يعرض 1 - 20 نتائج من 20 نتيجة بحث عن '"modos reprodutivos"', وقت الاستعلام: 0.52s تنقيح النتائج
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    Academic Journal
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    المساهمون: Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES), Conselho Nacional de Desenvolvimento Científico (CNPq)

    المصدر: Oecologia Australis; v. 26, n. 3 (2022): Spontaneous Submissions; 411-423 ; 2177-6199

    مصطلحات موضوعية: Anfíbios, Evolução, Modos reprodutivos

    جغرافية الموضوع: Global

    وصف الملف: application/pdf

    Relation: https://revistas.ufrj.br/index.php/oa/article/view/44643/28532; https://revistas.ufrj.br/index.php/oa/article/view/44643/29790; https://revistas.ufrj.br/index.php/oa/article/downloadSuppFile/44643/15954; https://revistas.ufrj.br/index.php/oa/article/downloadSuppFile/44643/15956; https://revistas.ufrj.br/index.php/oa/article/downloadSuppFile/44643/15957; https://revistas.ufrj.br/index.php/oa/article/downloadSuppFile/44643/15958; Alford, R. A. 1999. Ecology: resource use, competition, and predation. In: R. W. McDiarmid & R. Altig (Eds.), Tadpoles: the biology of anuran larvae. pp. 240—278. Chicago: The University of Chicago Press.; Altig, R., & Crother, B. I. 2006. The evolution of three deviations from the biphasic anuran life cycle: alternatives to selection. Herpetological Review, 37(3), 321—325.; Alton, L. A., & Franklin, C. E. 2017. Drivers of amphibian declines: effects of ultraviolet radiation and interactions with other environmental factors. Climate Change Responses, 4(6), 1—26. DOI:10.1186/s40665-017-0034-7; Angelini, F., & Ghiara, G. 1984. Reproductive modes and strategies in vertebrate evolution. Bolletino di zoologia, 51(1—2), 121—203. DOI:10.1080/11250008409439459; Arribas, R., Touchon, J. C., & Gomez-Mestre, I. 2018. Predation and competition differentially affect the interactions and trophic niches of a Neotropical amphibian guild. Frontiers in Ecology and Evolution, 6(1), 1—14. DOI:10.3389/fevo.2018.00028; Benício, R. A., Provete, D. B., Lyra, M. L., Heino, J., Haddad, C. F. B., Rossa-Feres, D. C., & da Silva, F. R. 2021. Differential speciation rates, colonization time and niche conservatism affect community assembly across adjacent biogeographical regions. Journal of Biogeography, 48(9), 2211—2225. DOI:10.1111/jbi.14145; Bernal, M. H., Alton, L. A., Cramp, R. L., & Franklin C. E. 2011. Does simultaneous UV-B exposure enhance the lethal and sub-lethal effects of aquatic hypoxia on developing anuran embryos and larvae? Journal of Comparative Physiology B, 181(7), 973—980. DOI:10.1007/s00360-011-0581-3; Brown, J. L., Twomey, E., Morales, V., & Summers, K. 2008. Phytotelm size and relation to parental care and mating strategies in two species of Peruvian poison frogs. Behaviour, 145(9), 1139—1165. DOI:10.1163/156853908785387647; Brown, K. S., & Brown, G. G. 1992. Habitat alteration and species loss in Brazilian forests. In: T. C. Whitmore & J. A. Sayer (Eds.), Tropical deforestation and species extinction. pp. 129—142. London: Chapman and Hall.; Buxton, V. L., & Sperry, J. H. 2017. Reproductive decisions in anurans: A review of how predation and competition affects the deposition of eggs and tadpole. Bioscience, 67(1), 26—38. DOI:10.1093/biosci/biw149; Callery, E. M., Fang, H., & Elinson, R.P. 2001. Frogs without polliwogs: evolution of anuran direct development. BioEssays, 23(3), 233—241. DOI:10.1002/1521-1878(200103)23:33.0.CO;2-Q; Campos, F. S., Lourenço-de-Moraes, R., Rudoy, A., Rödder, D., Llorente, G. A., & Solé, M. 2019. Ecological trait evolution in amphibian phylogenetic relationships. Ethology Ecology & Evolution, 31(6), 526—543. DOI:10.1080/03949370.2019.1630012; Chivers, D. P., Kiesecker, J. M., Marco, A., DeVito, J., Anderson, M. T., & Blaustein A. R. 2001. Predator-induced life history changes in amphibians: egg predation induces hatching. Oikos, 92(1), 135—142. DOI:10.1034/j.1600-0706.2001.920116.x; Crump, M. L. 1974. Reproductive strategies in a tropical anuran community. Doctoral thesis. University of Kansas Museum of Natural History Miscellaneous Publication, (61), 1—68.; Crump, M. L. 2015. Anuran reproductive modes: evolving perspectives. Journal of Herpetology, 49(1), 1—16. DOI:10.1670/14-097; de Lima, A. V. P., Reis, A. H., Amado, N. G., Cassiano-Lima, D., Borges-Nojosa, D. M., Oriá, R. B., & Abreu, J. G. 2016. Developmental aspects of the direct-developing frog Adelophryne maranguapensis. Genesis, 54(5), 257—271. DOI:10.1002/dvg.22935; del Pino, E., & Escobar, B. 1981. Embryonic stages of Gastrotheca riobambae (Fowler) during maternal incubation and comparison of development with that of other egg-brooding hylid frogs. Journal of Morphology, 167(3), 277—295. DOI:10.1002/jmor.1051670303; Denver, R. J., Glennemeier, K. A., & Boorse, G. C. 2002. Endocrinology of complex life cycles: amphibians. In: D. Pfaff, A. P. Arnold, S. E. Fahrbach, A. M. Etgen & R. T. Rubin (Eds.), Hormones, brain and behavior. pp. 469—513. London: Academic Press.; Dobzhansky, T. H. 1950. Evolution in the tropics. Tropical Ecology, 38(2), 209—221.; Duellman, W. E. 1992. Reproductive strategies of frogs. Scientific American, 267(1), 80—87. DOI:10.1038/scientificamerican0792-80; Duellman, W. E., & Trueb, L. 1986. Biology of amphibians. Nova York: McGraw-Hill: p. 670.; Fabrezi, M., Quinzio, S. I., Goldberg, J., Cruz, J. C., Pereyra, M. C., & Wassersug, R. J. 2016. Developmental changes and novelties in ceratophryid frogs. EvoDevo, 7(5), 1—16. DOI:10.1186/s13227-016-0043-9; Farrar, E. S., & Hey, J. D. 1997. Carnivorous spadefood (Spea bombifrons Cope) tadpoles and fairy shrimp in Western Iowa. Journal of the Iowa Academy of Sciences, 104(1), 4—7.; Ferreira, R. B., Lourenço-de-Moraes, R., Zocca, C., Duca, C., Beard, K. H., & Brodie Jr, E. D. 2019. Antipredator mechanisms of post-metamorphic anurans: a global database and classification system. Behavioral Ecology and Sociobiology, 73(69), 1—21. DOI:10.1007/s00265-019-2680-1; Fontana, R. B., Furtado, R., Zanella, N., Debastiani, V. J., & Hartz, S. M. 2021. Linking ecological traits to extinction risk: Analysis of a Neotropical anuran database. Biological Conservation, 246(1), 1—7. DOI:10.1016/j.biocon.2021.109390; Frost, D. R. 2021. Amphibian Species of the World: an Online Reference. Version 6.1. Base de dados eletrônica disponível em https://amphibiansoftheworld.amnh.org/index.php. American Museum of Natural History, Nova Iorque, EUA. DOI:10.5531/db.vz.0001; Golberg, J., Taucce, P. P. G., Quinzio, S. L., Haddad, C. F. B., & Candioti, F. V. 2020. Increasing our knowledge on direct-developing frogs: The ontogeny of Ischnocnema henselii (Anura: Brachycephalidae). Zoologischer Anzeiger, 284(1), 78—87. DOI:10.1016/j.jcz.2019.11.001; Gomez-Mestre, I., & Warkentin, K. M. 2007. To hatch and hatch not: similar selective trade-offs but different responses to egg predators in two closely related, syntopic treefrogs. Oecologia, 153(1), 197—206. DOI:10.1007/s00442-007-0708-0; Gomez-Mestre, I., Pyron, R. A., & Wiens, J. J. 2012. Phylogenetic analysis reveal unexpected patterns in the evolution of reproductive modes in frogs. Evolution, 66(12), 1—14. DOI:10.1111/j.1558-5646.2012.01715.x; Grant, P. R., & Grant, B. R. 2006. Evolution of character displacement in Darwin’s finches. Science, 313(5784), 224—226. DOI:10.1126/science.1128374; Griffiths, R. A., Edgar, P. W., & Wong, A. L. C. 1991. Interspecific competition in tadpoles: Growth inhibition and growth retrieval in natterjack toads, Bufo calamita. Journal of Animal Ecology, 60(3), 1065—1076. DOI:10.2307/5431; Haddad, C. F. B., & Prado, C. P. A. 2005. Reproductive modes in frogs and their unexpected diversity in the Atlantic forest of Brazil. BioScience, 55(3), 207—217. 10.1641/0006-3568(2005)055[0207:RMIFAT]2.0.CO;2; Hanken, J., Jennings, D. H., & Olsson, L. 1997. Mechanistic basis of life-history evolution in anuran amphibians: Direct development. American Zoologist, 37(2), 160—171. DOI:10.1093/icb/37.2.160; Hedges, S. B., Duellman, W. E., & Heinicke, M. P. 2008. New World direct-developing frogs (Anura: Terrarana): Molecular phylogeny, classification, biogeography, and conservation. Zootaxa, 1737(1), 1—182. DOI:10.11646/zootaxa.1737.1.1; Hero, J. M., Williams, S. E., & Magnusson, W. E. 2005. Ecological traits of declining amphibians in upland areas of eastern Australia. Journal of Zoology, 267(3), 221—232. DOI:10.1017/S0952836905007296; Heyer, W. R., McDiarmid, R. W., & Wigmann D. L. 1975. Tadpoles, predation and pond habitats in the tropics. Biotropica, 7(2), 100—111. DOI:10.2307/2989753; Lack, D. 1947. Darwin’s finches. Cambridge: Cambridge University Press: p. 208.; Laurila, A. 2000. Competitive ability and the coexistence of anuran larvae in freshwater rock-pools. Freshwater Biology, 43(2), 161—174. DOI:10.1046/j.1365-2427.2000.00533.x; Levis, N. A., Fuller, C. G., & Pfenning D. W. 2020. An experimental investigation of how intraspecific competition and phenotypic plasticity can promote the evolution of novel, complex phenotypes. Biological Journal of the Linnean Society, 131(1), 76—87. DOI:10.1093/biolinnean/blaa095; Liedtke, H. C., Müller, H., Hafner, J., Penner, J., Gower, D. J., Mazuch, T., Rödel, M. O., & Loader, S. P. 2017. Terrestrial reproduction as an adaptation to steep terrain in African toads. Proceedings of the Royal Society B, 284(1851), 1—9. DOI:10.1098/rspb.2016.2598; Lion, M. B., Mazzochini, G. G., Garda, A. A., Lee, T. M., Bickford, D., Costa, G. C., & Fonseca C. R. 2018. Global patterns of terrestriality in amphibian reproduction. Global Ecology and Biogeography, 28(6), 1—13. DOI:10.1111/geb.12886; Londero, J. E. L., Santos, M. B., & Schuch, A. P. 2019. Impact of solar UV radiation on amphibians: focus on genotoxic stress. Mutation Research/Genetic Toxicology and Environmental Mutagenesis, 842, 14—21. DOI:10.1016/j.mrgentox.2019.03.003; Lutz, B. 1948. The ontogenetic evolution in frogs. Evolution, 2(1), 29—39. DOI:10.1111/j.1558-5646.1948.tb02729.x; Lynn, W. G. 1961. Types of amphibian metamorphosis. American Zoologist, 1(1), 151—161. DOI:10.1093/icb/1.1.151; Magnusson, W. E., & Hero, J. M. 1991. Predation and the evolution of complex oviposition behaviour in Amazon rainforest frogs. Oecologia, 86(3), 310—318. DOI:10.1007/BF00317595; Martins, M., Pombal, J. P., & Haddad, C. F. B. 1998. Escalated aggressive behaviour and facultative parental care in the nest building gladiator frog, Hyla faber. Amphibia-Reptilia, 19(1), 65—73. DOI:10.1163/156853898X00331; McKeon, C. S., & Summers K. 2013. Predator driven reproductive behavior in a tropical frog. Evolutionary Ecology, 27(4), 725—737. DOI:10.1007/s10682-013-9641-3; Meegaskumbura, M., Senevirathne, G., Biju, S. D., Garg, S., Meegaskumbura, S., Pethiyagoda, R., Hanken, J., & Schneider, C. J. 2015. Patterns of reproductive-mode evolution in Old World tree frogs (Anura, Rhacophoridae). Royal Swedish Academy of Sciences, 44(5), 509—522. DOI:10.1111/zsc.12121; Müller, H., Liedtke, H. C., Menegon, M., Beck, J., Ballesteros-Mejia, L., Nagel, P., & Loader, S. P. 2013. Forest as promoters of terrestrial life-history strategies in East African amphibians. Biology Letters, 9(3), 1—5. DOI:10.1098/rsbl.2012.1146; Naumann, B., Schwiger, S., Hammel, J. U., & Müller, H. 2021. Parallel evolution of direct development in frogs – Skin and thyroid gland development in African Squeaker Frogs (Anura: Arthroleptidae: Arthroleptis). Developmental Dynamics, 250(4), 584—600. DOI:10.1002/dvdy.275; Nunes-de-Almeida, C. H. L., Haddad, C. F. B., & Toledo, L. F. 2021. A revised classification of the amphibian reproductive modes. Salamandra German Journal of Herpetology, 57(3), 413—427.; Oliveira, B. F., São-Pedro, V. A., Santos-Barrera, G., Penone, C., & Gosta G. C. 2017. AmphiBIO, a global database for amphibian ecological traits. Scientific Data, 5(170123), 1—7. DOI:10.1038/sdata.2017.123; Portik, D. M., & Blackburn, D. C. 2017. The evolution of reproductive diversity in Afrobatrachia: A phylogenetic comparative analysis of an extensive radiation of African frogs. Evolution, 70(9), 2017—2032. DOI:10.1111/evo.12997; Salthe, S. N., & Duellman, W. E. 1973. Quantitative constrains associated with reproductive mode in anurans. In: J. L. Vial (Ed.), Evolutionary biology of the anurans: contemporary research on major problems. pp. 229—249. Columbia: University of Missouri Press.; Thibaudeau, G., & Altig, R. 1999. Endotrophic anurans. In: R. W. McDiarmid & R. Altig (Eds.), Tadpoles: the biology of anuran larvae. pp. 170—180. Chicago: The University of Chicago Press.; Thomas, A., Das, S., & Manish K. 2019. Influence of stream habitat variable on distribution and abundance of tadpole of the endangered Purple frog, Nasikabatrachus sahyadrensis (Anura: Nasikabatrachidae). Journal of Asia-Pacific Biodiversity, 12(2), 144—151. DOI:10.1016/j.japb.2019.01.009; Todd, B. D. 2007. Parasites lost? An overlooked hypothesis for the evolution of alternative reproductive strategies in amphibians. The American Naturalist, 170(5), 793—799. DOI:10.1086/521958; Todd, B. D., & Winne C. T. 2006. Ontogenetic and interspecific variation in timing of movement and responses to climate factors during migrations by pond-breeding amphibians. Canadian Journal of Zoology, 84(5), 715—722. DOI:10.1139/z06-054; Toledo, L. F., Ribeiro, R. S., & Haddad, C. F. B. 2007. Anurans as prey: an exploratory analysis and size relationships between predators and their prey. Journal of Zoology, 271(2), 170—177. DOI:10.1111/j.1469-7998.2006.00195.x; Touchon, J. C., & Warkentin, K. M. 2008. Reproductive mode plasticity: Aquatic and terrestrial oviposition in a treefrog. Proceedings of the National Academy of Sciences of the United States of America, 105(21), 7495—7499. DOI:10.1073/pnas.0711579105; Vági, B., Végvári, Z., Liker, A., Freckleton, R. P., Székely, T. 2019. Parental care and the evolution of terrestriality in frogs. Proceedings of the Royal Society B: Biological Sciences, 286(1900), 1—10. DOI:10.1098/rspb.2018.2737; Van Dijk, D. E. 1971. Anuran ecology in relation particularly to oviposition and development out of water. Zoologica Africana, 6(1), 119—132. DOI:10.1080/00445096.1971.11447407; Wassersug, R. 1986. How does a tadpole know when to metamorphose? A theory linking environmental and hormonal cues. Journal of Theorical Biology, 118(2), 171—181. DOI:10.1016/S0022-5193(86)80132-1; Wells, K. D. 2007. The ecology and the behaviour of amphibians. London: The University of Chicago Press: p. 1400.; Weygoldt, P. 1987. Evolution of parental care in dart poison frogs (Amphibia: Anura: Dendrobatidae). Journal of Zoological Systematics and Evolutionary Research, 25(1), 51—67. DOI:10.1111/j.1439-0469.1987.tb00913.x; Weygoldt, P., & Carvalho-E-Silva, S. P. 1992. Mating and oviposition in the hylodine frog Crossodactylus gaudichaudii (Anura: Leptodactylidae). Amphibia-Reptilia, 13(1), 35—45. DOI:10.1163/156853892X00210; Wilbur, H. M. 1987. Regulation of structure in complex systems: experimental temporary pond communities. Ecology, 68(5), 1437—1452. DOI:10.2307/1939227 Wilbur, H. M., & Collins, J. P. 1973. Ecological aspects of amphibian metamorphosis: nonnormal distributions of competitive ability reflect selection for facultative metamorphosis. Science, 182(4119), 1305—1314. DOI:10.1126/science.182.4119.1305; Wiens, J. J., & Graham, C. H. 2005. Niche conservatism: Integrating evolution, ecology, and conservation biology. Annual Review of Ecology, Evolution and Systematics, 36(1), 519—539. DOI:10.1146/annurev.ecolsys.36.102803.095431; Woodward, B. D. 1982. Tadpole competition in a desert anuran community. Oecologia, 54(1), 96—100. DOI:10.1007/BF00541115; Woodward, B. D. 1983. Predator-prey interactions and breeding-pond use of temporary-pond species in a desert anuran community. Ecology, 64(6), 1549—1555. DOI:10.2307/1937509; Zamúdio, K. R., Bell, R. C., Nali, R. C., Haddad, C. F. B., & Prado, C. P. A. 2016. Polyandry, predation, and the evolution of frog reproductive modes. The American Naturalist, 188(Supplement), 41—61. DOI:10.1086/687547; https://revistas.ufrj.br/index.php/oa/article/view/44643

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    Dissertation/ Thesis
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    Dissertation/ Thesis

    Thesis Advisors: Selma Maria de Almeida Santos, Carlos Arturo Navas Iannini, Otavio Augusto Vuolo Marques, Andrea Maria Mess, Cristiano de Campos Nogueira

    المصدر: Biblioteca Digital de Teses e Dissertações da USPUniversidade de São PauloUSP.

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    المساهمون: Universidade Estadual Paulista (Unesp), Universidade Federal da Fronteira Sul (UFFS)

    المصدر: SciELO
    Repositório Institucional da UNESP
    Universidade Estadual Paulista (UNESP)
    instacron:UNESP
    Biota Neotropica, Volume: 12, Issue: 4, Pages: 137-145, Published: DEC 2012
    Biota Neotropica v.12 n.4 2012
    Biota Neotropica
    Instituto Virtual da Biodiversidade (BIOTA-FAPESP)
    instacron:BIOTA-FAPESP

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    المساهمون: Universidade Estadual Paulista (Unesp), Universidade Federal de Goiás (UFG), Universidade Federal de São Carlos (UFSCar)

    المصدر: Biota Neotropica v.11 n.2 2011
    Biota Neotropica
    Instituto Virtual da Biodiversidade (BIOTA-FAPESP)
    instacron:BIOTA-FAPESP
    SciELO
    Repositório Institucional da UNESP
    Universidade Estadual Paulista (UNESP)
    instacron:UNESP
    Biota Neotropica, Volume: 11, Issue: 2, Pages: 377-391, Published: JUN 2011

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    Dissertation/ Thesis