Measuring the impacts of Roundup Original庐 on fluctuating asymmetry and mortality in a Neotropical tadpole
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  • 作者:Renan Nunes Costa ; Fausto Nomura
  • 关键词:Glyphosate ; Ecomorphology ; Ecotoxicology ; Acute exposure ; Chronic exposure ; Fluctuating asymmetry
  • 刊名:Hydrobiologia
  • 出版年:2016
  • 出版时间:February 2016
  • 年:2016
  • 卷:765
  • 期:1
  • 页码:85-96
  • 全文大小:568 KB
  • 参考文献:ABRASCO, 2012. Um alerta sobre os impactos dos agrot贸xicos na sa煤de. Parte 1 鈥?Agrot贸xicos, Seguran莽a Alimentar e Nutricional e Sa煤de. Dossi锚 ABRASCO, Associa莽茫o Brasileira de Sa煤de Coletiva, Rio de Janeiro, RJ.
    Alford, R. A., 1999. Ecology: resource use, competition, and predation. In McDiarmid, R. W. & R. Altig (eds), Tadpoles. The Biology of Anuran Larvae. University of Chicago Press, Chicago: 240鈥?78.
    Allentoft, M. E. & J. O鈥橞rien, 2010. Global amphibian declines, loss of genetic diversity and fitness: a review. Diversity 2: 47鈥?1.CrossRef
    Altig, R. & R. W. McDiarmid, 1999a. Diversity: familial and generic characterizations. In McDiarmid, R. W. & R. Altig (eds), Tadpoles. The Biology of Anuran Larvae. University of Chicago Press, Chicago: 295鈥?37.
    Altig, R. & R. W. McDiarmid, 1999b. Body plan: development and morphology. In McDiarmid, R. W. & R. Altig (eds), Tadpoles. The Biology of Anuran Larvae. University of Chicago Press, Chicago: 24鈥?1.
    Amarante Jr, O. P., T. C. R. Santos, N. M. Brito & M. L. Ribeiro, 2002. Glifosato: propriedades, usos e legisla莽茫o. Qu铆mica Nova 25(4): 589鈥?93.CrossRef
    Badyaev, A. V., K. R. Foresman & M. V. Fernandes, 2000. Stress and developmental stability: vegetation removal causes increased fluctuating asymmetry in shrews. Ecology 81: 336鈥?45.CrossRef
    Beasley, D. A. E., A. Bonisoli-Alquati & T. A. Mousseau, 2013. The use of fluctuating asymmetry as a measure of environmentally induced developmental instability: a meta-analysis. Ecological Indicators 30: 218鈥?26.CrossRef
    Blaustein, A. R., 1994. Chicken Little or Nero鈥檚 Fiddle? A perspective on declining amphibian populations. Herpetologica 50(1): 85鈥?7.
    Blaustein, A. R. & D. B. Wake, 1995. The puzzle of declining amphibian populations. Scientific American 272: 52鈥?7.CrossRef
    Bliss, C. I., 1935. The calculator of the dosage-mortality curve. Annals of Applied Biology 22: 134鈥?67.CrossRef
    Boone, M. D., D. Cownan, C. Davidson, T. B. Hayes, W. A. Hopkins, R. A. Relyea, L. Schiesari & R. Semlistch, 2007. Evaluating the role of environmental contamination in amphibian population decline. In Gascon, C., J. P. Collins, R. D. Moore, D. R. Church, J. E. McKay & J. R. Mendelson III (eds), Amphibian Conservation Action Plan. Proceedings: IUCN/SSC Amphibian Conservation Summit 2005. The World Conservation Union (IUCN), Gland: 32鈥?5.
    Bortoluzzi, E. C., D. S. Rheinheimer, C. S. Gon莽alves, J. B. R. Pellegrini, R. Zanella & A. C. C. Copetti, 2006. Contamina莽茫o de 谩guas superficiais por agrot贸xicos em fun莽茫o do uso do solo numa microbacia hidrogr谩fica de Agudo, RS. Revista Brasileira de Engenharia Agr铆cola e Ambiental 10(4): 881鈥?87.CrossRef
    Bosch, J. & R. M谩rquez, 2000. Tympanum fluctuating asymmetry, body size and mate choice in female Midwife Toads (Alytes obstreticans). Behaviour 137: 1211鈥?222.CrossRef
    Bridges, C. M., 1997. Tadpole swimming performance and activity affected by acute exposure to sublethal levels of carbaryl. Environmental Toxicology and Chemistry 19: 1935鈥?939.CrossRef
    Bridges, C. M., 1999. Effects of a pesticide on tadpole activity and predator avoidance behavior. Journal of Herpetology 33: 303鈥?06.CrossRef
    Bridges, C. M., 2000. Long-term effects of pesticide exposure at various life stages of the Southern Leopard frog (Rana sphenocephala). Archives of Environmental Contamination and Toxicology 39: 91鈥?6.CrossRef PubMed
    Bridges, C. M. & R. D. Semlitsch, 2001. Genetic variation in insecticide tolerance in a population of Southern Leopard Frogs (Rana sphenocephala): implication for amphibian conservation. Copeia 1: 7鈥?3.CrossRef
    Chang, X., B. Zhai, M. Wang & B. Wang, 2007. Relationship between exposure to an insecticide and fluctuating asymmetry in a damselfly (Odonata, Coenagriidae). Hydrobiologia 586: 213鈥?20.CrossRef
    Clarke, G. M., 1993. Fluctuating asymmetry of invertebrate populations as a biological indicator of environmental quality. Environmental Pollution 82: 207鈥?11.CrossRef PubMed
    Clarke, G. M., 1995. Relationships between developmental stability and fitness: application for conservation biology. Conservation Biology 9(1): 18鈥?4.CrossRef
    Clay, J., 2004. World Agriculture and the Environment. A Commodity-by-commodity Guide to Impacts and Practices. Island Press, Washington, DC.
    CONAMA 357, 2005. Conselho Nacional do Meio Ambiente. Resolu莽茫o no. 357, de 17 de Mar莽o de 2005. Publicada no DOU no. 053, de 18/03/2005: 58鈥?3.
    Davidson, C., H. B. Shaffer & M. R. Jennings, 2001. Declines of the California red-legged frog: climate, UV-B, habitat, and pesticides hypotheses. Ecological Applications 14: 464鈥?79.CrossRef
    Davidson, C., H. B. Shaffer & M. R. Jennings, 2002. Spatial tests of the pesticide drift, habitat destruction, UV-B, and climate-change hypotheses for California amphibian declines. Conservation Biology 16: 1588鈥?601.CrossRef
    Delgado-Acevedo, J. & C. Restrepo, 2008. The contribution of habitat loss to changes in body size, allometry, and bilateral asymmetry in two Eleutherodactylus frogs from Puerto Rico. Conservation Biology 22(3): 773鈥?82.CrossRef PubMed
    Diniz-Filho, J. A. F., L. M. Bini, M. P. Pinto, T. F. L. V. B. Rangel, P. Carvalho, S. L. Vieira & R. P. Bastos, 2007. Conservation biogeography of anurans in Brazilian Cerrado. Biodiversity and Conservation 16: 997鈥?008.CrossRef
    Edwards, W. M., G. B. Triplett Jr & R. M. Kramer, 1980. A watershed study of glyphosate transport in runoff. Journal of Environmental Quality 9(4): 661鈥?65.CrossRef
    Egea-Serrano, A., R. A. Relyea, M. Tejedo & M. Torralva, 2012. Understanding of the impact of chemicals on amphibians: a meta-analytic review. Ecology and Evolution 2(7): 1382鈥?397.PubMedCentral CrossRef PubMed
    Feng, J. C., D. G. Thompson & P. E. Reynolds, 1990. Fate of glyphosate in a Canadian forest watershed. 1. Aquatic residues and off-target deposit assessment. Journal of Agriculture and Food Chemistry 38: 1110鈥?118.CrossRef
    Figueiredo, J. & D. J. Rodrigues, 2014. Effects of four types of pesticides on survival, time and size to metamorphosis of two species of tadpoles (Rhinella marina and Physalaemus centralis) from the southern Amazon, Brazil. Herpetological Journal 24: 1鈥?.
    Fisher, R. A., 1935. Appendix to bliss (1935): the case of zero survivors. Annals of Applied Biology 22: 164鈥?65.
    Forbes, M., B. Leung & G. Schalk, 1997. Fluctuating asymmetry in Coenagrion Resolutum (Hagen) in relation to age and male pairing success (Zygoptera: Coenagrionidae). Odonatologica 26: 9鈥?6.
    Frost, D. R., 2014. Amphibian Species of the World: An Online Reference, Version 5.6. Accessible at http://鈥媟esearch.鈥媋mnh.鈥媜rg/鈥媓erpetology/鈥媋mphibian . Downloaded on 15 January 2014.
    Giesy, J. P., S. Dobson & K. R. Solomon, 2000. Ecotoxicological risk assessment for Roundup 庐 herbicide. Reviews of Environmental Contamination and Toxicology 167: 35鈥?20.
    Goldsborough, L. G. & A. E. Beck, 1989. Rapid dissipation of glyphosate in small forest ponds. Archives of Environmental Contamination and Toxicology 18: 537鈥?44.CrossRef
    Gosner, K. L., 1960. A simplified table for staging anuran embryos and larvae with notes on identification. Herpetologica 16: 183鈥?90.
    Griffis-Kyle, K. L., 2005. Ontogenetic delays in effects of nitrite exposure on tiger salamanders (Ambystoma tigrinum tigrinum) and wood frogs (Rana sylvatica). Environmental Toxicology and Chemistry 24(6): 1523鈥?527.CrossRef PubMed
    Griffis-Kyle, K. L., 2007. Sublethal effects of nitrite on eastern tiger salamander (Ambystoma tigrinum tigrinum) and wood frog (Rana sylvatica) embryos and larvae: implications for filed populations. Aquatic Ecology 41: 119鈥?27.CrossRef
    Hardersen, S., 2000. Effects of carbaryl exposure on the last larval instar of Xanthocnemis zealandica. fluctuating asymmetry and adult emergence. Entomologia Experimentalis et Applicata 96: 221鈥?30.CrossRef
    Hardersen, S. & C. M. Frampton, 1999. Effects of short term pollution on the level of fluctuating asymmetry 鈥?a case study using damselflies. Entomologia Experimentalis et Applicata 92: 1鈥?.CrossRef
    Hellawell, J. M., 1986. Biological Indicators of Freshwater Pollution and Environmental Management, Vol 44. Elsevier, New York: p. 546.
    Hogg, I. D., J. M. Eadie, D. D. Willians & D. Turner, 2001. Evaluating fluctuating asymmetry in a stream-dwelling insect as an indicator of low-level thermal stress: a large-scale field experiment. The Journal of Applied Ecology 38(6): 1326鈥?339.CrossRef
    IUCN, 2014. The IUCN Red List of Threatened Species, Version 2014.3. Accessible at http://鈥媤ww.鈥媔ucnredlist.鈥媜rg . Downloaded on 26 January 2014.
    Johnson, R. K., T. Weiderholm & D. M. Rosenberg, 1993. Freshwater biomonitoring using individual organisms, populations and species assemblages of benthic macroinvertebrates. In Rosenberg, D. M. & V. H. Resh (eds), Freshwater Biomonitoring and Benthic Macroinvertebrates. Chapman and Hall, New York: 40鈥?05.
    Jones, D. K., J. I. Hammond & R. A. Relyea, 2010. Roundup 庐 and amphibians: the importance of concentration, application time, and stratification. Environmental Toxicology and Chemistry 29(9): 2016鈥?025.PubMed
    Jones, D. K., J. I. Hammond & R. A. Relyea, 2011. Competitive stress can make the herbicide Roundup 庐 more deadly to larval amphibians. Environmental Toxicology and Chemistry 30(2): 446鈥?54.CrossRef PubMed
    Lajmanovich, R. C., M. T. Sandoval & P. M. Peltzer, 2003. Induction of mortality and malformation in Scinax nasicus tadpoles exposed by glyphosate formulations. Bulletin of Environmental Contamination and Toxicology 70: 612鈥?18.CrossRef PubMed
    Lajmanovich, R. C., A. M. Attademo, P. M. Peltzer, C. M. Junges & M. Cabagna, 2011. Toxicity of four herbicide formulations with glyphosate on Rhinella arenarum (Anura: Bufonidae) tadpoles: B-esterases and glutathione S-transferase inhibitors. Archives of Environmental Contamination and Toxicology 60: 681鈥?89.CrossRef PubMed
    Lajmanovich, R. C., C. M. Junges, A. M. Attademo, P. M. Peltzer, M. C. Cabagna-Zenklusen & A. Basso, 2013. Individual and mixture toxicity of commercial formulations containing glyphosate, metsulfuron-methyl, bispyribac-sodium, and picloram on Rhinella arenarum tadpoles. Water, Air and Soil Pollution 224: 1鈥?3.CrossRef
    Leung, B. & M. R. Forbes, 1997. Fluctuating asymmetry in relation to stress and fitness: effects of trait type as revealed by meta-analysis. Ecoscience 3: 400鈥?13.
    Mann, R. M. & J. R. Bidweel, 1999. The toxicity of glyphosate and several glyphosate formulations to four species of Southwestern Australian frogs. Archives of Environmental Contamination and Toxicology 36: 193鈥?99.CrossRef PubMed
    Mann, M. R., R. V. Hyne, C. B. Choung & S. P. Wilson, 2009. Amphibians and agricultural chemicals: review of the risks in a complex environment. Environmental Pollution 157: 2903鈥?927.CrossRef PubMed
    M酶ller, A. P., 1997. Developmental stability and fitness: a review. American Naturalist 149: 916鈥?32.CrossRef PubMed
    Moreira, J. C., F. Peres, A. C. Sim玫es, W. A. Pignati, E. C. Dores, S. N. Vieira, C. Str眉ssmann & T. Mott, 2012. Groundwater and rainwater contamination by pesticides in an agricultural Region of Mato Grosso State in Central Brazil. Ci锚ncia & Sa煤de Coletiva 17(6): 1557鈥?568.CrossRef
    Myers, N., R. A. Mittermeier, C. G. Mittermeier, G. A. B. Fonseca & J. Kent, 2000. Biodiversity hotspots for conservation priorities. Nature 403: 853鈥?58.CrossRef PubMed
    Newton, M., K. M. Howard, B. R. Kelpsas, R. Danhaus, C. M. Lottman & S. Dubelman, 1984. Fate of glyphosate in an Oregon Forest Ecosystem. Journal of Agriculture and Food Chemistry 32: 1144鈥?151.CrossRef
    Palmer, A. R. & C. Strobeck, 1986. Fluctuating asymmetry: measurement, analysis, patterns. Annual Review of Ecology and Systematics 17: 391鈥?21.CrossRef
    Pignati, W. A. & J. M. H. Machado, 2007. O agroneg贸cio e seus impactos na sa煤de dos trabalhadores e da popula莽茫o do estado de Mato Grosso. Fiocruz/Ens, Rio de Janeiro: 81鈥?05.
    Queiroz, G. M. P., M. R. Silva, R. J. F. Bianco, A. Pinheiro & V. Kaufman, 2011. Transporte de glifosato pelo escoamento superficial e por lixivia莽茫o em um solo agr铆cola. Qu铆mica Nova 34(2): 190鈥?95.CrossRef
    Rainio, J. & J. Niemel盲, 2003. Ground beetles (Coleoptera: Carabidae) as bioindicators. Biodiversity and Conservation 12: 487鈥?06.CrossRef
    Reis, E. F., N. S. Pinto, F. G. Carvalho & L. Juen, 2011. Efeito da Integridade Ambiental Sobre a Assimetria Flutuante em Erythtodiplax basalis (Libellulidae: Odonata) (Kirby). Entomobrasilis 4(3): 103鈥?07.CrossRef
    Relyea, R. A., 2005a. The lethal impacts of Roundup 庐 and predatory stress on six species of North American tadpoles. Archives of Environmental Contamination and Toxicology 48: 351鈥?57.CrossRef PubMed
    Relyea, R. A., 2005b. The impact of insecticides and Herbicides on the biodiversity and productivity of aquatic communities. Ecological Applications 15(2): 618鈥?27.CrossRef
    Relyea, R. A., 2005c. The lethal impact of Roundup 庐 on aquatic and terrestrial amphibians. Ecological Applications 15(4): 1118鈥?124.CrossRef
    Relyea, R. A., 2006. The effects of pesticides, pH, and predatory stress on amphibians under mesocosm conditions. Ecotoxicology 15(6): 503鈥?11.CrossRef PubMed
    Relyea, R. A., 2012. New effects of Roundup 庐 on amphibians: predators reduce herbicide mortality; herbicides induce antipredators morphology. Ecological Applications 22(2): 634鈥?47.CrossRef PubMed
    Relyea, R. A. & D. K. Jones, 2009. The toxicity of Roundup 庐 Max to 13 species of larval amphibians. Environmental Toxicology and Chemistry 28(9): 2004鈥?008.CrossRef PubMed
    Sanseverino, A. M. & J. L. Nessimian, 2008. Assimetria flutuante em organismos aqu谩ticos e sua aplica莽茫o para avalia莽茫o de impactos ambientais. Oecologia Brasiliensis 12: 382鈥?05.
    Schiesari, L. & B. Grillitsch, 2011. Pesticides meet megadiversity in the expansion of biofuel crops. Frontiers in Ecology and Environment 9: 215鈥?21.CrossRef
    Schiesari, L., B. Grillitsch & H. Grillitsch, 2007. Biogeographic biases in research and their consequences for linking amphibian declines to pollution. Conservation Biology 21(2): 465鈥?71.CrossRef PubMed
    Schiesari, L., A. Waichman, T. Brock, C. Adams & B. Grillitsch, 2013. Pesticide use and biodiversity conservation in the Amazonian agriculture frontier. Philosophical Transactions of the Royal Society B 368: 1鈥?.CrossRef
    Searle, S. R., G. Casella & C. E. McCulloch, 1992. Variance Components. Wiley, Hoboken, NJ: 501 pp.
    Shin, C., A. Marco & L. Serrano, 2008. Inter- and intra-specific variation on sensitivity of larval amphibians to nitrite. Chemosphere 71: 507鈥?14.CrossRef
    Silva, D. R. O., L. A. Avila, D. Agostinetto, T. D. Magro, E. Oliveira, R. Zanella & J. A. Noldin, 2009. Pesticides monitoring in surface water of rice production areas in southern Brazil. Ci锚ncia Rural 39(9): 2383鈥?389.CrossRef
    Simioni, F., D. F. N. da Silva & T. Mott, 2013. Toxicity of glyphosate on Physalaemus albonotatus (Steindachner, 1864) from Western Brazil. Ecotoxicology and Environmental Contamination 8(1): 55鈥?8.
    Snodgrass, J. W., R. E. Casey, D. Joseph & J. A. Simon, 2008. Microcosm investigations of stormwater pond sediment toxicity to embryonic and larval amphibians: variation in sensitivity among species. Environmental Pollution 154: 291鈥?97.CrossRef PubMed
    S枚derman, F., S. V. Dongen, S. Pakkasmaa & J. Meril盲, 2007. Environmental stress increases skeletal fluctuating asymmetry in the moor frog Rana arvalis. Oecologia 151: 593鈥?04.CrossRef PubMed
    Solomon, K. R. & D. G. Thompson, 2003. Ecological risk assessment for aquatic organisms from over-water uses of glyphosate. Journal of Toxicology and Environmental Health, Part B: Critical Reviews 6(3): 289鈥?24.CrossRef
    Sparling, D. W., G. M. Fellers & L. L. McConnell, 2001. Pesticides and amphibian population declines in California, USA. Environmental Toxicology and Chemistry 20(7): 1591鈥?595.CrossRef PubMed
    Stige, L. C., D. O. Hessen & L. A. V酶llestad, 2004. Severe food stress has no detectable impact on developmental instability in Daphnia magna. Oikos 107: 519鈥?30.CrossRef
    Stuart, S. N., J. S. Chanson, N. A. Cox, B. E. Young, A. S. L. Rodrigues, D. L. Fischman & R. W. Waller, 2004. Status and trends of amphibian declines and extinctions worldwide. Science 306: 1783鈥?786.CrossRef PubMed
    Thompson, D. G., B. F. Wojtaszek, B. Staznik, D. T. Chartrand & G. R. Stephenson, 2004. Chemical and biomonitoring to assess potential acute effects of Vision Herbicide on native amphibian larvae in forest wetlands. Environmental Toxicology and Chemistry 23(4): 843鈥?49.CrossRef PubMed
    U.S.EPA. (United States Environmental Protection Agency), 2008. Risks of glyphosate use to federally threatened California Red-legged frog (Rana aurora draytonii). Pesticide effects determination. Washington, D.C. Accessible at http://鈥媤ww.鈥媏pa.鈥媑ov/鈥媏spp/鈥媗itstatus/鈥媏ffects/鈥媟edleg-frog/鈥?glyphosate . Downloaded on 30 November 2013.
    Van Valen, L., 1962. A study of fluctuating asymmetry. Evolution 16: 125鈥?42.CrossRef
    Zar, J. H., 1999. Biostatistical Analysis. Prentice-Hall, Englewood Cliffs, NJ: 663 pp.
  • 作者单位:Renan Nunes Costa (1) (3)
    Fausto Nomura (2) (3)

    1. Programa de P贸s-Gradua莽茫o em Ecologia e Conserva莽茫o da Biodiversidade, Universidade Estadual de Santa Cruz, Campus Soane Nazar茅 de Andrade, Rodovia Jorge Amado, km 16, Ilh茅us, Bahia, 45662-900, Brasil
    3. Laborat贸rio de Herpetologia e Comportamento Animal, Instituto de Ci锚ncias Biol贸gicas, Universidade Federal de Goi谩s, Goi芒nia, Goi谩s, Brasil
    2. Departamento de Ecologia, Instituto de Ci锚ncias Biol贸gicas, Universidade Federal de Goi谩s, Campus Samambaia, Av. Esperan莽a, Caixa Postal 131, Goi芒nia, Goi谩s, 74001-970, Brasil
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Life Sciences
    Hydrobiology
    Ecology
  • 出版者:Springer Netherlands
  • ISSN:1573-5117
文摘
Amphibian larvae are highly susceptible to contamination, which can lead to lethal and sublethal effects. This impact can be measured by fluctuating asymmetry (FA), which is based on differences between the sides of organisms with bilateral symmetry. We evaluated the effect of acute and chronic exposure to Roundup Original 庐 on Physalaemus cuvieri tadpoles. We measured tadpole survival and estimated the LC5096h. We also evaluated whether a sublethal concentration increases the FA. In acute exposure, survival was reduced and the LC50 was 2.13 mg a.i./l. In chronic exposure, nostril鈥搒nout distance and eye width had a significantly higher FA in contaminated tadpoles. The chronic exposure to contaminants could lead to several sublethal effects, which would be used in biomonitoring surveys. Morphological traits affected by contaminants, such as malformations or FA, would be relatively more easily measured from field samples. Because it is cost effective, easy to measure, and can be obtained without tagging or housing field-caught animals, we suggest that FA is a promising marker for monitoring the environmental impacts of contaminants like Roundup. However, additional studies are necessary to understand what additional environmental stressors might impact FA, and how this might alter its utility for use in biomonitoring. Keywords Glyphosate Ecomorphology Ecotoxicology Acute exposure Chronic exposure Fluctuating asymmetry

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