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Rao, Idupulapati M.Wenzl, PeterArango Vélez, AdrianaMiles, John W.Watanabe, ToshihiroShinano, TakuroOsaki, MitsuruWagatsuma, TadaoManrique, GermánBeebe, Stephen E.Tohme, Joseph M.Ishitani, ManabuRangel Becerra, Andrés FelipeHorst, Walter J.[Advances in developing screening methods and improving aluminum resistance in common bean and brachiaria]Advances in developing screening methods and improving aluminum resistance in common bean and brachiaria
Ishitani, ManabuRane, JBebee, SSankaran, MBlair, Matthew W.Rao, Idupulapati M.[Molecular breeding approach in managing abiotic stresses]Molecular breeding approach in managing abiotic stresses
Sakurai, TMochida, KYoshida, TAkiyama, KIshitani, ManabuSeki, MShinozaki, K[Genome-Wide discovery and information resource development of DNA polymorphisms in Cassava]Genome-Wide discovery and information resource development of DNA polymorphisms in Cassava
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

Traditional breeding efforts are expected to be greatly enhanced through collaborative approaches incorporating functional, comparative and structural genomics. Potential benefits of combining genomic tools with traditional breeding have been a source of widespread interest and resulted in numero...


Ishitani, ManabuRao, Idupulapati M.Wenzl, PeterBeebe, Stephen E.Tohme, Joseph M.[Integration of genomics approach with traditional breeding towards improving abiotic stress adaptation: Drought and aluminum toxicity as case studies]Integration of genomics approach with traditional breeding towards improving abiotic stress adaptation: Drought and aluminum toxicity as case studies
Plata, GRodríguez Zapata, F.Sakurai, TSeki, MSalcedo, ATohme, Joseph M.Sakaki, YToyoda, AIshiwata, AShinozaki, KIshitani, Manabu[Computational analysis of the cassava transcriptome, gene discovery and regulatory element prediction]Computational analysis of the cassava transcriptome, gene discovery and regulatory element prediction
Sakai, TPachón G, JMacea Choperena, EPInukay, YTabares Z, EFory Sánchez, L.F.Salcedo, AFYamaguchi-Shinozaqui, KLentini, ZIshitani, Manabu[Phenotypic evaluation of DREB transgenic rice under water limited conditions]Phenotypic evaluation of DREB transgenic rice under water limited conditions

Increasing drought resistance without sacrificing grain yield remains an ongoing challenge in crop improvement. In this study, we report that Oryza sativa CCCH‐tandem zinc finger protein 5 (OsTZF5) can confer drought resistance and increase grain yield in transgenic rice plants. Expression of OsT...


Selvaraj, Michael GomezJan, AsadIshizaki, TakumaValencia, MiltonDedicova, BeataMaruyama, KyonoshinOgata, TakuyaTodaka, DaisukeYamaguchi-Shinozaki, KazukoNakashima, KazuoIshitani, Manabu[Expression of the CCCH-tandem zinc finger protein gene OsTZF5 under a stress-inducible promoter mitigates the effect of drought stress on rice grain yield under field conditions]Expression of the CCCH-tandem zinc finger protein gene OsTZF5 under a stress-inducible promoter mitigates the effect of drought stress on rice grain yield under field conditions

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