REFERENCES
- Ahmadizadeh, M., Valizadeh, M., Shahbazi, H., Zaefizadeh, M., & Habibpor, M. (2011). Morphological diversity and interrelationships traits in durum wheat landraces under normal irrigation and drought stress conditions. Advances in Environmental Biology, 1934-1941.
- Ahmed, N., Chowdhry, M. A., Khaliq, I., & Maekawa, M. (2016). The inheritance of yield and yield components of five wheat hybrid populations under drought conditions. Indonesian Journal of Agricultural Science, 8(2), 53-59.
- Alipour, H., Bihamta, M.R., Mohammadi, M., & Peyghmbari, S.A. (2017). Evaluation of genetic variability of agronomic traits in Iranian wheat landraces and cultivars. Journal of Crop Breeding. 9(22). 168-177. (In Farsi)
- Amrawat, T., Solanki, N. S., Sharma, S. K., Jajoria, D. K., & Dotaniya, M. L. (2013). Phenology growth and yield of wheat in relation to agrometeorological indices under different sowing dates. African Journal of Agricultural Research, 8(49), 6366-6374.
- Bagge M., Xia X. C., Lubberstedt T. (2007). Functional markers in wheatcommentary. Current Opinion in Plant Biology, 10:211–216.
- Barraclough, P. B., Lopez-Bellido, R., & Hawkesford, M. J. (2014). Genotypic variation in the uptake, partitioning and remobilization of nitrogen during grain-filling in wheat. Field Crops Research, 156, 242-248.
- Bodner, G., Nakhforoosh, A., & Kaul, H. P. (2015). Management of crop water under drought: A review. Agronomy for Sustainable Development, 35(2), 401-442.
- Brenchley, R., Spannagl, M., Pfeifer, M., Barker, G. L., D’Amore, R., Allen, A. M., McKenzie, N., Kramer, M., Kerhornou, A., Bolser, D. & Kay, S. (2012). Analysis of the bread wheat genome using whole genome shotgun sequencing. Nature, 491(7426), 705-710.
- Ebrahimnejad, S., & Rameeh, V. (2016). Correlation and factor analysis of grain yield and some important component characters in spring bread wheat genotypes. Cercetari Agronomice in Moldova, 49(1), 5-15.
- Eid, M. H. (2009). Estimation of heritability and genetic advance of yield traits in wheat (Triticum aestivum L.) under drought condition. International Journal of Genetics and Molecular Biology, 1(7), 115-120.
- Firoozi, B., Sofalian, O., Shokrpour, M., Rasoulzadeh, A., & Ahmadpour, F., (2013). Evaluation of spring wheat using drought tolerance indices and principal component analysis. Environmental Stresses in Crop Sciences, 5(2), 99-113. (In Farsi).
- Flohr, B. M., Hunt, J. R., Kirkegaard, J. A., & Evans, J. R. (2017). Water and temperature stress define the optimal flowering period for wheat in south-eastern Australia. Field Crops Research, 209, 108-119.
- Golparvar, A. R., Ghanadha, M. R., Zali, A. A., Ahmadi, A., Harvan, E. M., & Ghasemi Pirbalooti, A. (2007). Factor analysis of morphological and morpho-physiological traits in bread wheat (Triticum aestivum L.) genotypes under drought and non-drought stress conditions. Pajouhesh and Sazandegi, 72: 52-59. (In Farsi).
- Govindaraj, M., Vetriventhan, M., & Srinivasan, M. (2015). Importance of genetic diversity assessment in crop plants and its recent advances: an overview of its analytical perspectives. Genetics Research International, 2015. 1-14.
- Gustafson, P., Raskina, O., Ma, X., & Nevo, E. (2009). Wheat evolution, domestication, and improvement. WileyBlackwell.
- Heidar, B., Saeidi, G. H., & Sayed-Tabatabaei, B. E. (2008). Factor analysis for quantitative traits and path analysis for grain yield in wheat. Journal of Water and Soil Science, 11(42), 135-143.
- Hill, C. B., & Li, C. (2016). Genetic architecture of flowering phenology in cereals and opportunities for crop improvement. Frontiers in Plant Science, 7, 1906-1929.
- Iqbal, M., Navabi, A., Salmon, D. F., Yang, R. C., & Spaner, D. (2007). Simultaneous selection for early maturity, increased grain yield and elevated grain protein content in spring wheat. Plant Breeding, 126(3), 244-250.
- Jensen, M. E. (1974). Consumptive use of water and irrigation water requirements. ASCE.
- Joudi, M., Ahmadi, A., Mohammadi, V., Abbasi, A., & Mohammadi, H. (2014). Genetic changes in agronomic and phonologic traits of Iranian wheat cultivars grown in different environmental conditions. Euphytica, 196(2), 237-249.
- Kamran, A., Iqbal, M., & Spaner, D. (2014). Flowering time in wheat (Triticum aestivum L.): A key factor for global adaptability. Euphytica, 197(1), 1-26.
- Kang, S., Gu, B., Du, T., & Zhang, J. (2003). Crop coefficient and ratio of transpiration to evapotranspiration of winter wheat and maize in a semi-humid region. Agricultural water management, 59(3), 239-254.
- Koyama, K., Okumura, Y., Okamoto, E., Nishijima, R., & Takumi, S. (2018). Natural variation in photoperiodic flowering pathway and identification of photoperiod-insensitive accessions in wild wheat, Aegilops tauschii. Euphytica, 214(3), 1-12.
- Landjeva, S., Ganeva, G., Korzun, V., Palejev, D., Chebotar, S., & Kudrjavtsev, A. (2015). Genetic diversity of old bread wheat germplasm from the Black Sea region evaluated by microsatellites and agronomic traits. Plant Genetic Resources, 13(2), 119-130.
- Leilah, A. A., & Al-Khateeb, S. A. (2005). Statistical analysis of wheat yield under drought conditions. Journal of Arid Environments, 61(3), 483-496.
- Mohammadi, S. (2012). Investigation of yield and yield component relation in bread wheat under normal irrigation and terminal drought stress using multivariate statistical analysis. Iranian Journal of Field Crops Research. 12(1)-99-101. (In Farsi).
- Mohseni, M., Mortazavian, S. M. M., Ramshini, H. A., & Foghi, B. (2014). Evaluation of bread wheat genotypes under normal and post-anthesis drought stress conditions for agronomic traits. Journal of Crop Breeding, 8(18). 16-29.
- Naruee Rad, M. R., Farzanjoo, M., Fanaei, H. R., Arjmandi nejad, A. R., Ghasemi, A. & Pol shekan Pahlavan, M. R. (2006) Evaluation of genetic diversity and factor analysis for morphological traits of Sistan and Baluchestan landraces accessions of wheat, Journal of Construction Research in Agriculture and Horticulture, No, 73. pp: 50-57. (In Farsi).
- Nazari, M., & Abdolshahi, R. (2014). Evaluation of genetic diversity in bread wheat cultivars (Triticum aestivum L.) using morpho-physiological traits and SSR markers. Journal of Agricultural biotechnology, 6(1), 215-231.
- Otegui, M. E., Borrás, L., & Maddonni, G. A. (2015). Crop phenotyping for physiological breeding in grain crops: A case study for maize. (pp. 375-396.) Academic Press.
- Parry, M. A. J., Reynolds, M. P., Salvucci, M. E., Raines, C., Andralojc, P. J., Zhu, X. G., Dean P., Anthony G. Condon, & Furbank, R. T. (2010). Raising yield potential of wheat. II. Increasing photosynthetic capacity and efficiency. Journal of Experimental Botany, 62(2), 453-467.
- Pourdanesh, A. H., Arshad, Y., Vaezi, s., Rashidi, V. (2014). The study of genetic diversity and relationships of major agronomical traits for several wheat accessions of National Plant Gene Bank of Iran. Agronomy Journal (Pajouhesh & Sazandegi) No:104 pp: 76-86. (In Farsi).
- Salamini, F., Özkan, H., Brandolini, A., Schäfer-Pregl, R., & Martin, W. (2002). Genetics and geography of wild cereal domestication in the Near East. Nature Reviews Genetics, 3(6), 429-441.
- Seifolahpour, B., Bahraminejad, S., & Cheghamirza, K. (2017). Genetic diversity of einkorn wheat (Triticum boeoticum Boiss.) accessions from the central Zagros Mountains. Žemdirbystė (Agriculture), 104(1), 23-30.
- Shavrukov, Y., Kurishbayev, A., Jatayev, S., Shvidchenko, V., Zotova, L., Koekemoer, F., de Groot, S., Soole, K., & Langridge, P. (2017). Early flowering as a drought escape mechanism in plants: How can it aid wheat production? Frontiers in plant science, 8, 1950-1958.
- Smith, M. E., Coffman, W. R., & Barker, T. C. (1990). Environmental effects on selection under high and low input conditions. Genotype-by-environment interaction and plant breeding (pp. 261-272.).Louisiana State University, Baton Rouge, LA, USA.
- Trethowan, R., & Pfeiffer, W. H. (2000). In: Ribaut J. M., Poland D. (eds), Challenges and future strategies in breeding wheat for adaptation to drought stressed environments: A CIMMYT wheat program perspective. (21-25.) CIMMYT, Mexico.
|