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Comparative genomics reveals insights into avian genome evolution and adaptation
ArticleAbstract: Birds are the most species-rich class of tetrapod vertebrates and have wide relevance across many rePalabras claves:Autores:Alonzo Alfaro-Núñez, Alström P., An N., Antunes A., Bertelsen M.F., Borges R., Braun E.L., Bruford M.W., Burt D.W., Cho S., Cui J., Da Fonseca R.R., Derryberry E.P., Dixon A., Edwards S.V., Fan Y., Farré M., Fjeldså J., Ganapathy G., Gatesy J., Graves G.R., Green R.E., Greenwold M.J., Griffin D., Hara E., Håstad O., Haussler D., Hoffmann F.G., Houde P., Howard J.T., Hu H., Hu J., Huang Y., Huang Z., Jin L., Johnson W.E., Khan I., Kim H., Kim H.J., Kim K.W., Larkin D.M., Lee C., Li B., Li C., Li H., Li N., Li Q., Li S., Lian J., Liu S., Liu Y., Machado J.P., Mebkp_redith R.W., Mindell D.P., Mourier T., Narayan J., O'Brien S.J., Ödeen A., Opazo J.C., Orlando L., Pan H., Pfenning A., Rahbek C., Ray D.A., Rivas M.V., Romanov M.N., Ryder O.A., Sawyer R.H., Schubert M., Slavov G., Smith J., Springer M.S., Storz J.F., Wang B., Wang G., Wang J., Wang Z., Warren W.C., Wen P., Whitney O., Willerslev E., Wilson R.K., Xiao J., Xie Q., Xiong Y., Xiong Z., Xu L., Yang W., Yang Z., Yu H., Zeng Y., Zhan X., Zhang F., Zhang G., Zhang P., Zhang Y., Zheng Q., Zhou L., Zhou Q.Fuentes:scopusAbundance drives broad patterns of generalisation in plant–hummingbird pollination networks
ArticleAbstract: Abundant pollinators are often more generalised than rare pollinators. This could be because abundanPalabras claves:mutualism, Mutualistic networks, plant–animal interactions, specialisationAutores:Boris A. Tinoco, Cotton P.A., Dalsgaard B., Dicks L.V., Lara C., Maglianesi M.A., Marin-Gómez O.H., Martín González A.M., Maruyama P.K., Ortiz-Pulido R., Rahbek C., Rocca M.A., Rodrigues L.C., Rosero-Lasprilla L., Sazima M., Simmons B.I., Sonne J., Sutherland W.J., Vasconcelos M.F., Vizentin-Bugoni J.Fuentes:googlescopusFunctional diversity mediates macroecological variation in plant–hummingbird interaction networks
ArticleAbstract: Aim: Species interaction networks are known to vary in structure over large spatial scales. We invesPalabras claves:functional dispersion, insularity, Modularity, network structure, niche partitioning, plant–pollinator interactions, pollination networks, Specialization, trait diversityAutores:Abrahamczyk S., Alarcón R., Araujo A.C., Araújo F.P., Baquero A.C., Boris A. Tinoco, Chávez-González E., Coelho A.G., Cotton P.A., Dalsgaard B., Dehling D.M., Fischer E., Kohler G., Lara C., Las-Casas F.M.G., Machado A.O., Machado C.G., Maglianesi M.A., Malucelli T.S., Marin-Gómez O.H., Martín González A.M., Maruyama P.K., Oliveira P.E., Ornelas J.F., Ortiz-Pulido R., Rahbek C., Ramírez-Burbano M.B., Rocca M.A., Rodrigues L.C., Rosero-Lasprilla L., Rui A.M., Sandel B., Sazima M., Schleuning M., Sonne J., Svenning J.C., Varassin I.G., Vizentin-Bugoni J., Watts S., Zanata T.B.Fuentes:googlescopusEcological mechanisms explaining interactions within plant-hummingbird networks: Morphological matching increases towards lower latitudes
ArticleAbstract: Interactions between species are influenced by different ecological mechanisms, such as morphologicaPalabras claves:Abundances, Forbidden links, Modularity, phenology, pollination, resource specializationAutores:Araujo A.C., Boris A. Tinoco, Chávez-González E., Coelho A.G., Cotton P.A., Dalsgaard B., Lara C., Lasprilla L.R., Machado C.G., Maglianesi M.A., Malucelli T.S., Marin-Gómez O.H., Martín González A.M., Maruyama P.K., O'Hara B., Oliveira G.M., Oliveira P.E., Ortiz-Pulido R., Rahbek C., Rocca M.A., Rodrigues L.C., Sazima I., Sazima M., Schleuning M., Simmons B.I., Sonne J., Varassin I.G., Vasconcelos M.F., Vizentin-Bugoni J.Fuentes:googlescopusWhole-genome analyses resolve early branches in the tree of life of modern birds
ArticleAbstract: To better determine the history of modern birds, we performed a genome-scale phylogenetic analysis oPalabras claves:Autores:Aberer A.J., Alonzo Alfaro-Núñez, Alström P., Bailey T., Bayzid M.S., Bertelsen M.F., Boussau B., Braun M., Bruford M.W., Brumfield R.T., Bunce M., Burt D.W., Campos P.F., Capella-Gutiérrez S., Cracraft J., Da Fonseca R.R., Derryberry E.P., Dixon A., Driskell A.C., Edwards S.V., Ellegren H., Faircloth B.C., Fjeldså J., Gabaldón T., Ganapathy G., Glenn T.C., Graves G.R., Green R.E., Haussler D., Ho S.Y.W., Houde P., Howard J.T., Huang Y., Huerta-Cepas J., Jarvis E.D., Johnson W.E., Jønsson K.A., Keith Barker F., Koepfli K.P., Lambert D.M., Li B., Li C., Li H., Li J., Li N., Li S., Li Z., Lindow B., Liu B., Liu L., Liu S., Lovell P.V., Mccormack J.E., Mello C.V., Mindell D.P., Mirarab S., Munch K., Nabholz B., Narula N., O'Brien S.J., Orlando L., Pas A., Perelman P., Petersen B., Prosdocimi F., Rahbek C., Ray D.A., Rekepalli B., Rheindt F.E., Ryder O.A., Samaniego J.A., Schierup M., Schneider M.P.C., Scofield P., Shapiro B., Sheldon F.H., Sicheritz-Ponten T., Smeds L., Stamatakis A., Subramanian S., Suh A., Velazquez A.M.V., Wang J., Warren W.C., Weber C.C., Willerslev E., Wirthlin M., Wu K., Xiao J., Xiong Z., Yang H., Yinqi X., Zavidovych V., Zeng Y., Zhan X., Zhang F., Zhang Y., Zheng Q., Zhou L., Zhou Q.Fuentes:scopusThe distributions of morphologically specialized hummingbirds coincide with floral trait matching across an Andean elevational gradient
ArticleAbstract: Morphological trait matching between species affects resource partitioning in mutualistic systems. YPalabras claves:ECUADOR, Modularity, mutualism, NETWORKS, plants, Podocarpus National Park, pollination, resource partitioning, SpecializationAutores:Boris A. Tinoco, Colwell R.K., Cumbicus Torres N.L., Dalsgaard B., Fjeldså J., Martín González A.M., Rahbek C., Sonne J., Zanata T.B.Fuentes:googlescopusThe influence of biogeographical and evolutionary histories on morphological trait-matching and resource specialization in mutualistic hummingbird–plant networks
ArticleAbstract: Functional traits can determine pairwise species interactions, such as those between plants and pollPalabras claves:Biogeography, island ecology, niche partitioning, plant–animal interactions, resource specialization, Species traits, Specificity, trait-matchingAutores:Abrahamczyk S., Alarcón R., Araujo A.C., Araújo F.P., Boris A. Tinoco, Buzato S., Chávez-González E., Coelho A.G., Cotton P.A., da Silva Neto E.N., Dalsgaard B., Díaz-Valenzuela R., Dufke M.F., Enríquez P.L., Fischer E., Hansen K., Kennedy J.D., Kohler G., Lara C., Las-Casas F.M.G., Machado A.O., Machado C.G., Maglianesi M.A., Malucelli T.S., Marin-Gómez O.H., Martín González A.M., Martínez-García V., Martins Dias Filho M., Maruyama P.K., Mendes de Azevedo-Júnior S., Najara de Pinho Queiroz S., Oliveira P.E., Ornelas J.F., Ortiz-Pulido R., Partida-Lara R., Patiño-González B.I., Rahbek C., Ramírez-Burbano M.B., Rocca M.A., Rodrigo Rech A., Rodrigues L.C., Rosero-Lasprilla L., Rui A.M., Sazima I., Sazima M., Schleuning M., Simmons B.I., Sonne J., Varassin I.G., Vasconcelos M.F., Vizentin-Bugoni J., Watts S., Zanata T.B.Fuentes:googlescopus