Resultados de búsqueda - "Phylogenetics"

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  1. Phylogenetic classification of the world’s tropical forests por Slik, J.W.F., Franklin, J., Arroyo-Rodríguez, V., Field, R., Aguilar, S., Aguirre, N., Ahumada, J., Aiba, S-I., Alves, L.F., Anitha, K., Avella, A., Mora, F., Aymard C., G.A., Báez, S., Balvanera, P., Bastian, Meredith L., Bastin, J.F., Bellingham, P.J., Berg, E. van den, Conceição Bispo, Polyanna da, Boeckx, P., Boehning-Gaese, K., Bongers, F., Boyle, B., Brambach, F., Brearley, F.Q., Brown, S., Chai, S-L., Chazdon, R.L., Chen, S., Chhang, P., Chuyong, G.B., Ewango, C., Coronado, I.M., Cristóbal-Azkarate, J., Culmsee, H., Damas, K., Dattaraja, H.S., Davidar, P., Walt, S.J. de, Din, H., Drake, D.R., Duque, A., Durigan, G., Eichhorn, K., Eler, E.S., Enoki, T., Ensslin, A., Fandohan, A.B., Farwig, N., Feeley, K.J., Fischer, M., Forshed, O., Garcia, Q.S., Garkoti, S.C., Gillespie, T.W., Gillet, J.F., Gonmadje, C., Granzow-de la Cerda, I., Griffith, D.M., Grogan, J., Hakeem, K.R., Harris, D.J., Harrison, R.D., Hector, A., Hemp, A., Homeier, J., Hussain, M.S., Ibarra Manríquez, G., Hanum, I.F., Imai, N., Jansen, P.A., Joly, C.A., Joseph, S., Kartawinata, K., Kearsley, E., Kelly, D.L., Kessler, M., Killeen, T.J., Kooyman, R.M., Laumonier, Y., Laurance, S.G.W., Laurance, W.F., Lawes, M.J., Letcher, S.G., Lindsell, J., Lovett, J., Lozada, J., Lu, X., Lykke, A.M., Mahmud, K., Mahayani, N.P.D., Mansor, A., Marshall, A.R., Martin, E.H., Calderado Leal Matos, D., Meave, J.A., Melo, F.P.L., Mendoza, Z.H.A., Metali, F., Medjibe, V.P., Metzger, J.P., Metzker, T., Mohandass, D., Munguía-Rosas, M.A., Muñoz, R., Nurtjahy, E., Oliveira, E.L. de, Onrizal, O., Parolin, P., Parren, M., Parthasarathy, N., Paudel, E., Pérez, R., Pérez García, E.A., Pommer, U., Poorter, L., Qi, Lan, Piedade, M.T.F., Pinto, J.R.R., Poulsen, A.D., Poulsen, J.R., Powers, J.S., Prasad, R.C., Puyravaud, J-P., Rangel, O., Reitsma, J., Rocha, D.S.B., Rolim, S., Rovero, F., Rozak, A., Ruokolainen, K., Rutishauser, E., Rutten, G., Mohd. Said, M.N., Saiter, F.Z., Saner, P., Santos, B., Santos, J.R. dos, Sarker, S.K., Schmitt, C.B., Schoengart, J., Schulze, M., Sheil, D., Sist, P., Souza, A.F., Spironello, W.R., Sposito, T., Steinmetz, R., Stevart, T., Suganuma, M.S., Sukri, R., Sultana, A., Sukumar, R., Sunderland, T.C.H., Supriyadi, Suresh, H.S., Suzuki, E., Tabarelli, M., Tang, J., Tanner, E.V.J., Targhetta, N., Theilade, I., Thomas, D., Timberlake, J., Morisson Valeriano, M. de, Valkenburg, J. van, Tran, V.D., Hoang, V.S., Vandermeer, John H., Verbeeck, H., Vetaas, O.R., Adekunle, V., Vieira, S.A., Webb, C.O., Webb, E.L., Whitfeld, T., Wich, S., Williams, J., Wiser, Susan K., Wittmann, F., Yang, X., Adou Yao, C.Y., Yap, S.L., Zahawi, R.A., Zakaria, R., Zang, R.

    Publicado 2018
    Enlace del recurso
    Journal Article
  2. Distribution and asymptotic behavior of the phylogenetic transfer distance por Dávila Felipe, Miraine, Domelevo Entfellner, Jean-Baka, Lemoine, Frédéric, Truszkowski, Jakub, Gascuel, Olivier

    Publicado 2019
    “…The transfer distance (TD) was introduced in the classification framework and studied in the context of phylogenetic tree matching. Recently, Lemoine et al. …”
    Enlace del recurso
    Journal Article
  3. Distribution and asymptotic behavior of the phylogenetic transfer distance por Felipe, M.D., Domelevo Entfellner, Jean-Baka, Lemoine, F., Truszkowski, J., Gascuel, O.

    Publicado 2018
    “…The transfer distance (TD) was introduced in the classification framework and studied in the context of phylogenetic tree matching. Recently, Lemoine et al. (2018) showed that TD can be a powerful tool to assess the branch support of phylogenies with large data sets, thus providing a relevant alternative to Felsenstein's bootstrap. …”
    Enlace del recurso
    Preprint
  4. Potato virus A isolates from three continents: their biological properties, phylogenetics and prehistory por Fuentes, S., Gibbs, A., Adams, I., Wilson, C., Botermans, M., Fox, A., Kreuze, Jan F., Boonham, N., Kehoe, M., Jones, R.

    Publicado 2021
    “…When five isolates were inoculated to a potato cultivar differential, three strain groups (= pathotypes) unrelated to phylogenetic groupings were recognized. No temporal signal was detected amongst the dated non-recombinant sequences, but PVA and potato virus Y (PVY) are from related lineages and ecologically similar, therefore 'relative dating' was obtained using a single maximum likelihood phylogeny of PVA and PVY sequences and PVY’s well-supported 157 CE 'time to most common recent ancestor'. …”
    Enlace del recurso
    Journal Article
  5. Prevalence and phylogenetic analysis of hepatitis E virus in pigs in Vietnam por Hu Suk Lee, Duy Tung Dao, Vuong Nghia Bui, Ngoc Anh Bui, Thanh Duy Le, Hung Nguyen-Viet, Grace, Delia, Thakur, K.K., Hagiwara, K.

    Publicado 2020
    “…The main objective of this study was to evaluate the sero-prevalence and phylogenetic analysis of HEV in Vietnam. Pig blood and fecal pooled samples were collected to assess the prevalence of HEV. …”
    Enlace del recurso
    Journal Article
  6. Occurrence, identification and phylogenetic analyses of cereal cyst nematodes in Kyrgyzstan por Saleh, Azzam, Yıldız, Senol, Özer, Göksel, Mokrini, Fouad, Tair Esenali Uulu, İmren, Mustafa, Dababat, Abdelfattah A.

    Publicado 2023
    “…No variations in rDNA-ITS sequencing data were detected among the 31 cyst nematode populations, and the phylogenetic tree showed that Kyrgyz populations clustered with H. filipjevi populations from Belgium, Spain and Turkey, and separated populations from Germany, Iran, UK, Tajikistan, France and Russia. …”
    Enlace del recurso
    Journal Article

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