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Morphological attributes associated with early-season drought tolerance in spring durum wheat in a mediterranean environment

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Abstract

Impacts of drought during the reproductive development phase of wheat have been thoroughly investigated, while studies of the early-season drought effects are lacking. Field experiments were conducted to study the effect of duration of drought stress during the period from emergence to the end of tillering on the growth and performance of different wheat cultivars, and to identify traits that could be associated with the resistance to early season drought. Experiments were conducted on a Vertic Calcixerol soil in the semiarid cereal-growing region of Morocco in 1995 and 1996. Six spring durum wheat (Triticum durum Desf.) cultivars selected on the basis of variation in morphology, phenology, and zone of adaptation were subjected to four water regimes, including a well-irrigated control. The three water stress treatments were imposed by withholding water during the period from emergence to either the onset, middle, or the end of tillering. Subsequent irrigations provided adequate soil moisture for the remainder of the growing season. Results from both years were generally consistent. The differential responses of the six cultivars was mainly due to differences in numbers of kernels produced. High yields under early-season drought were attributed to high leaf area index under stress and, upon recovery, and to high tiller survival rate. The consistency observed over years in the relationships between grain yield and those traits that proved to be most associated with the resistance to early-season drought, would suggest the usefulness of these traits as selection criteria for breeding for improved drought resistance in a Mediterranean climate type of North Africa.

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References

  • Blum, A., S. Ramaiah, E.T. Kanemasu & G.M. Paulsen, 1990.Wheat recovery from drought stress at the tillering stage of development. Field Crops Res. 24: 6785.

    Article  Google Scholar 

  • Boyer, J.S., 1971. Recovery of photosynthesis in sunflower after a period of low leaf water potential. Plant Physiol. 47: 816-820.

    PubMed  CAS  Google Scholar 

  • Cannell, R.Q., 1969. The tillering pattern in barley varieties. I. Production, survival and contribution to yield by components tillers. J Agric Sci 72: 405-422.

    Google Scholar 

  • Cooper, P.J.M., P.J. Gregory, D. Tully & H.C. Harris, 1987. Improving water use efficiency of annual crops in rainfed farming systems of West Asia and North Africa. Exp Agric 23: 113-158.

    Google Scholar 

  • Davidson, D.J. & P.M. Chevalier, 1987. Influence of polyethyleneglycolinducedwater deficits on tiller production in spring wheat. Crop Sci 27: 1185-1187.

    Article  Google Scholar 

  • Entz, M.H. & D.B. Fowler, 1990. Differential agronomic response of winter wheat cultivars to preanthesis environmental stress. Crop Sci 30: 1119-1123.

    Article  Google Scholar 

  • Geiger, D.R. & B.R. Fondy, 1980. Responses of export and partitioning to internal and environmental factors. What's New Plant Physiol. 11: 25-28.

    CAS  Google Scholar 

  • Hadjichristodoulou, A., 1987. Stability of performance of cereals in lowrainfall areasas related to adaptive traits. In: J.P. Srivastava, E. Porceddu, E. Acevedo & S. Varma (Eds.), Drought Tolerance in Winter Cereals, pp.191-200. Wiley, Chichester.

    Google Scholar 

  • Hsiao, T.C., 1973. Plant responses to water stress. Ann Rev Plant Physiol 24: 519-570.

    Article  CAS  Google Scholar 

  • Kirby, E.J.M. & H.G. Jones, 1977. The relations between the main shoot and tillers in barley. J Agric Sci 88: 381-389.

    Article  Google Scholar 

  • Large, E.C., 1954. Growth stages in cereals. Illustration of the Feekes scale. Plant Pathol 3: 128-129.

    Google Scholar 

  • Lilley, J.M. & S. Fukai, 1994. Effect of timing and severity of water deficit on fourdiverse rice cultivars. III. Phenological development, crop growth and grain yield. Field Crops Res 37: 225-234.

    Article  Google Scholar 

  • López-Castañeda, C. & R.A. Richards, 1994a. Variation in temperate cereals inrainfed environments. I. Grain yield, biomass and agronomic characteristics. Field Crops Res 37: 51-62.

    Article  Google Scholar 

  • López-Castañeda, C. & R.A. Richards, 1994b. Variation in temperate cereals inrainfed environments. II. Phasic development and growth. Field Crops Res 37: 63-75.

    Article  Google Scholar 

  • Loss, S.P. & K.H.M. Siddique, 1994. Morphological and physiological traits associated with wheat yield increases in Mediterranean environments. Adv Agron 52: 229-276.

    CAS  Google Scholar 

  • Ludlow, M.M. & R.C. Muchow, 1990. A critical evaluation of traits for improving cropyields in waterlimited environments. Adv Agron 43: 106-153.

    Google Scholar 

  • Mosaad, M., G. Ortiz Ferrara & V. Mahalakshmi, 1995. Tiller development and contribution to yield under different moisture regimes in two triticum species. J Agron Crop Sci 174: 173-180.

    Article  Google Scholar 

  • NCCI, 1990. Les variétés de céréales cultivées au Maroc. Catalogue officiel.

  • Rickman, R.W., B. Klepper & C.M. Peterson, 1983. Time distributions for describingappearance of specific culms of winter wheat. Agron J 75: 551-556.

    Article  Google Scholar 

  • Schönfeld, M., R.C. Johnson & D.M. Ferris, 1989. Development of winter wheat under increased atmosheric CO2 and water limitation at tillering.

  • Shanahan, J.F., K.J. Donnelly, D.H. Smith & D.E. Smika, 1985. Shoot developmental properties associated with grain yield in winter wheat. Crop Sci 25: 770-775.

    Article  Google Scholar 

  • Siddique, K.H.M., R.K. Belford, M.W. Perry & D. Tennant, 1989. Growth, development and light interception of old and modern wheat cultivars in a Mediterranean environment. Aust J Agric Res 40: 473-487.

    Google Scholar 

  • Siddique, K.H.M., D. Tennant, M.W. Perry & R.K. Belford, 1990. Water-use and water-use efficiency of old and modern wheat cultivars in a Mediterranean environment. Aust J Agric Res 41: 431-437.

    Article  Google Scholar 

  • Simane, B., J.M. Peacock & P.C. Struik, 1993. Differences in developmental plasticity and growth rate among drought-resistant and susceptible cultivars of durum wheat (Triticum turgidumL. var. durum). Plant and Soil 157: 155-166.

    Article  Google Scholar 

  • Stark, J.C. & T.S. Longley, 1986. Changes in spring wheat tillering patterns in response to delayed irrigation. Agron J 78: 892-896.

    Article  Google Scholar 

  • Van Oosterom, E.J. & E. Acevedo, 1992a. Adaptation of barley (Hordeum vulgareL.) to harsh Mediterranean environments. I. Morphological traits. Euphytica 62: 1-14.

    Article  Google Scholar 

  • Van Oosterom, E.J. & E. Acevedo, 1992b. Adaptation of barley (Hordeum vulgareL.) to harsh Mediterranean environments. III. Plant ideotype and grain yield. Euphytica 62: 29-38.

    Article  Google Scholar 

  • Van Oosterom, E.J. & E. Acevedo, 1993. Leaf area and crop growth in relation to phenology of barley in Mediterranean environments. Plant and Soil 148: 223-237.

    Article  Google Scholar 

  • Watts, D.G. & M. Elmourid, 1988. Rainfall patterns and probabilities in the semi-arid cereal production region of Morocco. Centre Aridoculture, Settat-Morocco. USAID Project No. 608-0136.

    Google Scholar 

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Hafid, R.E., Smith, D.H., Karrou, M. et al. Morphological attributes associated with early-season drought tolerance in spring durum wheat in a mediterranean environment. Euphytica 101, 273–282 (1998). https://doi.org/10.1023/A:1018301721981

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