Saltar al contenido
VuFind
    • English
    • Español
Avanzado
  • Canales
Buscar más canales:

Autor: Dakheel, Abdullah J.

  • Autor: Hash, C. Tom
  • Autor: Serraj, R.
  • Autor: Serraj, Rachid
  • Autor: Vadez, Vincent
  • Autor: Varshney, Rajeev K.
  • Autor: Aruna, R.
  • Autor: Babbar, A
  • Autor: Basu, PS
  • Autor: Beebe, Stephen E.
  • Autor: Blümmel, Michael
  • Autor: Chandra, S.
  • Autor: Chaturvedi, Sushil Kumar
  • Autor: Devi, M. Jyotsna
  • Autor: Gaur, P.
  • Autor: Ghanem, Michel Edmond
  • Autor: Hoisington, D.A.
  • Autor: Jayalakshmi, Veera
  • Autor: Kumar, S.
  • Autor: Montoya Vilcahuamán, Luciano Javier
  • Autor: Musálem, Miguel Angel
  • Autor: Nayyar, H
  • Autor: Nigam S.N.
  • Autor: Nigam, S.N.
  • Autor: Rai, Kedar Nath
  • Autor: Rao, Idupulapati M.
  • Autor: Reddy, Belum V. S.
  • Autor: Rupakula, A.
  • Mostrar ítemes como resultados de búsqueda
  • Explorar canales relacionados
  • Vista rápida
    Identification of pearl millet [Pennisetum glaucum (L.) R. Br.] lines tolerant to soil salinity
  • Vista rápida
    Screening sorghum genotypes for salinity tolerant biomass production

Autor: Gaur, Pooran M.

  • Autor: Hash, C. Tom
  • Autor: Serraj, R.
  • Autor: Serraj, Rachid
  • Autor: Vadez, Vincent
  • Autor: Varshney, Rajeev K.
  • Autor: Aruna, R.
  • Autor: Babbar, A
  • Autor: Basu, PS
  • Autor: Beebe, Stephen E.
  • Autor: Blümmel, Michael
  • Autor: Chandra, S.
  • Autor: Chaturvedi, Sushil Kumar
  • Autor: Devi, M. Jyotsna
  • Autor: Gaur, P.
  • Autor: Ghanem, Michel Edmond
  • Autor: Hoisington, D.A.
  • Autor: Jayalakshmi, Veera
  • Autor: Kumar, S.
  • Autor: Montoya Vilcahuamán, Luciano Javier
  • Autor: Musálem, Miguel Angel
  • Autor: Nayyar, H
  • Autor: Nigam S.N.
  • Autor: Nigam, S.N.
  • Autor: Rai, Kedar Nath
  • Autor: Rao, Idupulapati M.
  • Autor: Reddy, Belum V. S.
  • Autor: Rupakula, A.
  • Mostrar ítemes como resultados de búsqueda
  • Explorar canales relacionados
  • Vista rápida
    Large variation in salinity tolerance in chickpea is explained by differences in sensitivity at the reproductive stage
  • Vista rápida
    High temperature tolerance in grain legumes

Ejemplares similares: Variations in food-feed traits in a core collection of chickpeas

  • Ejemplares similares: Identification of pearl millet [Pennisetum glaucum (L.) R. Br.] lines tolerant...
  • Ejemplares similares: Screening sorghum genotypes for salinity tolerant biomass production
  • Ejemplares similares: Standardization of a screening technique for salinity tolerance in groundnut (...
  • Ejemplares similares: Large variation in salinity tolerance in chickpea is explained by differences...
  • Ejemplares similares: High temperature tolerance in grain legumes
  • Ejemplares similares: Rotación óptima de cultivos y de uso de recursos en el sistema agroforestal de...
  • Ver registro
  • Explorar canales relacionados
  • Vista rápida
    Phenotypic diversity for morphological and productivity traits in chickpea core collection
  • Vista rápida
    Feeds and Forages Flagship: Initial ideas for integrated core project
  • Vista rápida
    Genomic selection for different agronomic traits in ICARDA chickpea breeding program
  • Vista rápida
    Identification of the SNP markers for drought tolerance and related agronomic traits in chickpea under multi-environments using GWAS analysis
  • Vista rápida
    Genome-wide association mapping reveals novel genes and genomic regions controlling root-lesion nematode resistance in chickpea mini core collection
  • Vista rápida
    Selecting for food-feed traits in desi and kabuli genotypes of Chickpea (Cicer arietinum)
  • Vista rápida
    Diversified Cropping System: Relay Intercropping of Lentils with Chickpeas [Morocco]
  • Vista rápida
    N2Africa packages improves sustainable productivity of chickpea in Ethiopian Vertisols
  • Vista rápida
    Genetic and Genomic Resources for Improving Biotic Stress Tolerance in Chickpea
  • Vista rápida
    Virus diseases of chickpea
  • Vista rápida
    Opportunities for maximizing feed value of sorghum
  • Vista rápida
    Identification of biotic agents associated with chickpea yellowing syndrome (CYS) in Argentina
  • Vista rápida
    Marketing of Kabuli and Desi chickpeas by smallholder farmers in Eastern Shewa Zone
  • Vista rápida
    Author Correction: A chickpea genetic variation map based on the sequencing of 3,366 genomes
  • Vista rápida
    Mapping and Profiling Legume Seed Value Chain Actors in Morocco: Chickpea and Lentil
  • Vista rápida
    Exploring the Genetic Variability and Potential Correlations Between Nutritional Quality and Agro-Physiological Traits in Kabuli Chickpea Germplasm Collection (Cicer arietinum L.)
  • Vista rápida
    Identifying Genetic Linkage Groups and Markers for Leaf Miner Resistance in Chickpea through QTL Analysis and Field Validation
  • Vista rápida
    Multi-location testing of a global collection of elite chickpea genotypes to identify stable sources of resistance to Ascochyta blight
  • Vista rápida
    Targeting and introduction of chickpea improved cultivars in Bihar state of India (Tropical Legumes II Phase 2 Project)
  • Vista rápida
    The interaction between drought stress and nodule formation under multiple environments in chickpea
  • Vista rápida
    Potential of Volatile Organic Compounds in the management of insect pests and diseases of chickpea
  • Vista rápida
    Prospects and potentials of allele mining in chickpea for qualitative and quantitative traits
  • Vista rápida
    Studies on epidemiology of virus diseases of chickpea in California
  • Vista rápida
    Assessment of Pathogenicity Assay of Ascochyta rabiei Isolates Using Chickpea Differential Genotypes

Ejemplares similares: Variation in transpiration efficiency and its related traits in a groundnut (Arachis hypogaea L.) mapping population

  • Ejemplares similares: Identification of pearl millet [Pennisetum glaucum (L.) R. Br.] lines tolerant...
  • Ejemplares similares: Screening sorghum genotypes for salinity tolerant biomass production
  • Ejemplares similares: Standardization of a screening technique for salinity tolerance in groundnut (...
  • Ejemplares similares: Large variation in salinity tolerance in chickpea is explained by differences...
  • Ejemplares similares: High temperature tolerance in grain legumes
  • Ejemplares similares: Rotación óptima de cultivos y de uso de recursos en el sistema agroforestal de...
  • Ver registro
  • Explorar canales relacionados
  • Vista rápida
    Cultivar-dependent variation in food-feed-traits in groundnut (Arachis hypogaea L.)
  • Vista rápida
    Standardization of a screening technique for salinity tolerance in groundnut (Arachis hypogaea) and pigeonpea (Cajanus cajan)
  • Vista rápida
    Stress-inducible expression of At DREB1A in transgenic peanut (Arachis hypogaea L.) increases transpiration efficiency under water-limiting conditions
  • Vista rápida
    Relationships between transpiration efficiency and its surrogate traits in the rd29A:DREB1A transgenic lines of groundnut
  • Vista rápida
    Opportunities for exploiting variations in haulm fodder traits of intermittent drought tolerant lines in a reference collection of groundnut (Arachis hypogaea L.)
  • Vista rápida
    Growth and evapotranspiration of groundnut (Arachis hypogaea) in a transitional humid zone of Nigeria
  • Vista rápida
    Transpiration efficiency: New insight into an old story
  • Vista rápida
    Groundnut (Arachis hypogaea L.) and cowpea (Vigna unguiculata L. Walp) growing in Ethiopia are nodulated by diverse rhizobia
  • Vista rápida
    Gene diversity among botanical varieties in peanut (Arachis hypogaea L.)
  • Vista rápida
    In vitro digestibility and methane gas production of fodder from improved cowpea (Vigna unguiculata L.) and groundnut (Arachis hypogaea L.) varieties
  • Vista rápida
    Response of groundnut (Arachis hypogaea L.) in sole crop and in intercrop with cassava (Manihot esculenta Crantz) to lime in an Ultisol in Bas Zaire
  • Vista rápida
    Analysis of genomic sequences from peanut (Arachis hypogaea)
  • Vista rápida
    Functional biology and molecular mechanisms of host-pathogen interaction for aflatoxin contamination in groundnut (Arachis hypogaea L.) and maize (Zea mays L.)
  • Vista rápida
    Food-fodder traits in groundnut
  • Vista rápida
    Production and quality evaluation of cookies from composite flour of unripe plantain (Musa paradisiaca), groundnut (Arachis hypogaea L.) and cinnamon (Cinnamomum Venum)
  • Vista rápida
    Transpiration efficiency in the major races of Ethiopian sorghum: Unraveling genetic variation for drought adaptation
  • Vista rápida
    Groundnut (Arachis hypogaea) for food and fodder in crop-livestock systems: Forage and seed yields, chemical composition and rumen degradation of leaf and stem fractions of 38 cultivars
  • Vista rápida
    Variation among cowpea genotypes in sensitivity of transpiration rate and symbiotic nitrogen fixation to soil drying
  • Vista rápida
    Molecular detection of Thecaphora frezzi in peanut (Arachis Hypogaea L.) seeds
  • Vista rápida
    Physiological and genetic control of transpiration efficiency in African rice, Oryza glaberrima Steud
  • Vista rápida
    Sources of resistance to tobacco streak virus in Wild Arachis (Fabaceae: Papilionoidae) Germplasm
  • Vista rápida
    Teliosporas de Thecaphora frezii en semillas de maní (Arachis hypogaea)
  • Vista rápida
    Effect of storage conditions on quality and aflatoxin contamination of peanuts (Arachis hypogaea L.)
  • Vista rápida
    Genotypic variations in carbon isotope discrimination, transpiration efficiency, and biomass production in rice as affected by soil water conditions and N

© Copyright 2026, Todos los Derechos Reservados UNA