- Anbessa, Y. & Bejiga, G. (2002). Evaluation of Ethiopian chickpea landraces for tolerance to drought. Genetic Resources and Crop Evolution, 49, 557-564.
- Chauhan, Y. S. 1995. Strategiesfor improving drought resistance in grain legumes. Critical Review in Plant Science, 14, 469-523.
- Emam Jome, A. (1999). Determine the genetic distance by RAPD-PCR, evaluation of drought resistance indices and analysis of adaptation in the Iranian chickpea. M.Sc. Thesis, Faculty of Agriculture, RaziUniversity, Kermanshah, Iran. (In Farsi).
- FAOSTAT. (2013). Food and Agriculture Organization of the United Nations (FAO), Rome,Italy. Available from: http://www.faostat.fao.org/
- Farshadfar, A., Zamani, M. R., Motallebi, M. & Emam Jome, A. (2001). Selectionfor drought resistance in chickpea lines. Iranian Journal of Agricultural Sciences, 32(4), 65-77 (In Farsi).
- Fernandez, G.C.J. (1992). Effective selection criteria for assessing plant stress tolerance. Paper presented at: Proceedings of International symposium on adaptation of vegetables and other food crops in temperature and water stress. Tainan, Taiwan.
- Ganjali, A., Kafi, A., Bagheri, A. & Shahriyari, F. (2005). Screening for drought tolerance in chickpea genotypes (Cicer arietinum L.). Iranian Journal of Agricultural Sciences, 3(1), 103-122. (In Farsi).
- Kanouni, H., Ahmadi, M. K., Sabaghpour, S. H., Malhotra, R. S. & Ketata, H. (2003). Evaluation of spring sown chickpea varieties for drought tolerance. International chickpea conference. Raipur, Chhattisgrah, India. (In Farsi).
- Kramer, P.J. 1983.Water Relations of Plants. Academic press. pp. 342-451.
- Ludlow, M. M. & Muchow, R. C. (1990). A critical evaluation of traits for improvingcrop yields in water-limited environments. Advances in Agronomy, 43, 107-153.
- Nichit, M.M. (1998). Durum breeding research to improve dryland productivity in the Mediterranean region. In: Nachit, M. M., BaumM., ProcedureE., Monneveux, P. & Picard, E. (eds.). SEVANA (South Europe, Weat Asia and North Africa) Durum Research Network. ICARDA. Aloppo. Syria.
- Pouresmael, M., Akbari, M., Vaezi, S. & Shahmoradi, Sh. (2009). Effects of drought stress gradient on agronomic traits in kabuli chickpea core collection. Iranian Journal of Crop Sciences, 11(4), 307-324. (In Farsi).
- Pouryamchi, H. M. A., Bihamta, M. R., Peighambari, S. A. & Naghavi, M. R. (2011). Evaluation of drought tolerance in Kabuli type Chickpea genotypes. Iranian Journal of Seed and Seedling Breeding, 27(3), 393-409. (In Farsi).
- Ramirez, V.P. & Kelly, J. D. (1998). Traits related to drought resistance in common bean. Euphytica, 99, 127-136.
- Rosielle, A.A. & Hambling, J. (1981). Theoretical aspects of selection for yield in stress and non-stress environments. Crop Science, 21, 943-946.
- Sabeti, H. A. (1969). Evaluation of bioclimates of Iran. Tehran University. (In Farsi).
- Saxena, M.C. (1993). The challenge of developing biotic and abiotic stress resistance in cool season food legumes. In: Breeding for Stress toleramce in Cool-Season Food Legumes. Singh, K.B. & Saxena, M.C. (eds.), John wiley & sons, New York, NY.
- Saxena, N. P., Saxena, M. C., Johansen, C., Virmani, S. M. & Harris, H. (1996). Future research priorities for Chickpea in WANA & SAT. In: Adaptation of chickpea in the west Asia and north Africa regionSaxena, N. P. (ed.).. ICARDA, Aleppo, Syria.
- Silim, S.N. & Saxena, M.C. (1993). Adaptation of spring-sown chickpea to the meditaranian basin. Factors in fluencing yield under drough. Field Crops Research, 34, 137-146.
- Souri, J., Dehghani, H. & Sabaghpour, S. H. (2005). Study of chickpea genotypes in irrigation stress condition. Iranian Journal of Agricultural Sciences, 36(6), 1517-1527. (In Farsi).
- Subarao, G. V., Johanson, C., Slinkard, A. E., Nageswara Rao, R. C., Saxena, N.P. & Chauhan, Y. S. (1995). Strategiesfor improving drought resistance in grain legumes. Critical Review in Plant Science, 14, 469-523.
- Takeda, S. & Matsuoka, M. (2008). Genetic approaches to crop improvement: responding to environmental and population change. Nature, 9, 444-457.
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