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[120] Tuberosa R, Salvi S. Genomics approaches to improve drought tolerance in crops.
Trends Plant Sci 2006; 11: 405-412.
[121] Tester M, Langridge P. Breeding technologies to increase crop production in a chang‐
ing world. Science. 2010; 327: 818-822.
[122] Ludlow MM Strategies of response to water stress. Structural and Functional Re‐
sponses to Environmental Stresses (eds Kreeb KH Richter H Hinckley TM). pp. 269-
281. SPB Academic, The Hague. 1989.
[123] Vicre M, Farrant JM, Driouich A. Insights into the cellular mechanisms of desiccation
tolerance among angiosperm resurrection plant species. Plant, Cell and Environ‐
ment. 2004; 27:1329-1340.
[124] Barnabas B, Jager K, Feher A. The effect of drought and heat stress on reproductive
processes in cereals. Plant, Cell and Environment. 2008; 31:11-38.
[125] Salekdeh GH, Reynolds M, Bennett J, Boyer J. Conceptual framework for drought
phenotyping during molecular breeding. Trends in Plant Science. 2009; 14:488-496.
[126] Finkel E. With 'phenomics', plant scientists hope to shift breeding into overdrive. Sci‐
ence. 2009; 325: 380-381.
[127] Furbank RT. Plant phenomics: from gene to form and function. Functional Plant Biol‐
ogy. 2009; 36: V-VI.
[128] Ardestani H G, A Hossein, S Rad and P Zandi. Effect of Drought Stress on some
Agronomic Traits of two Rapeseed varieties Grown under Different Potassium Rates.
Australian Journal of Basic and Applied Sciences. 2011; 5(12): 2875-2882.
[129] Granier C, Aguirrezabal L, Chenu K, et al. PHENOPSIS, an automated platform for
reproducible phenotyping of plant responses to soil water deficit in Arabidopsis
thaliana permitted the identification of an accession with low sensitivity to soil water
deficit. New Phytologist. 2006; 169: 623-635.
[130] Passioura JB. Grain yield, harvest index and water use of wheat. Journal of Austral‐
ian Institute of Agricultural Science. 1977; 43: 117-120.
[131] Reynolds MP, Tuberosa R. Translational research impacting on crop productivity in
drought-prone environmental. Curr Opin Plant Biol. 2008; 11: 171-179.
[132] Blum A. Effective use of water (EUW) and not water use efficiency (WUE) is the tar‐
get of crop yield improvement under drought stress. Field Crop Res. 2009; 112:
119-123.
[133] Chaves MM, Maroco JP, Pereira JS. Understanding plant responses to drought: from
genes to the whole plant. Functional Plant Biology. 2003; 30: 239-264.
[134] Flexas, J., J. Bota, F. Loreto, G. Cornic and T.D. Sharkey. Diffusive and metabolic limi‐
tation to photosynthesis under drought and salinity in C3 plants. Plant Biol. 2004; 6:
269-279.
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