Resultados de búsqueda - ((taxonomoica OR taxonomiaical) OR ((taxonomiaiaico OR taxonomyyic) OR (taxonom OR taxonomoy)))*

  1. 81

    Sistemática del pez Petenia splendida (Perciformes: Cichlidae) en el lago Petén Itzá, Guatemala por Méndez, Amaitté, García, María Elena, Lozano, Lourdes

    Publicado 2011
    “…The main goal of the present work was to clarify the taxonomic position of the two forms of the white fish in Petén (Guatemala), and to compare it with the Usumacinta (Mexico) form, based on the collected material from 1978 and 2006 (Usumacinta), and collections made during 2008 and 2009 in the Lake Petén Itzá. …”
    Enlace del recurso
    Artículo
  2. 82
  3. 83
  4. 84

    Characterization of lignocellulolytic activities from fungi isolated from the deep-sea sponge Stelletta normani por Balestrini, Raffaella, Batista García, Ramón Alberto, Sutton, Thomas, Jackson, Stephen A., Tovar Herrera, Omar Eduardo, Balcázar López, Edgar, Sánchez Carbente, María del Rayo, Sánchez Reyes, Ayixon, Dobson, Alan D. W., Folch Mallol, Jorge Luis

    Publicado 2017
    “…Following screening of fourteen fungi isolated from the deep-sea sponge Stelletta normani sampled at a depth of 751 metres, three halotolerant strains (TS2, TS11 and TS12) were identified which displayed high CMCase and xylanase activities. Molecular based taxonomic approaches identified these strains as Cadophora sp. …”
    Enlace del recurso
    Artículo
  5. 85

    High diversity and suggested endemicity of culturable Actinobacteria in an extremely oligotrophic desert oasis por Arocha Garza, Héctor Fernando, Canales del Castillo, Ricardo, Eguiarte, Luis E., Souza, Valeria, De la Torre Zavala, Susana

    Publicado 2017
    “…Phylogenetic reconstructions were performed to analyze OTUs clustering and taxonomic identification of the isolates in an evolutionary context, using validated type species of Streptomyces from previously phylogenies as a reference. …”
    Enlace del recurso
    Artículo
  6. 86
  7. 87

    Characterization of lignocellulolytic activities from fungi isolated from the deep-sea sponge Stelletta normani por Balestrini, Raffaella, Batista García, Ramón Alberto, Sutton, Thomas, Jackson, Stephen A., Tovar Herrera, Omar Eduardo, Balcázar López, Edgar, Sánchez Carbente, María del Rayo, Sánchez Reyes, Ayixon, Dobson, Alan D. W., Folch Mallol, Jorge Luis

    Publicado 2017
    “…Following screening of fourteen fungi isolated from the deep-sea sponge Stelletta normani sampled at a depth of 751 metres, three halotolerant strains (TS2, TS11 and TS12) were identified which displayed high CMCase and xylanase activities. Molecular based taxonomic approaches identified these strains as Cadophora sp. …”
    Enlace del recurso
    Artículo
  8. 88

    High diversity and suggested endemicity of culturable Actinobacteria in an extremely oligotrophic desert oasis por Arocha Garza, Héctor Fernando, Canales del Castillo, Ricardo, Eguiarte, Luis E., Souza, Valeria, De la Torre Zavala, Susana

    Publicado 2017
    “…Phylogenetic reconstructions were performed to analyze OTUs clustering and taxonomic identification of the isolates in an evolutionary context, using validated type species of Streptomyces from previously phylogenies as a reference. …”
    Enlace del recurso
    Artículo
  9. 89
  10. 90

    A global-scale screening of non-native aquatic organisms to identify potentially invasive species under current and future climate conditions por Vilizzi, Lorenzo, Copp, Gordon H., Hill, Jeffrey E., Adamovich, Boris, Aislabie, Luke, Akin, Daniel, Al Faisal, Abbas J., Almeida, David, Azmai, M.N. Amal, Bakiu, Rigers, Bellati, Adriana, Bernier, Renée, Bies, Jason M., Bilge, Gökçen, Branco, Paulo, Bui, Thuyet D., Canning Clode, João, Cardoso Ramos, Henrique Anatole, Castellanos Galindo, Gustavo A., Castro, Nuno, Chaichana, Ratcha, Chainho, Paula, Chan, Joleen, Cunico, Almir M., Curd, Amelia, Dangchana, Punyanuch, Dashinov, Dimitriy, Davison, Phil I., De Camargo, Mariele P., Dodd, Jennifer A., Durland Donahou, Allison L., Edsman, Lennart, Ekmekçi, F. Güler, Elphinstone Davis, Jessica, Erős, Tibor, Evangelista, Charlotte, Fenwick, Gemma, Ferincz, Árpád, Ferreira, Teresa, Feunteun, Eric, Filiz, Halit, Forneck, Sandra C., Gajduchenko, Helen S., Gama Monteiro, João, Gestoso, Ignacio, Giannetto, Daniela, Gilles, Allan S., Gizzi, Francesca, Glamuzina, Branko, Glamuzina, Luka, Goldsmit, Jesica, Gollasch, Stephan, Goulletquer, Philippe, Grabowska, Joanna, Harmer, Rogan, Haubrock, Phillip J., He, Dekui, Hean, Jeffrey W., Herczeg, Gábor, Howland, Kimberly L., Ilhan, Ali, Interesova, Elena, Jakubčinová, Katarína, Jelmert, Anders, Johnsen, Stein I., Kakareko, Tomasz, Kanongdate, Kamalaporn, Killi, Nurçin, Kim, Jeong-Eun, Kırankaya, Şerife Gülsün, Kňazovická, Dominika, Kopecký, Oldřich, Kostov, Vasil, Koutsikos, Nicholas, Kozic, Sebastian, Kuljanishvili, Tatia, Kumar, Biju, Kumar, Lohith, Kurita, Yoshihisa, Kurtul, Irmak, Lazzaro, Lorenzo, Lee, Laura, Lehtiniemi, Maiju, Leonardi, Giovanni, Leuven, Rob S.E.W., Li, Shan, Lipinskaya, Tatsiana, Liu, Fei, Lloyd, Lance, Lorenzoni, Massimo, Luna, Sergio Alberto, Lyons, Timothy J., Magellan, Kit, Malmstrøm, Martin, Marchini, Agnese, Marr, Sean M., Masson, Gérard, Masson, Laurence, McKenzie, Cynthia H., Memedemin, Daniyar, Mendoza, Roberto, Minchin, Dan, Miossec, Laurence, Moghaddas, Seyed Daryoush, Moshobane, Moleseng C., Mumladze, Levan, Naddafi, Rahmat, Najafi Majd, Elnaz, Năstase, Aurel, Năvodaru, Ion, Neal, J. Wesley, Nienhuis, Sarah, Nimtim, Matura, Nolan, Emma T., Occhipinti Ambrogi, Anna, Ojaveer, Henn, Olenin, Sergej, Olsson, Karin, Onikura, Norio, O'Shaughnessy, Kathryn, Paganelli, Daniele, Parretti, Paola, Patoka, Jiří, Pavia, Richard Thomas B., Pellitteri Rosa, Daniele, Pelletier Rousseau, Michèle, Peralta, Elfritzson M., Perdikaris, Costas, Pietraszewski, Dariusz, Piria, Marina, Pitois, Sophie, Pompei, Laura, Poulet, Nicolas, Preda, Cristina, Puntila Dodd, Riikka, Qashqaei, Ali T., Radočaj, Tena, Rahmani, Hossein, Raj, Smrithy, Reeves, David, Ristovska, Milica, Rizevsky, Viktor, Robertson, D. Ross, Robertson, Peter, Ruykys, Laura, Saba, Abdulwakil O., Santos, José M., Sarı, Hasan M., Segurado, Pedro, Semenchenko, Vitaliy, Senanan, Wansuk, Simard, Nathalie, Simonović, Predrag, Skóra, Michał E., Slovák Švolíková, Kristína, Smeti, Evangelia, Smídová, Tereza, Spelić, Ivan, Srėbalienė, Greta, Stasolla, Gianluca, Stebbing, Paul, Stevove, Barbora, Suresh, Vettath R., Szajbert, Bettina, Ta, Kieu Anh T., Tarkan, Ali Serhan, Tempesti, Jonathan, Therriault, Thomas W., Tidbury, Hannah J., Top Karakuş, Nildeniz, Tricarico, Elena, Troca, Débora F.A., Tsiamis, Konstantinos, Tuckett, Quenton M., Tutman, Pero, Uyan, Umut, Uzunova, Eliza, Vardakas, Leonidas, Velle, Gaute, Verreycken, Hugo, Vintsek, Lizaveta, Wei, Hui, Weiperth, András, Weyl, Olaf L.F., Winter, Emily R., Włodarczyk, Radosław, Wood, Louisa E., Yang, Ruibin, Yapıcı, Sercan, Yeo, Shayne S.B., Yoğurtçuoğlu, Baran, Yunnie, Anna L.E., Zhu, Yunjie, Zięba, Grzegorz, Zitňanová, Kristína, Clarke, Stacey

    Publicado 2021
    “…The risk thresholds determined for taxonomic groups and climate zones provide a basis against which area-specific or climate-based calibrated thresholds may be interpreted. …”
    Enlace del recurso
    Artículo
  11. 91

    Diversidad de macromicetos en el Estado de Tamaulipas, México Diversity of macrofungi in the Tamaulipas State, México por García Jiménez, Jesús

    Publicado 2013
    “…Alrededor de 7000 especímenes de herbario avalan este estudio y a partir de este se estudiaron a los hongos ectomicorrizógenos del Estado de Tamaulipas citando un total de 402 taxones de macromicetos de 39 familias de Ascomycetes, Basidiomycetes y Glomeromycetes asociados a los bosques tropicales y templados y se presentan discusiones sobre la taxonomía y biogeografía de las especies. Las especies de hongos registradas se incluyeron en una base de datos de EXCEL, bajo el criterio de presencia-ausencia en los tipos de vegetación en que se encontraron. …”
    Enlace del recurso
    Tesis
  12. 92

    Diversidad de macromicetos en el Estado de Tamaulipas, México Diversity of macrofungi in the Tamaulipas State, México por García Jiménez, Jesús

    Publicado 2013
    “…Alrededor de 7000 especímenes de herbario avalan este estudio y a partir de este se estudiaron a los hongos ectomicorrizógenos del Estado de Tamaulipas citando un total de 402 taxones de macromicetos de 39 familias de Ascomycetes, Basidiomycetes y Glomeromycetes asociados a los bosques tropicales y templados y se presentan discusiones sobre la taxonomía y biogeografía de las especies. Las especies de hongos registradas se incluyeron en una base de datos de EXCEL, bajo el criterio de presencia-ausencia en los tipos de vegetación en que se encontraron. …”
    Enlace del recurso
    Tesis
  13. 93
  14. 94

    Insectos asociados a biomodelos simulando cuatro condiciones de hallazgo de cadáveres. por Briones Espinoza, Héctor Eduardo

    Publicado 2018
    “…The general objective of the study was to generate taxonomic information of necrophagous insects in biomodels (Sus scrofa) simulating conditions of corpses exposed to the weather, submerged in water, encased in wood and in plastic bags. …”
    Enlace del recurso
    Tesis
  15. 95

    Insectos asociados a biomodelos simulando cuatro condiciones de hallazgo de cadáveres. por Briones Espinoza, Héctor Eduardo

    Publicado 2018
    “…The general objective of the study was to generate taxonomic information of necrophagous insects in biomodels (Sus scrofa) simulating conditions of corpses exposed to the weather, submerged in water, encased in wood and in plastic bags. …”
    Enlace del recurso
    Tesis
  16. 96

    Interacciones alimentarias de depredadores en el noroeste del estado de Sonora por Alvarado, María del Socorro

    Publicado 2009
    “…The contents were classified into the following taxonomic groups: lagomorphs, rodents, artiodactyle, reptile, birds and plants. …”
    Enlace del recurso
    Tesis
  17. 97

    Interacciones alimentarias de depredadores en el noroeste del estado de Sonora por Alvarado, María del Socorro

    Publicado 2009
    “…The contents were classified into the following taxonomic groups: lagomorphs, rodents, artiodactyle, reptile, birds and plants. …”
    Enlace del recurso
    Tesis
  18. 98
  19. 99

    Distribución, abundancia, diversidad y atributos bioecológicos de especies de chrysopidae (neuroptera) asociadas a frutales del centro y norte de México por Ramírez Delgado, Manuel

    Publicado 2007
    “…Abstract The family Chrysopidae (Neuroptera) has numerous arboreal species that they could be important in the biological control of pests in the diverse fruit orchards of México; however, the potential of these beneficial insects has been neglected or underestimated due to the scarce availability of taxonomic studies of the group in the country. The objectives of this study were to identify and determine the Chrysopidae species distribution, abundance, diversity and bioecology in orchard trees from central and northern Mexico, in order to contribute in the protection, conservation and use of these biological control agents in the country. …”
    Enlace del recurso
    Tesis
  20. 100

    Distribución, abundancia, diversidad y atributos bioecológicos de especies de chrysopidae (neuroptera) asociadas a frutales del centro y norte de México por Ramírez Delgado, Manuel

    Publicado 2007
    “…Abstract The family Chrysopidae (Neuroptera) has numerous arboreal species that they could be important in the biological control of pests in the diverse fruit orchards of México; however, the potential of these beneficial insects has been neglected or underestimated due to the scarce availability of taxonomic studies of the group in the country. The objectives of this study were to identify and determine the Chrysopidae species distribution, abundance, diversity and bioecology in orchard trees from central and northern Mexico, in order to contribute in the protection, conservation and use of these biological control agents in the country. …”
    Enlace del recurso
    Tesis

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