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Gaur, Pooran M.Samineni, SrinivasanKrishnamurthy, LaxmanKumar, ShivGhanem, Michel EBeebe, Stephen E.Rao, Idupulapati M.Chaturvedi, Sushil K.Basu, Partha SNayyar, HarshJayalakshmi, VeeraBabbar, AnitaVarshney, Rajeev K.[High temperature tolerance in grain legumes]High temperature tolerance in grain legumes
Ojiewo, ChrisMonyo, EmmanuelDesmae, HaileBoukar, OusmaneMukankusi, Clare MugishaThudi, MahendarPandey, Manish K.Saxena, Rachit K.Gaur, Pooran M.Chaturvedi, Sushil K.Fikre, AsnakeRao, NPVR GangaSameerKumar, CVOkori, PatrickJanila, PasupuletiRubyogo, Jean-ClaudeGodfree, ChigezaAkpo, EssegbemonOmoigui, LuckyNkalubo, Stanley T.Fenta, BerhanuBinagwa, PapiasKilango, MichaelWilliams, MagdalenaMponda, OmariOkello, DavidChichaybelu, MekashaMiningou, AmosBationo, JosephSako, DramaneDiallo, SoryEchekwu, CandidusUmar, Muhammad LawanOteng‐Frimpong, RichardMohammed, HarunaVarshney, Rajeev K.[Genomics, genetics and breeding of tropical legumes for better livelihoods of smallholder farmers]Genomics, genetics and breeding of tropical legumes for better livelihoods of smallholder farmers

Abberton, M.T.Batley, J.Bentley, A.Bryant, J.Cai, H.Cockram, J.Costa de Oliveira, A.Cseke, L.J.Dempewolf, HannesPace, C. deEdwards, D.Gepts, Paul L.Greenland, A.Hall, A.E.Henry, R.Hori, K.Howe, G.T.Hughes, S.Humphreys, M.W.Lightfoot, D.Marshall, A.Mayes, S.Nguyen, H.T.Ogbonnaya, F.C.Ortiz, R.Paterson, A.HTuberosa, R.Valliyodan, B.Varshney, Rajeev K.Yano, M.[Global agricultural intensification during climate change: a role for genomics]Global agricultural intensification during climate change: a role for genomics

Na+ transporters play an important role during salt stress and development. The present study is aimed at genome-wide identification, in silico analysis of sodium-proton antiporter (NHX) and sodium-proton exchanger (NHE)-type transporters in Sorghum bicolor and their expression patterns under var...


Kumari, P.H.Kumar, S.A.Ramesh, K.Reddy, P.S.Nagaraju, M.Prakash, A.B.Shah, T.Henderson, A.Srivastava, R.K.Rajasheker, G.Chitikineni, A.Varshney, Rajeev K.Rathnagiri, P.Narasu, M.L.Kishor, P.B.K.[Genome-wide identification and analysis of arabidopsis sodium proton antiporter (NHX) and human sodium proton exchanger (NHE) homologs in sorghum bicolor]Genome-wide identification and analysis of arabidopsis sodium proton antiporter (NHX) and human sodium proton exchanger (NHE) homologs in sorghum bicolor

Common bean (Phaseolus vulgaris L.) is one of the most important grain legume crops in the world. The beans grown in north-western Himalayas possess huge diversity for seed color, shape and size but are mostly susceptible to Anthracnose disease caused by seed born fungus Colletotrichum lindemuthi...


Choudhary, N.Bawa, V.Paliwal, R.Singh, B.Bhat, M.A.Mir, J.I.Gupta, M.Sofi, P.A.Thudi, M.Varshney, Rajeev K.Mir, R.R.[Gene/QTL discovery for Anthracnose in common bean (Phaseolus vulgaris L.) from north-western Himalayas]Gene/QTL discovery for Anthracnose in common bean (Phaseolus vulgaris L.) from north-western Himalayas
Vadez, A.Krishnamurthy, L.Serraj, R.Gaur, Pooran M.Upadhyaya, Hari D.Hoisington, D.A.Varshney, Rajeev K.Turner, N.C.Siddique, K.H.M.[Large variation in salinity tolerance in chickpea is explained by differences in sensitivity at the reproductive stage]Large variation in salinity tolerance in chickpea is explained by differences in sensitivity at the reproductive stage

The transcription factor, DREB2A, is one of the promising candidate genes involved in dehydration tolerance in crop plants. In order to isolate DREB2A homologues across cereals (rice, barley and sorghum) and legumes (common bean and chickpea), specific or degenerate primers were used. Gene/phylog...


Nayak, SBalaji, J.Upadhyaya, Hari D.Hash, C.T.Polavarapu, KChattopadhyay, DRodríguez, L.M.Blair, Matthew W.Baum, MMcNally, KThis, D.Hoisington, D.A.Varshney, Rajeev K.[Isolation and sequence analysis of DREB2A homologues in three cereal and two legume species]Isolation and sequence analysis of DREB2A homologues in three cereal and two legume species

Developing crops that are better adapted to abiotic stresses is important for food production in many parts of the world today. Anticipated changes in climate and its variability, particularly extreme temperatures and changes in rainfall, are expected to make crop improvement even more crucial fo...


Varshney, Rajeev K.Bansal, Kailash C.Aggarwal, Pramod K.Datta, S.K.Craufurd, Peter Q.[Agricultural biotechnology for crop improvement in a variable climate: hope or hype?. Review]Agricultural biotechnology for crop improvement in a variable climate: hope or hype?. Review
Bertioli, D.J.Cannon, Steven B.Froenicke, L.Huang, G.Farmer, A.D.Cannon, Ethalinda K.S.Liu, X.Gao, D.Clevenger, J.Dash, S.Ren, L.Moretzsohn, K.Huang, W.Vidigal, B.Abernathy, B.Chu, Y.Niederhuth, C.E.Umale, P.Araújo, A.C.G.Kozik, A.Kim, K.D.Burow, Mark DVarshney, Rajeev K.Wang, X.Zhang, X.Barkley, N.A.Guimaraes, P.M.Isobe, S.Guo, B.Liao, B.Stalker, H.T.Schmitz, R.J.Scheffler, B.E.Leal-Bertioli, S.C.M.Xun, X.Jackson, S.A.Michelmore, R.Ozias-Akins, P.[The genome sequences of Arachis duranensis and Arachis ipaensis, the diploid ancestors of cultivated peanut]The genome sequences of Arachis duranensis and Arachis ipaensis, the diploid ancestors of cultivated peanut

Pigeonpea (Cajanus cajan (L.) Millsp. is one of the most important legume crops as major source for proteins, minerals and vitamins, in addition to its multiple uses as food, feed, fuel, soil enricher, or soil binder, and in fencing, roofing and basket making. ICRISAT's genebank conserves 13,632 ...


Upadhyaya, Hari D.Reddy, K.N.Sharma, S.Varshney, Rajeev K.Bhattacharjee, R.Singh, S.Gowda, C.L.L.[Pigeonpea composite collection and identification of germplasm for use in crop improvement programmes]Pigeonpea composite collection and identification of germplasm for use in crop improvement programmes

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