Ultraviolet radiation-induced genotoxic effects in the broad-snouted caiman, Caiman latirostris

Ultraviolet radiation (UVR) has many positive effects, but overexposure of organisms can generate alterations in DNA, either directly or indirectly, inducing mutagenic and cytotoxic lesions. The aim of this study was to evaluate the genotoxic effects of UVA-B/visible light in the broad-snouted caima...

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Autor principal: Schaumburg, L.G
Otros Autores: Poletta, G.L, Imhof, A., Siroski, P.A
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2010
Acceso en línea:Registro en Scopus
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100 1 |a Schaumburg, L.G. 
245 1 0 |a Ultraviolet radiation-induced genotoxic effects in the broad-snouted caiman, Caiman latirostris 
260 |c 2010 
270 1 0 |m Poletta, G.L.; Proyecto Yacaré - Laboratorio de Zoología Aplicada, Anexo Vertebrados (FHUC - UNL/MASPyMA), A. del Valle 8700, Santa Fe, Argentina; email: gpoletta@fbcb.unl.edu.ar 
506 |2 openaire  |e Política editorial 
504 |a Nigel, D.P., Gwynn-Jones, D., Ecological roles of solar UV radiation: towards an integrated approach (2003) Trends Ecol. Evol., 18, pp. 48-55 
504 |a Tena, F., Martínez-Lozano, J.A., Utrillas, M.P., La radiación solar ultravioleta y prevención del eritema (1998) Rev. Esp. Fís., 12, pp. 18-24 
504 |a Blaustein, A., Sengsavanh, N., (2001) Ultraviolet Radiation, Encyclopedia of Biodiversity, , Academic Press 
504 |a Keulers, R.A.C., Corrie Van Teylingen, M.M., Tates, A.D., Effects of deoxyribonucleosides and cell-stimulation on frequencies of ultraviolet-B-induced micronuclei in human peripheral blood lymphocytes (2000) Mutat. Res., 459, pp. 115-122 
504 |a Carman, E.N., Ferguson, G.W., Gehrmann, W.H., Chen, T.C., Holick, M.F., Photobiosynthetic opportunity and ability for UV-B generated vitamin D synthesis in free-living house geckos (Hemidactylus turcicus) and Texas spiny lizards (Sceloporus olivaceous) (2000) Copeia, 2000, pp. 245-250 
504 |a Marsden, A., Sunlight and Reptile UVB Tubes (1999) The value of UVB exposure, , http://www.anapsid.org/uvbanne.html 
504 |a Dixon, K.M., Mason, R.S., Vitamin D (2009) Int. J. Biochem. Cell Biol., 41, pp. 982-985 
504 |a Brames, H., Aspects of light and reptilian immunity (2007) Iguana, 14, pp. 19-23 
504 |a Wang, S., Wang, X., The Tradescantia-micronucleus test on the genotoxicity of UV-B radiation (1999) Mutat. Res., 426, pp. 151-153 
504 |a Principe, G., (2007) Influencia del fotoperíodo en el crecimiento de Caiman latirostris (Daudin. 1802) en condiciones experimentales, Tesina de Licenciatura en Biodiversidad, Facultad de Humanidades y Ciencias, , U.N.L., Santa Fe 
504 |a Frye, F.L., (1991) Reptile Care: An Atlas of Diseases and Treatments, , TFH Publications Inc., Neptune City, USA 
504 |a Seufer, H., (1991) Keeping and Breeding Geckos, , TFH Publications Inc., Neptune City, USA 
504 |a Caldwell, M.M., Bjhn, L.O., Bornman, J.F., Flint, S.D., Kulandaivelu, G., Teramura, A.H., Tevini, M., Effects of increased solar ultraviolet radiation on terrestrial ecosystems (1998) J. Photochem. Photobiol. B, 46, pp. 40-52 
504 |a Diffey, B.L., What is light? (2002) Photoderm. Photoinmunol. Photomed., 18, pp. 68-74 
504 |a Keshava, C., Ong, T., Nath, J., Comparative studies on radiation-induced micronuclei and chromosomal aberrations in V79 cells (1995) Mutat. Res., 328, pp. 63-71 
504 |a Cadet, J., Sage, E., Douki, T., Ultraviolet radiation-mediated damage to cellular DNA (2005) Mutat. Res., 571, pp. 3-17 
504 |a Hoffmann, G.R., Genetic toxicology (1991) Casarett and Doull's Toxicology, The Basic Science of Poisons, pp. 280-296. , Pergamon Press Inc., New York, M.O. Amdur, J. Doull, C.D. Klassen (Eds.) 
504 |a Courdavault, S., Baudouin, C., Charveron, M., Canguilhem, B., Favier, A., Cadet, J., Douki, T., Repair of the three main types of bipyrimidine DNA photoproducts in human keratinocytes exposed to UVB and UVA radiations (2005) DNA Repair, 4, pp. 836-844 
504 |a Pfeifer, G.P., You, Y.H., Besaratinia, A., Mutations induced by ultraviolet light (2005) Mutat. Res., 571, pp. 19-31 
504 |a Mitchell, D.L., Nairn, R.S., The biology of the (6-4) photoproduct (1989) Photochem. Photobiol., 49, pp. 805-819 
504 |a Yoon, J.H., Lee, C.S., O'Connor, T., Yasui, A., Pfeifer, G.P., The DNA damage spectrum produced by simulated sunlight (2000) J. Mol. Biol., 299, pp. 681-693 
504 |a Bender, K., Blattner, C., Knebel, A., Lordanov, M., Herrlich, P., Rahmsdorf, H.J., UV-induced signal transduction (1997) J. Photochem. Photobiol. B, 37, pp. 1-17 
504 |a Häder, D.P., Sinha, R.P., Solar ultraviolet radiation-induced DNA damage in aquatic organisms: potential environmental impact (2005) Mutat. Res., 571, pp. 221-233 
504 |a Britt, B.A., Repair of DNA damage induced by ultraviolet radiation (1995) Plant Physiol., 108, pp. 891-896 
504 |a Vink, A.A., Roza, L., Biological consequences of cyclobutane pyrimidine dimmers (2001) J. Photochem. Photobiol. B, 65, pp. 101-104 
504 |a Schmid, W., The micronucleus test (1975) Mutat. Res., 31, pp. 9-15 
504 |a Miller, B., Pötter-Locher, F., Seelbach, A., Stopper, H., Utesch, D., Madle, S., Evaluation of the in vitro micronucleus test as an alternative to the in vitro chromosomal aberration assay: position of the GUM working group on the in vitro micronucleus test (1998) Mutat. Res., 410, pp. 81-116 
504 |a Campana, M.A., Panzeri, A.M., Moreno, V.J., Dulout, F.N., Micronuclei induction in Rana catesbeiana tadpoles by the pyrethroid insecticide lambda-cyhalothrin (2003) Genet. Mol. Biol., 26, pp. 99-103 
504 |a Malladi, S.M., Bhilwade, H.N., Khan, M.Z., Chaubey, R.C., Gamma ray induced genetic changes in different organs of chick embryo using peripheral blood micronucleus test and comet assay (2007) Mutat. Res., 630, pp. 20-27 
504 |a Bahari, I.B., Noor, F.M., Daud, N.M., Micronucleated erythrocytes as an assay to assess actions by physical and chemical genotoxic agents in Clarias gariepinus (1994) Mutat. Res., 313, pp. 1-5 
504 |a Weller, E.M., Kinder, T.R., Köfferlein, M., Burkart, W., Nüsse, M., UV-B-induced cell cycle perturbations, micronucleus induction, and modulation by caffeine in human keratinocytes (1996) Int. J. Radiat. Biol., 69, pp. 371-384 
504 |a Udroiu, I., The micronucleus test in piscine erythrocytes (2006) Aquat. Toxicol., 79, pp. 201-204 
504 |a Zúñiga-González, G., Torres-Bugarín, O., Zamora-Pérez, A., Gómez-Meda, B.C., Ramos-Ibarra, M.L., Martínez-González, S., González-Rodríguez, A., Gallegos-Arreola, M.P., Differences in the number of micronucleated erythrocytes among young and adult animals including humans. Spontaneous micronuclei in 43 species (2001) Mutat. Res., 494, pp. 161-167 
504 |a Poletta, G.L., Larriera, A., Kleinsorge, E., Mudry, M.D., Caiman latirostris (broad-snouted caiman) as a sentinel organism for genotoxic monitoring: basal values determination of micronucleus and comet assay (2008) Mutat. Res., 650, pp. 202-209 
504 |a Yanosky, A., Histoire naturelle du Caiman à museau large (Caiman latirostris), un alligatoriné mal connu, Rev (1990) Fr. Aquariol., 17 (1), pp. 19-31 
504 |a Larriera, A.L., Imhof, A., Siroski, P., Estado actual de los programas de conservación y manejo del género Caiman en Argentina (2008) Contribución al conocimiento del Género Caiman de Sudamérica, pp. 294-300. , J. Castroviejo, J. Ayarzaguena, A. Velasco (Eds.) 
504 |a Larriera, A., Áreas de nidificación y momento óptimo de cosecha de huevos de Caiman latirostris en Santa Fe, Argentina (1995) La conservación y el manejo de Caimanes y Cocodrilos de América Latina, pp. 221-223. , A. Larriera, L.M. Verdade (Eds.) 
504 |a Larriera, A., Imhof, A., Proyecto Yacaré: Cosecha de huevos para cría en granjas del género Caiman en la Argentina (2006) Manejo de Fauna Silvestre en la Argentina. Programas de Uso Sustentable, Dirección de Fauna Silvestre, Secretaría de Ambiente y Desarrollo Sustentable, pp. 51-64. , M. Bolkovic, D. Ramadori (Eds.) 
504 |a Zippel, K.C., Lillywhite, H.B., Mladinich, C.R.J., Anatomy of the crocodilian spinal vein (2003) J. Morphol., 258, pp. 327-335 
504 |a Tourn, S., Imhof, A., Costa, A., Von Finck, C., Larriera, A., Colecta de sangre y procesamiento de muestras en Caiman latirostris, in: Memorias del IV Workshop sobre Conservación y Manejo del Yacaré Overo (Caiman latirostris), (1994) " La Región" - Fundación Banco Bica - Santo Tomé, Santa Fe, Argentina, pp. 25-30 
504 |a http://www.spss.com/, SPSS for Windows, 2005, Version 14.0, SPSS Inc. Chicago, USA, Available at: ; Hamman, A., Momo, F.R., Duhour, A., Falco, L., Sagario, M.C., Cuadrado, M.E., Effect of UV radiation on Eisenia fetida populations (2003) Pedobiology, 47, pp. 842-845 
504 |a Dong, Q., Svoboda, K., Terrence, R.T., Monroe, W.T., Photobiological effects of UVA and UVB light in zebrafish embryos: evidence for a competent photorepair system (2007) J. Photochem. Photobiol. B, 88, pp. 137-146 
504 |a Botta, C., Di Giorgio, C., Sabatier, A.S., De Méo, M., Genotoxicity of visible light (400-800nm) and photoprotection assessment of action, l-ergothioneine and mannitol and four sunscreens (2008) J. Photochem. Photobiol. B, 91, pp. 24-34 
504 |a Lankoff, A., Sochacki, J., Spoof, L., Meriluoto, J., Wojcik, A., Wegierek, A., Verschaeve, L., Nucleotide excision repair impairment by nodularin in CHO cell lines due to ERCC1/XPF inactivation (2008) Toxicol. Lett., 179, pp. 101-107 
504 |a Groff, A.A., da Silva, J., Nunes, E.A., Ianistcki, M., Guecheva, T.N., Miranda de Oliveira, A., Feitosa de Oliveira, C.P., Henriques, J.A.P., UVA/UVB-induced genotoxicity and lesion repair in Colossoma macropomum and Arapaima gigas Amazonian fish (2010) J. Photochem. Photobiol. B, 99, pp. 93-99 
504 |a Sastre, M.P., Vernet, M., Steinert, S., Single-cell gel/comet assay applied to the analysis of UV radiation-induced DNA damage in Rhodomonas sp. (Cryptophyta) (2001) Photochem. Photobiol., 74, pp. 55-60 
504 |a Ceballos, J.C., Bottino, M.J., Grossi Gallegos, H., Radiación solar en Argentina estimada por satélite: Algunas características espaciales y temporales (2005) Divisão de Satélites e Sistemas Ambientais - DSA, Centro de Previsão de Tempo e Estudos Climáticas - CPTEC, Instituto Nacional de Pesquisas Espaciais - INPE-Brasil, p. 11 
504 |a Schulte, D., Chabreck, R., Effects of nest and egg characteristics on size and early development of American alligators (1990) Proceedings 10th Working Meeting of the Crocodile Specialist Group of the Species Survival Commission of IUCN - The World Conservation Union, pp. 177-187. , Gland, Switzerland 
504 |a Verdade, L.M., (1997) Morphometric Analysis of the broad-snouted Caiman (Caiman latirostris): an assessment of individual's clutch, body size, sex, age, and area of origin, Ph.D. Dissertation, p. 174. , University of Florida, Gainesville, FL, USA 
504 |a Piña, C.I., Simoncini, M., Larriera, A., Effects of two different incubation media on hatching success, body mass, and length in Caiman latirostris (2005) Aquaculture, 246, pp. 161-165 
504 |a Poletta, G.L., Larriera, A., Kleinsorge, E., Mudry, M.D., Genotoxicity of the herbicide formulation Roundup® (glyphosate) in broad-snouted caiman (Caiman latirostris) evidenced by the Comet assay and the Micronucleus test (2009) Mutat. Res., 672, pp. 95-102 
504 |a Carballo, M.A., Mudry, M.D., Indicadores y Marcadores Biológicos (2006) Genética Toxicológica, De los Cuatro Vientos, pp. 83-107. , Buenos Aires, Argentina, M.D. Mudry, M.A. Carballo (Eds.) 
520 3 |a Ultraviolet radiation (UVR) has many positive effects, but overexposure of organisms can generate alterations in DNA, either directly or indirectly, inducing mutagenic and cytotoxic lesions. The aim of this study was to evaluate the genotoxic effects of UVA-B/visible light in the broad-snouted caiman (Caiman latirostris), using the micronucleus (MN) test as a biomarker.Seventy two juvenile caimans, approximately 5 months old, were maintained for during 3 months under total darkness, or under 8 or 16. h of daily exposure to artificial UV/visible light. MN test was applied before and after the experiment and the difference in MN frequencies was determined. Our results indicate significant increases in MN frequency with all treatments, compared to the basal (before experiment) values. Animals exposed to UV radiation showed a greater increase in MN frequency, compared to the animals exposed to total darkness (TD) treatment.These results provide information about the possible harmful effects generated by sub-chronic exposure to UVR in zoos, reptile hobbyist and breeding programs, as well as the deleterious consequences of increased UV environmental impact on wild species such as the broad-snouted caiman. © 2010 Elsevier B.V.  |l eng 
536 |a Detalles de la financiación: Universidad Nacional del Litoral 
536 |a Detalles de la financiación: This study was supported by Proyecto Yacaré and Yacarés Santafesinos (MUPCN) and Universidad Nacional del Litoral (UNL-Santa Fe, Argentina). The authors are grateful to other members of Proyecto Yacaré for their collaboration in this study, to the staff of the laboratory “L3”, Facultad de Humanidades y Ciencias, Universidad Nacional del Litoral (FHUC-UNL), and to Prof. Ricardo Carreri (FHUC-UNL) for their help in UVR issues. 
593 |a Proyecto Yacaré - Laboratorio de Zoología Aplicada, Anexo Vertebrados (FHUC - UNL/MASPyMA), A. del Valle 8700, Santa Fe, Argentina 
593 |a Cátedra de Toxicología y Bioquímica Legal, Facultad de Bioquímica y Ciencias Biológicas, Universidad Nacional del Litoral, Santa Fe, Argentina 
593 |a Grupo de Investigación en Biología Evolutiva, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires - CONICET, Buenos Aires, Argentina 
593 |a Secretaria de Estado de Medio Ambiente, Desarrollo Sustentable de la Provincia de Santa Fe, Santa Fe, Argentina 
690 1 0 |a CAIMAN LATIROSTRIS 
690 1 0 |a CROCODILIANS 
690 1 0 |a GENOTOXICITY 
690 1 0 |a MICRONUCLEUS TEST 
690 1 0 |a UV RADIATION 
690 1 0 |a BIOLOGICAL MARKER 
690 1 0 |a DNA 
690 1 0 |a ALLIGATOR 
690 1 0 |a ANIMAL CELL 
690 1 0 |a ANIMAL EXPERIMENT 
690 1 0 |a ARTICLE 
690 1 0 |a CAIMAN LATIROSTRIS 
690 1 0 |a CONTROLLED STUDY 
690 1 0 |a ERYTHROCYTE 
690 1 0 |a GENOTOXICITY 
690 1 0 |a MICRONUCLEUS TEST 
690 1 0 |a NONHUMAN 
690 1 0 |a PRIORITY JOURNAL 
690 1 0 |a RADIATION EXPOSURE 
690 1 0 |a RADIATION RESPONSE 
690 1 0 |a ULTRAVIOLET A RADIATION 
690 1 0 |a ULTRAVIOLET B RADIATION 
690 1 0 |a ALLIGATORS AND CROCODILES 
690 1 0 |a ANIMALS 
690 1 0 |a DNA DAMAGE 
690 1 0 |a MICRONUCLEUS TESTS 
690 1 0 |a ULTRAVIOLET RAYS 
690 1 0 |a ANIMALIA 
690 1 0 |a CAIMAN 
690 1 0 |a CAIMAN LATIROSTRIS 
690 1 0 |a CROCODYLIDAE (ALL CROCODILES) 
690 1 0 |a REPTILIA 
700 1 |a Poletta, G.L. 
700 1 |a Imhof, A. 
700 1 |a Siroski, P.A. 
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