressors in amphibians: A test of the double jeopardy hypothesis based on maternally and trophically derived contaminants. Environ. Toxicol. Chem., 30: 2277–2284.
  • Trudeau VL, Thomson P, Zhang WS, Reynaud S, NavarroMartín L, Langlois VS. 2020. Agrochemicals disrupt multiple endocrine axes in amphibians. Mol. Cell. Endocrinol. 513, 110861.
  • Van Meter RJ, Adelizzi R, Glinski DA, Henderson WM. 2019. Agrochemical mixtures and amphibians: the combined effects of pesticides and fertilizer on stress, acetylcholinesterase activity, and bioaccumulation in a terrestrial environment. Environ. Toxicol. Chem., 38: 1052- 1061.
  • Waldner F, De Abelleyra D, Ver´on SR, Zhang M, Wu B, Plotnikov D, Bartalev S, Lavreniuk M, Skakun S, Kussul N, Le Maire G, Dupuy S, Jarvis I, Defourny P. 2016. Towards a set of agrosystem-specific cropland mapping methods to address the global cropland diversity. Int. J. Rem. Sens. 37: 3196-3231.
  • Wang M, Chai L, Zhao H, Wu, M, Wang H. 2015. Effects of nitrate on metamorphosis, thyroid and iodothyronine deiodinases expression in Bufo gargarizans larvae. Chemosphere, 139: 402-409.
  • Warne RW, Crespi EJ, Brunner JL. 2011. Escape from the pond: stress and developmental responses to ranavirus infection in wood frog tadpoles. Funct. Ecol., 25: 139-146.
  • Watkins TB. 1996. Predator-mediated selection on burst swimming speed performance in tadpoles of the Pacific tree frog, Pseudacris regilla. Physiol. Zool., 69: 154-167.
  • Werner EE, Anholt BR. 1993. Ecological consequences of the trade-off between growth and mortality rates mediated by foraging activity. American Naturalist, 142: 242-272.
  • Whitfield SM, Alvarado G, Abarca J, Zumbado H, Zuñiga I, Wainwright M, Kerby J.2017. Differential patterns of Batrachochytrium dendrobatidis infection in relict amphibian populations following severe disease-associated declines. Dis. Aquat. Org., 126: 33-41
  • Wilbur HM. 1997. Experimental ecology of food webs: complex systems in temporary ponds. Ecology, 78: 2279-2302.
  • Won HS, Kang SJ, Lee BJ. 2009.Action mechanism and structural requirements of the antimicrobial peptides, gaegurins, Biochimica et Biophysica Acta (BBA) - Biomembranes, 1788(8): 1620-1629.
  • Wünschmann S, Wünschmann Wüst-Ackermann P, Randler C, Vollmer C. 2017. Learning Achievement and Motivation in an Out-of-School Setting—Visiting Amphibians and Reptiles in a Zoo Is More Effective than a Lesson at School Res Sci Educ, 47: 497.
  • Yüksek T, Yüksek F, Sütlü E. 2013. Rize Yöresinde Çay Tarımında Gübreleme Sorunları ve Sürdürülebilir Çay Tarımı İçin Yeni Straterjiler. II. Rize Kalkınma Sempozyumu, Rize, 3-4 Mayıs 2013, Bildiri Özetleri Kitabı, 53-54 .
  • Zambrano-Fern´andez S., Zamora-Camacho FJ, Arag´on, P. 2020. Does chronic exposure to ammonium during the premetamorphic stages promote hindlimb abnormality in anuran metamorphs? A comparison between natural-habitat and agrosystem frogs. Acta Herpetol., 15: 119-123.
  • Zambrano-Fernández, S, Zamora-Camacho F.J, Aragón, P 2022. Direct and indirect effects of chronic exposure to ammonium on anuran larvae survivorship, morphology, and swimming speed. Chemosphere, 287: 132349.
  • Zhelev Z, Popgeorgiev GS, Mehterov NH. 2014. Changes in the basic morphophysiological parameters in the populations of Pelophylax ridibundus (Amphibia: Ranidae) from anthropogenically polluted biotopes in Southern Bulgaria. Part 1 Bulg. J. Agric. Sci., 20(5): 1202-1210.
  • Zhelev Z, Popgeorgiev GS, Mehterov NH. 2015. Changes in the hepatosomatic index and condition factor in the populations of Pelophylax ridibundus (Amphibia: Ranidae) from anthropogenically polluted biotopes in Southern Bulgaria. Pt II Bulg. J. Agric. Sci., 21(3): 534-539.
Türk Tarım - Gıda Bilim ve Teknoloji dergisi-Cover
  • ISSN: 2148-127X
  • Yayın Aralığı: Aylık
  • Başlangıç: 2013
  • Yayıncı: Turkish Science and Technology Publishing (TURSTEP)
Sayıdaki Diğer Makaleler

Determination of Fruit Cracking Rates in Some Pomegranate (Punica granatum L.) Genotypes Growed Non-Irrigated Conditions

Melike CENGİZ, Yıldız AKA KAÇAR, Emine ACAR, Ahsen Işık ÖZGÜVEN

Analysis of Accessibility to Family Health Centers in Antalya Using GIS

Orhun SOYDAN

Effect of Ethephon Application on Seed Yield and Yield Components of Two Faba Bean (Vicia faba L.) Cultivars

Aybegün TON

Investigation of Solar Powered Drying System Potential in Niğde Province

Burak ŞEN, Yaşar Serhat SAYGILI, Ali Kaan YETİK, Furkan BAŞ

Determination of the Antagonistic Effects of Some Rhizospheric Bacteria against Macrophomina phaseolina under In Vitro Conditions

Raziye KOÇAK, Nuh BOYAZ, Özden SALMAN, Fatma Rana BAYRAM

Effects of Acute Ammonium Nitrate Levels Caused by Agricultural Activities on Four Amphibian Species in The Eastern Black Sea Region

Handan KARAOĞLU

Effect of Christmas Melon (Laganaria Breviflorus) extract on toxigenic Mycoflora Isolated from Stored Unpolished Rice sold in major Markets in Abeokuta, Nigeria

Amina BADMOS, Yetunde MAMOOD

Effects of Environmentally Relevant Ammonium Nitrate Levels Caused by Agricultural Activities on Four Amphibian Species in The Eastern Black Sea Region

Handan KARAOĞLU

Antagonistic Activity of Bacillus spp. Against Fire Blight Disease In vitro and In planta#

Kubilay Kurtuluş BASTAS, Haris BUTT

Determination of The Physical, Physio-Chemical and Chemical Properties of Gilaburu Fruits (Viburnum opulus) Dried by Convectional Drying Technique#

Fatma Fulya DAL, Erkan KARACABEY