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. , Otambekova , M. , Morgounov , A. , Muminjanov , H. 2015 b. Wheat landraces in farmers’ fields in Tajikistan: National survey, collection and conservation . FAO, Ankara, Turkey
. Talas , F. , Longin , F. , Miedaner , T. 2011 . Sources of resistance to Fusarium head blight within Syrian durum wheat landraces . Plant Breeding 130 : 398 – 400
Khazaei, H., Monneveux, P., Hongbo, S., Mohammady, S. (2010) Variation for stomatal characteristics and water use efficiency among diploid, tetraploid and hexaploid Iranian wheat landraces. Genet. Resour. Crop Evol. 57 , 307
wheat landraces from Pakistan based on polymorphism for high molecular weight glutenin subunits (HMW-GS). Pak. J. Bot. 36 :835–843. Anwar R. Genetic diversity in wheat landraces
Gregová, E., Hermuth, J., Kraic, J., Dotlačil, L. (1999): Protein heterogeneity in European wheat landraces and obsolete cultivars. Genetic Resources and Crop Evolution , 46 , 521–528. Dotlačil L
184 190 Tesemma, T., Tsegaye, S., Belay, G., Bechere, E., Mitiku D. (1998): Stability of performance of tetraploid wheat landraces in the Ethiopian highland. Euphytica
Dotlacil, L.-Hermuth, J.-Tisova, V.-Brindza, J.-Debre, F. : 2000. Yield potential and stability in selected winter wheat landraces and obsolete cultivars of European origin. Rostlinna Vyroba. 46:4, 153–158. Debre
. 1998. Stability of performance of tetraploid wheat landraces in Ethiopian highland. Euphytica 102 :301–308. Demissie M. Stability of performance of tetraploid wheat landraces in
62 Masood, M.S., Asghar, M., Anwar, R. 2004. Genetic diversity in wheat landraces from Pakistan based on polymorphism for high molecular weight glutenin subunits. Pakistan J. of Botany 36
Nakamura, H. 2000. The high molecular weight glutenin sub-unit composition of Japanese hexaploid wheat landraces. Aust. J. Agric. Res. 5 :673–677. Nakamura H. The high molecular weight