Descubre y comparte nuestro conocimiento público

Se han encontrado 28 recursos

Resultados de búsqueda

González, RicardoSánchez Pinzón, María SolangeChirinda, NgonidzasheArango, JacoboBolívar Vergara, Diana MaríaEscobar, DanielTapasco, JeimarBarahona Rosales, Rolando[Limitaciones para la implementación de acciones de mitigación de emisiones de gases de efecto de invernadero (GEI) en sistemas ganaderos en Latinoamérica = Limitations to implementing greenhouse gas mitigation actions in livestock systems in Latin America]Limitaciones para la implementación de acciones de mitigación de emisiones de gases de efecto de invernadero (GEI) en sistemas ganaderos en Latinoamérica = Limitations to implementing greenhouse gas mitigation actions in livestock systems in Latin America
Moreta, DaniloArango, JacoboSotelo Cabrera, Mauricio EfrenVergara, DanielRincón, ÁlvaroIshitani, ManabuCastro, AracelyMiles, John W.Peters, MichaelTohme, Joseph M.Subbaraoa, Guntur V.Rao, Idupulapati M.[Biological nitrification inhibition (BNI) in Brachiaria pastures: a novel strategy to improve eco-efficiency of crop-livestock systems and to mitigate climate change]Biological nitrification inhibition (BNI) in Brachiaria pastures: a novel strategy to improve eco-efficiency of crop-livestock systems and to mitigate climate change

The apomictic reproductive mode of Brachiaria (syn. Urochloa) forage species allows breeders to faithfully propagate heterozygous genotypes through seed over multiple generations. In Brachiaria, reproductive mode segregates as single dominant locus, the apospory-specific genomic region (ASGR). Th...


Worthington, MargaretEbina, MasumiYamanaka, NaokiHeffelfinger, ChristopherQuintero, ConstanzaZapata, Yeny PatriciaPérez, Juan GuillermoSelvaraj, MichaelIshitani, ManabuDuitama, JorgeHoz, Juan Fernando de laRao, Idupulapati M.Dellaporta, Stephen L.Tohme, Joseph M.Arango, Jacobo[Translocation of a parthenogenesis gene candidate to an alternate carrier chromosome in apomictic Brachiaria humidicola]Translocation of a parthenogenesis gene candidate to an alternate carrier chromosome in apomictic Brachiaria humidicola
Arango, JacoboMoreta, D.Núñez, J.Hartmann, K.Domínguez, M.Ishitani, ManabuMiles, John W.Subbaraoa, Guntur V.Peters, MichaelRao, Idupulapati M.[Developing methods to evaluate phenotypic variability in biological nitrification inhibition (BNI) capacity of Brachiaria grasses]Developing methods to evaluate phenotypic variability in biological nitrification inhibition (BNI) capacity of Brachiaria grasses

In a field experiment in Palmira, Colombia, we studied mycorrhizal root colonization, phosphomonoesterase activities and P and N foliar content before and after N fertilization among different Brachiaria genotypes with demonstrated biological nitrification inhibition (BNI) capacity. Furthermore, ...


Teutscherova, NikolaVazquez, EduardoArévalo, AshlyPulleman, Mirjam M.Rao, Idupulapati M.Arango, Jacobo[Differences in arbuscular mycorrhizal colonization and P acquisition between genotypes of the tropical Brachiaria grasses: is there a relation with BNI activity?]Differences in arbuscular mycorrhizal colonization and P acquisition between genotypes of the tropical Brachiaria grasses: is there a relation with BNI activity?
Rao, Idupulapati M.Ishitani, ManabuMiles, John W.Peters, MichaelTohme, Joseph M.Arango, JacoboMoreta, Danilo ELópez, HernánCastro, AracelyHoek, Rein van derMartens, Siriwan D.Hyman, GlennTapasco, JeimarDuitama, JorgeSuárez Baron, HaroldBorrero, GonzaloNúñez, JonathanHartmann, KatharinaDomínguez, MoralbaSotelo Cabrera, Mauricio EfrenVergara, DanielLavelle, PatrickSubbaraoa, Guntur V.Rincón, ÁlvaroPlazas, CamiloMendoza, ReynaldoRathjen, LenaKarwat, HannesCadisch, Georg[Climate-smart crop-livestock systems for smallholders in the tropics: integration of new forage hybrids to intensify agriculture and to mitigate climate change through regulation of nitrification in soil]Climate-smart crop-livestock systems for smallholders in the tropics: integration of new forage hybrids to intensify agriculture and to mitigate climate change through regulation of nitrification in soil

The effects of dietary inclusion of dried Leucaena leucocephala leaves (DLL) on nutrient digestibility, fermentation parameters, microbial rumen population, and production of enteric methane (CH4) in crossbred heifers were evaluated. Four heifers were used in a 4 × 4 Latin square design consistin...


Montoya-Flores, María DenisseMolina-Botero, Isabel CristinaArango, JacoboRomano-Muñoz, José LuisSolorio-Sánchez, Francisco JavierAguilar-Pérez, Carlos FernandoKu-Vera, Juan Carlos[Effect of Dried Leaves of Leucaena leucocephala on Rumen Fermentation, Rumen Microbial Population, and Enteric Methane Production in Crossbred Heifers]Effect of Dried Leaves of Leucaena leucocephala on Rumen Fermentation, Rumen Microbial Population, and Enteric Methane Production in Crossbred Heifers
Teutscherova, NikolaVazquez, EduardoArango, JacoboArévalo, AshlyBenito, MartaPulleman, Mirjam[Native arbuscular mycorrhizal fungi increase the abundance of ammoniaoxidizing bacteria, but suppress nitrous oxide emissions shortly after urea application]Native arbuscular mycorrhizal fungi increase the abundance of ammoniaoxidizing bacteria, but suppress nitrous oxide emissions shortly after urea application

El suelo es el mayor reservorio de Carbono (C) en los ecosistemas terrestres, se estima que almacena cerca de 1500 gigatoneladas (Gt). Este C almacenado en el suelo, está relacionado con la composición de las plantas, ingreso de la materia orgánica (residuos), el clima (temperatura y humedad), pr...


Gutierrez, Jhon FreddyMorales Velasco, SandraVivas, NelsonHincapié Carvajal, BelisarioPeters, MichaelArango, Jacobo[Stocks de carbono del suelo en cuatro sistemas de pasturas del trópico seco colombiano]Stocks de carbono del suelo en cuatro sistemas de pasturas del trópico seco colombiano

Livestock production is a main source of anthropogenic greenhouse gases (GHG). The main gases are CH4 with a global warming potential (GWP) 25 times and nitrous oxide (N2O) with a GWP 298 times, that of carbon dioxide (CO2) arising from enteric fermentation or from manure management, respectively...


Jiménez-Ocampo, RafaelValencia Salazar, SaraPinzón-Díaz, Carmen ElisaHerrera-Torres, EsperanzaAguilar-Pérez, Carlos FernandoArango, JacoboKu-Vera, Juan Carlos[The Role of Chitosan as a Possible Agent for Enteric Methane Mitigation in Ruminants]The Role of Chitosan as a Possible Agent for Enteric Methane Mitigation in Ruminants

Selecciona los documentos para visualizarlos

Nombre del archivo Ver recurso