1. Abdollahi, R., Hajilou, J., Zainalabedini, M., Mahna, N. and Ghaffari, M.R. (2018). Evaluation of pomological and genetic diversity of peach genotypes in Iran. International Journal of Horticultural Science and Technology, 19(2): 227-246. 2. Bozhkova, V. (2011). Evaluation of parent combinations fertility in plum breeding (Prunus domestica L.). Acta Agriculturae Serbica, 16(31): 43-49. 3. Brim, C.A., Johnson, H.W. and Cockerham, C.C. (1959). Multiple selection criteria in soybeans. Agronomy Journal, 51: 42-46. [ DOI:10.2134/agronj1959.00021962005100010015x] 4. Couranjou, J. (1968). Variety influence on alternate bearing reactions in domestic plum. Acta Horticulture, 10: 203-210. [ DOI:10.17660/ActaHortic.1968.10.16] 5. Ebrahimi, A., FttahiMoghadam, M., Zamani, Z. and Vahdati, K. (2010). An investigation on genetic diversity of 608 Persian walnut accessions for screening of some genotypes of superior traits. Iranian Journal of Horticultural Science, 40(4): 83-94 (In Persian). 6. FAOSTAT. (2021). FAOSTAT data of Food and Agriculture Organization of the United Nations. http://faostat.fao.org/. 7. Farshadfar, E. (2000). Application of Quantitative Genetics in Plant Breeding. Razi University Press, Kermanshah, IR (In Persian). 8. Ganji Moghaddam, E., Ava, H. Akhavan, S. and Hosseini, S. (2011). Phonological pomological characteristics of some plum (Prunus spp.) cultivar grown in Mashhad, Iran. Crop Breeding Journal, 1(2): 105-108. 9. Gheitarani, B., Erfani-Moghadam, J. and Fazeli, A. (2020). Evaluation of genetic diversity among some common fig using RAPD and ISSR molecular markers. Plant Genetic Researches, 6(2): 43-54 (In Persian). [ DOI:10.29252/pgr.6.2.43] 10. Hartley, H.O. (1950). The maximum F-ratio as a short cut test for homogeneity of variance, Biometrika, 3: 308-312. [ DOI:10.1093/biomet/37.3-4.308] [ PMID] 11. Hwang, C.L. and Yoon, K. (1981). Multiple Attributes Decision Making Methods and Applications. Springer, Berlin Heidelberg, DE. [ DOI:10.1007/978-3-642-48318-9_3] 12. Jalili, I., Rabiee, V., Azami, M.A. and Daghestani, M. (2011). Genotypic diversity of prune and plum using morphological characteristics in Maragheh region. Seed and Plant Improvement Journal, 27(3): 357-374 (In Persian). 13. Kampthorne, O. and Nordskog, A.W. (1959). Restricted selection indices. Biometrics, 15: 10-19. [ DOI:10.2307/2527598] 14. Maggioni, L., Lateur, M., Balsemin, E. and Lipman, E. (2010). Report of a Working Group on Prunus: Eight Meeting. Bioversity International; European Cooperative Programme for Plant Genetic Resource, Forli, Italy. 15. Masoumi, P., Amini, F. and Ramshini, H. (2020). Genetic variation of seed related traits in Festuca arundinacea using multivariate statistical methods. Plant Genetic Researches, 6(2): 55-68 (In Persian). [ DOI:10.29252/pgr.6.2.55] 16. Pirkhezri, M. (2016a). Practical Guideline to Plum and Prune Culture. TAK Press, Tehran, IR (In Persian). 17. Pirkhezri, M. (2016b). The first report on identification and collection of plum and prune germplasm in Iran. 13th International Genetic Congress, 9-11 March, Tehran, Iran (In Persian). 18. Rezaei, A., Arzani, K. and Sarikhani, S. (2020). Morphological evaluation and identification of walnut (Juglans regia L.) superior genotypes in north Hamadan province of Iran. Iranian Journal of Horticultural Science, 51(2): 441-457 (In Persian). 19. Riger, M. (2006). Introduction to Fruit Crop. Haworth Press, Philadelphia, Pennsylvania, USA.
https://doi.org/10.1201/9781482298055 [ DOI:10.1201/9780367807801] 20. Sedaghathoor, S., Ansari, R., Allahyari, M. S. and E. Nasiri. (2009). Comparison of morphological characteristics of some plum and prune cultivars of Iran. Scientific Research and Essays, 4(10): 992-996. 21. Shahi Gharelor, A., Zamani, Z., Fattahi Moghadam, M., Boozari, N. and Khadivi Khoob, A. (2011). Evaluation of genetic diversity in some cerasus sub-genus wild genotypes using plant vegetative and seed characteristics. Iranian Journal of Horticultural Science, 41(4): 359-373 (In Persian). 22. Sherman, W.B. and Rouse, R.E. (2001). Characterization of plums from the university of Florida breeding program. Proceedings of the Florida State Horticultural Society, 11: 30-32. 23. Zali, H. and Barati, A. (2020). Evaluation of selection index of ideal genotype (SIIG) in other to selection of barley promising lines with high yield and desirable agronomy traits. Journal of Crop Breeding, 12 (34): 93-104 (In Persian). [ DOI:10.29252/jcb.12.34.93] 24. Zali, H., Sofalian, O., Hasanloo, T., Asghari, A. and Hoseini, M. (2015). Appraising of drought tolerance relying on stability analysis indices in canola genotypes simultaneously, using selection index of ideal genotype (SIIG) technique: Introduction of new method. Biological Forum - An International Journal, 7(2): 703-711. 25. Zali, H., Sofalian, O., Hasanloo, T., Asghari, A. and Zeinalabedini, M. (2016). Appropriate strategies for selection of drought tolerant genotypes in canola. Journal of Crop Breeding, 78(20): 77-90 (In Persian).
|