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Moreta, D.E.Arango, JacoboSotelo, M.Vergara, D.Rincón, A.Ishitani, ManabuCastro, A.Miles, 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

Nitrification, a step in nitrogen (N) cycle, results in gaseous N emissions and NO3- leaching. In most natural ecosystems, where nitrification is reduced to a minor flux, do not leak N. In contrast, modern agricultural systems are characterized by unrestricted rapid nitrification, resulting in th...


Subbaraoa, Guntur V.Ito, O.Ishikawa, T.Watanabe, TomonariNakahara, KazuhikoRao, Idupulapati M.Hurtado, María del PilarRondón, Marco AntonioTomohiro, BanMasahiro, K.Hash, C. T.[Is there a genetic strategy to control nitrification and N2O emissions from agricultural systems? - biological Nitrification Inhibition (BNI)]Is there a genetic strategy to control nitrification and N2O emissions from agricultural systems? - biological Nitrification Inhibition (BNI)
Subbaraoa, Guntur V.Yoshihashi, TadashiWorthington, MargaretNakahara, KazuhikoAndo, YasuoSahrawat, Kanwar LalRao, Idupulapati M.Lata, Jean-ChristopheKishii, MasahiroBraune, Hans-Joachim[Suppression of soil nitrification by plants]Suppression of soil nitrification by plants

Forage-based livestock production plays a key role in national and regional economies, for food security and poverty alleviation, but is considered a major contributor to agricultural GHG emissions. While demand for livestock products is predicted to increase, there is political and societal pres...


Peters, MichaelHerrero, Mario T.Fisher, M.Erb, KarlheinzRao, Idupulapati M.Subbaraoa, Guntur V.Castro, A.Arango, JacoboChara, J.Murgueitio, E.Hoek, Rein van derLäderach, PeterHyman, GlennTapasco, JeimarStrassburg, B.Paul, Birthe K.Rincón, A.Schultze-Kraft, RainerFonte, Steven J.Searchinger, T.[Challenges and opportunities for improving eco-efficiency of tropical forage-based systems to mitigate greenhouse gas emissions]Challenges and opportunities for improving eco-efficiency of tropical forage-based systems to mitigate greenhouse gas emissions

Agriculture and livestock production are major contributors to greenhouse gas emissions. Foragebased systems dominate much of agriculture in the tropics, providing livelihoods to farmers but also affecting local and global environments. In this paper, we attempt to answer the question, how can fa...


Peters, MichaelRao, Idupulapati M.Fisher, M.Subbaraoa, Guntur V.Martens, S.Herrero, Mario T.Hoek, Rein van derSchultze-Kraft, RainerMiles, John W.Castro, A.Graefe, S.Tiemann, Tassilo T.Ayarza, Miguel AngelHyman, Glenn[Tropical forage-based systems to mitigate greenhouse gas emissions]Tropical forage-based systems to mitigate greenhouse gas emissions

Regulating nitrification could be a key strategy in improving nitrogen (N) recovery and agronomic N-use efficiency in situations where the loss of N following nitrification is significant. A highly sensitive bioassay using recombinant luminescent Nitrosomonas europaea, has been developed that can...


Subbaraoa, Guntur V.Rondón, Marco AntonioIto, O.Ishikawa, T.Rao, Idupulapati M.Nakahara, K.Lascano, Carlos E.Berry, W.L.[Biological nitrification inhibition (BNI): is it a widespread phenomenon?]Biological nitrification inhibition (BNI): is it a widespread phenomenon?
Moreta, D.E.Arango, JacoboSotelo, M.Vergara, D.Rincón, A.Ishitani, ManabuCastro, A.Miles, John W.Peters, MichaelTohme, Joseph M.Subbaraoa, Guntur V.Cadisch, GeorgRao, Idupulapati M.[Using biological nitrification inhibition as a strategy to improve nitrogen recovery and nitrogen use efficiency of agricultural systems and to mitigate climate change]Using biological nitrification inhibition as a strategy to improve nitrogen recovery and nitrogen use efficiency of agricultural systems and to mitigate climate change

Arango, JacoboMoreta, D.Nunez, 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

Tropical forage grasses and legumes as key components of sustainable crop-livestock systems in Latin America and the Caribbean have major implications for improving food security, alleviating poverty, restoring degraded lands and mitigating climate change. Climate-smart tropical forage crops can ...


Rao, Idupulapati M.Peters, MichaelHoek, Rein van derCastro, A.Subbaraoa, Guntur V.Cadisch, GeorgRincón, A.[Tropical forage-based systems for climate-smart livestock production in Latin America]Tropical forage-based systems for climate-smart livestock production in Latin America
Moreta Mejía, DEHurtado, MPSalcedo, AFChávez, Alba L.Rondón, Marco AntonioDuque E., Myriam CristinaSubbaraoa, Guntur V.Ito, O.Miles, John W.Lascano, Carlos E.Rao, Idupulapati M.Ishitani, Manabu[Biological nitrification inhibition (BNI): a dual benefit for agriculture and the environment]Biological nitrification inhibition (BNI): a dual benefit for agriculture and the environment

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