Plant Breeding · 1997 · 61 citations · 19 references
EngineeringBotanyGeneticsAgricultural EconomicsCrop ImprovementAbstract Five BarleyCrop PhysiologyPublic HealthPlant-abiotic InteractionCrop Water RelationGenetic VariationWild Emmer WheatPopulation GeneticsBiologyComparative Osmotic AdjustmentsDroughtCrop ProtectionCrop ScienceSoluble SugarsPlant Physiology
Abstract Five barley ( Hordeum rulgare L.), five durum wheat ( Triticum turgidum concar. durum L.) and one wild emmer wheat ( Triticum turgidum conrar dicoccoides ) genotypes from different origins and differing for drought tolerance and potential yield, were studied for their osmotic adjustment capacity at the same stage and under similar water stress conditions. Differences for water status parameters between barley and tetraploid wheat genotypes were noted and discussed. The lowest osmotic adjustment capacities were noted in drought susceptible varieties, while a high capacity was found in genotypes exhibiting a high yield stability across contrasting environments. Relative water content, leaf osmotic potential and accumulation of soluble sugars were found to be highly related with osmotic adjustment: they could be used as criteria for a rapid evaluation of osmotic adjustment in segregating populations.
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Water Relations in Winter Wheat as Drought Resistance Indicators
Manette A. Schonfeld, Richard C. Johnson, Brett F. Carver et al. · Crop Science · 1988 · 575 citations
Engineering, Plant Stress, Botany +13
Adaptation to Water Deficits: a Changing Perspective
Australian Journal of Plant Physiology · 1986 · 437 citations
Engineering, Botany, Leaf Hydration +16
Osmotic Adjustment and Growth of Barley Genotypes under Drought Stress
A. Blum · Crop Science · 1989 · 249 citations
Biology, Engineering, Plant Stress +14