يعرض 1 - 20 نتائج من 117 نتيجة بحث عن '"Martínez Ortega, María Montserrat"', وقت الاستعلام: 0.58s تنقيح النتائج
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    المصدر: Mediterranean Botany; Vol 42 (2021); e67901 ; Mediterranean Botany; Vol. 42 (2021); e67901 ; 2603-9109

    وصف الملف: application/pdf

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Hybridization and conservation of Mediterranean orchids: should we protect the orchid hybrids or the orchid hybrid zones? Biol. Cons.129: 14−23. doi: https://doi.org/10.1016/j.biocon.2005.09.043; Doležel, J., Sgorbati, S. & Lucretti, S. 1992. Comparison of three DNA fluorochromes for flow cytometric estimation of nuclear DNA content in plants. Physiol. Plant. 85: 625−631. doi: https://doi.org/10.1034/j.1399-3054.1992.850410.x; Elith, J. 2002. Quantitative methods for modeling species habitat: Comparative performance and an application to Australian plants. In: Ferson, S. & Burgham, M. (Eds.). Quantitative Methods for Conservation Biology. Pp. 39−58. Springer, New York. doi: https://doi.org/10.1007/0-387-22648-6_4; Elith, J. & Leathwick, J.R. 2009. Species distribution models: ecological explanation and prediction across space and time. Annu. Rev. Ecol. Evol. 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Biol. 29: 1040−1051. doi: https://doi.org/10.1111/cobi.12526; La Cour L.F. 1954. Smear and squash techniques in plant cytology. Laboratory Practice 3: 326−330.; Mallet, J. 2005. Hybridization as an invasion of the genome. Trends Ecol. Evol. 20: 229−237. doi: https://doi.org/10.1016/j.tree.2005.02.010; Marques D.A., Meier J.I. & Seehausen O. 2019. A Combinatorial View on Speciation and Adaptive Radiation. Trends Ecol. Evol. 34: 531−544. doi: https://doi.org/10.1016/j.tree.2019.02.008; Marques, I., Loureiro, J., Draper, D., Castro, M. & Castro, S. 2018. How much do we know about the frequency of hybridization and polyploidy in the Mediterranean region? Plant Biol. 20: 21−37. doi: https://doi.org/10.1111/plb.12639; Martínez-Ortega, M.M., Delgado, L., Albach, D.C., Elena-Roselló, J.A. & Rico, E. 2004. Species boundaries and phylogeographic patterns in cryptic taxa inferred from AFLP markers: Veronica subgen. Pentasepalae (Scrophulariaceae) in the western Mediterranean. Syst. Bot. 29: 965−986. doi: https://doi.org/10.1600/0363644042451071; Muscarella, R., Galante, P.J., Soley‐Guardia, M., Boria, R.A., Kass, J.M., Uriarte, M., Anderson, R.P. 2014. ENMeval: An R package for conducting spatially independent evaluations and estimating optimal model complexity for Maxent ecological niche models. Methods Ecol. Evol. 5: 1198−1205. doi: https://doi.org/10.1111/2041-210x.12261; Nieto-Feliner, G., Alvarez, I., Fuertes-Aguilar, J., Heuertz, M., Marques, I., Moharrek, F., Piñeiro, R., Riina, R., Rosselló, J.A., Soltis P.S. & Villa-Machío, I. 2017. Is homoploid hybrid speciation that rare? An empiricist’s view. Heredity 118: 513−516. doi: https://doi.org/10.1038/hdy.2017.7; Padilla-García, N., Rojas-Andrés, B.M., López-González, N., Castro, M., Castro, S., Loureiro, J., Albach, D.C., Machon, N. & Martínez-Ortega, M.M. 2018. The challenge of species delimitation in the diploid-polyploid complex Veronica subsection Pentasepalae. Mol. Ecol. Evol. 119: 196−209. doi: https://doi.org/10.1016/j.ympev.2017.11.007; Pearson, R.G., Raxworthy, C.J., Nakamura, M. & Townsend Peterson A. 2007. Predicting species distributions from small numbers of occurrence records: A test case using cryptic geckos in Madagascar. J. Biogeogr. 34: 102−117. doi: https://doi.org/10.1111/j.1365-2699.2006.01594.x; Phillips, S.J., Anderson, R.P. & Schapire, R.E. 2006. Maximum entropy modeling of species geographic distributions. Ecol. Model. 190(3): 231−259. doi: https://doi.org/10.1016/j.ecolmodel.2005.03.026; Rieseberg, L.H., Raymond, O., Rosenthal, D.M., Lai, Z., Livingstone, K., Nakazato, T., Durphy, J.L., Schwarzbach, A.E., Donovan, L.A. & Lexer, C. 2003. Major ecological transition in wild sunflowers facilitated by hybridization. Science 301: 1211−1216. doi: https://doi.org/10.1126/science.1086949; Rojas-Andrés, B.M., Albach, D.C. & Martínez-Ortega, M.M. 2015. Exploring the intricate evolutionary history of the diploid–polyploid complex Veronica subsection Pentasepalae (Plantaginaceae). Bot. J. Linnean Soc. 179: 670−692. doi: https://doi.org/10.1111/boj.12345; Rojas-Andrés, B.M. & Martínez-Ortega, M.M. 2016. Taxonomic revision of Veronica subsection Pentasepalae (Plantaginaceae sensu APG III). Phytotaxa 285: 1−100. doi: https://doi.org/10.11646/phytotaxa.285.1.1; Rojas-Andrés, B.M., Padilla-García, N., de Pedro, M., López-González, N., Delgado, L., Albach, D.C., Castro, M., Castro, S., Loureiro, J. & Martínez-Ortega, M.M. 2019. Environmental differences are correlated with the distribution pattern of cytotypes in Veronica subsection Pentasepalae at a broad scale. Ann. Bot. 125: 471−484. doi: https://doi.org/10.1093/aob/mcz182; Seehausen O. 2003. Hybridization and adaptive radiation. Trends Ecol. Evol. 19: 198−207. doi: https://doi.org/10.1016/j.tree.2004.01.003; Sennen, E.M.G. 1930. Plantes d'Espagne. Bol. Soc. Ibér. Ci. Nat. 29(3-5): 74−89.; Soltis, P. S. 2013. Hybridization, speciation and novelty. J. Evol Biol. 26(2): 291−293. doi: https://doi.org/10.1111/jeb.12095; Stebbins, G.L. 1950. Variation and evolution in plants. Springer, Boston.; Stronen, A.V. & Paquet, P.C. 2013. Perspectives on the conservation of wild hybrids. Biol. Conserv. 167: 390−395. doi: https://doi.org/10.1016/j.biocon.2013.09.004; Thiers, B. 2020 (continuously updated). Index Herbariorum: a global directory of public herbaria and associated staff. New York Botanical Garden's Virtual Herbarium. http://sweetgum.nybg.org/ih/; Van Oppen, M.J.H., Oliver, J.K., Putnam, H.M., & Gates, R. D. 2015. Building coral reef resilience through assisted evolution. P. Natl. Acad. Sci. USA 112: 2307−2313. doi: https://doi.org/10.1073/pnas.1422301112; vonHoldt, B.M., Brzeski, K.E., Wilcove, D.S. & Rutledge, L.Y. 2018. Redefining the role of admixture and genomics in species conservation. Cons. Lett. 11(2): e12371. doi: https://doi.org/10.1111/conl.12371; Wagner, F., Otto, T., Zimmer, C., Reichhart, V., Vogt, R. & Oberprieler, C. 2019. At the crossroads towards polyploidy: genomic divergence and extent of homoploid hybridization are drivers for the formation of the ox-eye daisy polyploid complex (Leucanthemum, Compositae-Anthemideae). New Phytol. 223: 2039−2053. doi: https://doi.org/10.1111/nph.15784; Wagner, W.H. 1970. Biosystematics and evolutionary noise. Taxon 19: 146−151. doi: https://doi.org/10.2307/1217945; Wolf, D.E., Takebayashi, N. & Rieseberg L.H. 2001. Predicting the risk of extinction through hybridization. Conserv. Biol. 15: 1039−1053. doi: https://doi.org/10.1046/j.1523-1739.2001.0150041039.x; https://revistas.ucm.es/index.php/MBOT/article/view/67901

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    Academic Journal

    وصف الملف: application/pdf

    Relation: https://doi.org/10.1016/j.ympev.2017.11.007; CGL2009-07555; CGL2012-32574; Padilla-García, N., Rojas-Andrés, B. M., López-González, N., Castro, M., Castro, S., Loureiro, J., Albach, D. C., Machon, N., & Martínez-Ortega, M. M. (2018). The challenge of species delimitation in the diploid-polyploid complex Veronica subsection Pentasepalae. Molecular Phylogenetics and Evolution, 119, 196–209. doi:10.1016/j.ympev.2017.11.007; http://hdl.handle.net/10366/154728

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    وصف الملف: application/pdf

    Relation: Adobe Acrobat; https://doi.org/10.1002/aps3.1154; Padilla-García, N., Malvar-Ferreras, T., Lambourdière, J., Martínez-Ortega, M. M., & Machon, N. (2018). Microsatellite marker development for the tetraploid Veronica aragonensis (Plantaginaceae) using next-generation sequencing and high-resolution melting analyses. Applications in plant sciences, 6(5), e01154. doi:10.1002/aps3.1154; http://hdl.handle.net/10366/19221

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    مصطلحات موضوعية: Asteraceae, Evax, Filago, Microsatellites, 2417.14 Genética Vegetal

    وصف الملف: application/pdf

    Relation: https://dx.doi.org/10.1002%2Faps3.1171; Gutiérrez-Larruscain, D., Malvar Ferreras, T., Martínez-Ortega, M. M., Rico, E., & Andrés-Sánchez, S. (2018). SSR markers for Filago subg. Filago (Gnaphalieae: Asteraceae) and cross-amplification in three other subgenera. Applications in plant sciences, 6(8), e01171. doi:10.1002/aps3.1171; http://hdl.handle.net/10366/139874

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    وصف الملف: application/pdf

    Relation: https://doi.org/10.1093/aobpla/ply047; Bobo-Pinilla, J., Peñas de Giles, J., López-González, N., Mediavilla, S., & Martínez-Ortega, M. M. (2018). Phylogeography of an endangered disjunct herb: long-distance dispersal, refugia and colonization routes. AoB PLANTS, 10(5), ply047. doi:10.1093/aobpla/ply047; http://hdl.handle.net/10366/139855

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    المساهمون: Bobo Pinilla, Javier, de León, Sara B. Barrio, Colomar, Jaume Seguí, Fenu, Giuseppe, Bacchetta, Gianluigi, de Giles, Julio Peña, Martínez Ortega, María Montserrat

    Relation: info:eu-repo/semantics/altIdentifier/pmid/27833802; info:eu-repo/semantics/altIdentifier/wos/WOS:000387170800004; volume:2016; issue:11; numberofpages:29; journal:PEERJ; http://hdl.handle.net/11584/208144; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-84994627907; https://peerj.com/articles/2618.pdf

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