Nitrification, a key process in the global nitrogen cycle that
generates nitrate through microbial activity, may enhance losses
of fertilizer nitrogen by leaching and denitrification. Certain
plants can suppress soil-nitrification by releasing inhibitors from
roots, a phenomenon termed biological...
Subbaraoa, Guntur V.
,
Nakahara, K.
,
Hurtado, MP
,
Ono, H
,
Moreta Mejia, DE
,
Salcedo, AF
,
Yoshihashi, AT
,
Ishikawa, T.
,
Ishitani, Manabu
,
Ohnishi, M
,
Yoshida, M
,
Rondón, Marco Antonio
,
Rao, Idupulapati M.
,
Lascano, Carlos E.
,
Berry, W.L.
,
Ito, O.
,
[Evidence for biological nitrification inhibition in Brachiaria pastures]
,
Evidence for biological nitrification inhibition in Brachiaria pastures
Grosjean, Godefroy
,
Fuss, Sabine
,
Koch, Nicolas
,
Bodirsky, Benjamin L.
,
Cara, Stéphane de
,
Acworth, William
,
[Options to overcome the barriers to pricing European agricultural emissions]
,
Options to overcome the barriers to pricing European agricultural emissions
Emerging infectious diseases (EIDs) pose threats to conservation and public health. Here, we apply the definition of EIDs used in the medical and veterinary fields to botany and highlight a series of emerging plant diseases. We include EIDs of cultivated and wild plants, some of which are of sign...
Terminal drought is a worldwide constraint to common bean production and its negative effects will be increased by climate change. The objective of this research was to characterize phenotypically advanced lines and commercial cultivars of common bean for their resistance to terminal drought stre...
Chaves-Barrantes, Néstor Felipe
,
Polanía Perdomo, José A.
,
Muñoz Perea, Carlos Germán
,
Rao, Idupulapati M.
,
Beebe, Stephen E.
,
[Caracterización fenotípica por resistencia a sequía terminal de germoplasma de frijol común = Phenotypic characterization of common bean germplasm for resistance to terminal drought]
,
Caracterización fenotípica por resistencia a sequía terminal de germoplasma de frijol común = Phenotypic characterization of common bean germplasm for resistance to terminal drought
El-Sharkawy, Mabrouk A.
,
[Prospects of photosynthetic research for increasing agricultural productivity, with emphasis on the tropical C4 Amaranthus and the cassava C3-C4 crops]
,
Prospects of photosynthetic research for increasing agricultural productivity, with emphasis on the tropical C4 Amaranthus and the cassava C3-C4 crops
The importance of cassava as the fourth largest source of calories in the world requires that contributions of biotechnology to improving this crop, advances and current challenges, be periodically reviewed. Plant biotechnology offers a wide range of opportunities that can help cassava become a b...
Chavarriaga Aguirre, Paul
,
Brand, Alejandro
,
Medina, Adriana
,
Prías, Mónica
,
Escobar Pérez, Roosevelt H.
,
Martínez, Juan
,
Díaz, Paula
,
López Carrascal, Camilo Ernesto
,
Roca, William M.
,
Tohme, Joseph M.
,
[The potential of using biotechnology to improve cassava: a review]
,
The potential of using biotechnology to improve cassava: a review
Baca, María
,
Läderach, Peter
,
Haggar, Jeremy P.
,
Götz, Schroth
,
Ovalle Rivera, Oriana
,
[An integrated framework for assessing vulnerability to climate change and developing adaptation strategies for coffee growing families in Mesoamerica]
,
An integrated framework for assessing vulnerability to climate change and developing adaptation strategies for coffee growing families in Mesoamerica
High nitrogen (N) concentration in bovine urine, which generally exceeds plant N uptake rates, results in the formation of hotspots of N loss when bovine urine is deposited on grazed pasture soils. High spatial variability in the distribution of urine patches in grazed pastures poses a major chal...
Accelerated soil-nitrifier activity and rapid nitrification are the cause of declining nitrogen-use efficiency (NUE) and enhanced nitrous oxide (N2O) emissions from farming. Biological nitrification inhibition (BNI) is the ability of certain plant roots to suppress soil-nitrifier activity through...
Subbaraoa, Guntur V.
,
Arango, Jacobo
,
Masahiro, Kishii
,
Hooper, A.M.
,
Yoshihashi, Tadashi
,
Ando, Y.
,
Nakahara, Kazuhiko
,
Deshpande, Santosh
,
Ortiz Monasterio, Ivan
,
Ishitani, Manabu
,
Peters, Michael
,
Chirinda, Ngonidzashe
,
Wollenberg, Eva K.
,
Lata, Jean-Christophe
,
Gerard, Bruno G.
,
Tobita, Satoshi
,
Rao, Idupulapati M.
,
Braun, Hans J.
,
Kommerell, Victor
,
Tohme, Joseph M.
,
Iwanaga, Masaru
,
[Genetic mitigation strategies to tackle agricultural GHG emissions: The case for biological nitrification inhibition technology]
,
Genetic mitigation strategies to tackle agricultural GHG emissions: The case for biological nitrification inhibition technology