Research Articles
Vol. 13 No. 3 (2026)
A morphological and molecular taxonomic study of the species Triticum durum L. and Triticum aestivum L. (Poaceae) cultivated in Nineveh Governorate, Iraq
Department of Biology, College of Education for Women, University of Mosul, Mosul, Iraq
Department of Biology, College of Education for Women, University of Mosul, Mosul, Iraq
Center for Arid Farming and Conservation Agricultural Research, University of Mosul, Mosul, Iraq
Abstract
The present research involved studying the morphological and molecular characteristics of six durum and soft wheat varieties of the genus Triticum L., belonging to the grass family Poaceae and cultivated in Nineveh Governorate. These included three durum wheat varieties (Triticum durum L.) (Hawler 4, Kuya 18 and Buhouth 22) and three soft wheat varieties (Triticum aestivum L.) (Kalar, Maarouf and Hassad). The aim was to establish reliable taxonomic guidelines based on the morphological and molecular characteristics of the studied species. The varieties were compared morphologically, demonstrating that they possessed favourable characteristics for isolating the studied varieties. These characteristics included vegetative traits such as plant height, flag leaf dimensions and colour and ligule shape; reproductive traits such as spike and awn length, glume length and surface covering and seed dimensions and lint density. The reproductive traits proved to be the most reliable taxonomically, as the presence of hairs on the glume distinguished coarse from soft wheat. For molecular diagnosis, the rbcL gene produced a uniform band at approximately 600 bp and the analysis revealed a close relationship between the varieties Hawler 4 and Buhouth 22 (PX120105.1, PX120107.1; genetic distance 0.0000) respectively, which were of the species T. durum L. and between the varieties Maarouf and Hassad (PV953212.1, PX120103.1; genetic distance 0.0000) respectively, which were of the species T. aestivum L., while the Kalar variety diverged into an independent branch relative to the other cultivars of its species T. aestivum (genetic distance 0.0501). Incorporating the reproductive morphological characters with the rbcL-based molecular identification of the Iraqi durum and soft wheat germplasm revealed a practical key for their identification; however, highly polymorphic markers are needed to accurately differentiate between the closely related cultivars and to support breeding and conservation of the germplasm.
References
- 1. Spanic V, Lalic Z, Berakovic I, Jukic G, Varnica I. Morphological characterisation of 1322 winter wheat (Triticum aestivum L.) varieties from the EU referent collection. Agriculture. 2024;14(4):551. https://doi.org/10.3390/agriculture14040551
- 2. Mohammed-Ameen MK, Hussein Minati MO, Hamza Abbas MO. Morphogenetic identification, description and pathogenicity of novel pathogens on Iraqi wheat plant (Triticum aestivum) causing head blight and crown rot diseases. Biodiversitas. 2021;22(5):2917–26. https://doi.org/10.13057/biodiv/d220565
- 3. Bianconi ME, Hackel J, Vorontsova MS. A nuclear phylogenomic tree of grasses (Poaceae) recovers current classification despite gene tree incongruence. New Phytol. 2025;245(2):1–17. https://doi.org/10.1111/nph.20263
- 4. Malik AA, Muhammad A, Al-Husseini SA. Using morphological characterisation to differentiate between varieties based on the IPGRI guide. Syrian J Agric Res. 2023;10(4):334–44.
- 5. Al-Darraji MHG. A taxonomic study of the wheat gall nematode Anguina tritici and the wheat cyst nematode Heterodera avenae in central and southern Iraq and their integrated management [dissertation]. Basrah: University of Basrah; 2023.
- 6. Grote U, Fasse A, Nguyen TT, Erenstein O. Food security and the dynamics of wheat and maize value chains in Africa and Asia. Front Sustain Food Syst. 2021;4:617009. https://doi.org/10.3389/fsufs.2020.617009
- 7. Alwan SM, Kawthar N. The effect of temperature and rainfall on the production of wheat and barley crops in the governorates of Diyala and Maysan. In: Proceedings of the Second International Scientific Conference. Iraqi Academics Syndicate, Centre for Strategic Academic Development and Salahaddin University, College of Basic Education; 2020.
- 8. Negeri BG, Xiuguang B. Wheat yield gaps and their implications for food security in East Africa: a comprehensive analysis of factors and consequences. Cogent Food Agric. 2025;11(1):2534434. https://doi.org/10.1080/23311932.2025.2534434
- 9. Rauf M, Munir M, Mahmood-ul-Hassan, Ahmad M, Afzal M. Performance of wheat genotypes under osmotic stress at germination and early seedling growth stage. Afr J Agric Res. 2007;2(6):971–5.
- 10. Jobouri JMA, Abdalkarim PHA. Genotype × environment interaction for soft wheat (Triticum aestivum L.) varieties over diverse Iraqi environments. Syrian J Agric Res. 2021;8(1):58–73.
- 11. Martín-Gómez JJ, Rewicz A, Goriewa-Duba K, Wiwart M, Tocino Á, Cervantes E. Morphological description and classification of wheat kernels based on geometric models. Agronomy. 2019;9(7):399. https://doi.org/10.3390/agronomy9070399
- 12. Ezzat MA, Alotaibi NM, Soliman SS, Sultan M, Kamara MM, Abd El-Moneim D, et al. Molecular and agro-morphological diversity assessment of some soft wheat genotypes and their crosses for drought tolerance. PeerJ. 2024;12:e18104. https://doi.org/10.7717/peerj.18104
- 13. Mandakh A, Baasansuren O, Munkhbat T, Yadamsuren M. Wheat varietal identification study using common quality and disease PCR markers. Mong J Agric Sci. 2020;30(2):20–4. https://doi.org/10.5564/mjas.v30i2.1487
- 14. Al-Talab NN, Bashi AD, Esho KB, Al-Mathidy AM. Molecular classification of some species of family Fabaceae using RAPD markers. SABRAO J Breed Genet. 2025;57(4):1491–500. https://doi.org/10.54910/sabrao2025.57.4.14
- 15. Tilley M. PCR amplification of wheat sequences from DNA extracted during milling and baking. Cereal Chem. 2004;81(1):44–7.
- 16. AL-Taee AF, Al-Hatem JY. The new molecular classification for the Amaranthus albus plant in Iraq. Tikrit J Agric Sci. 2025;25(2):50–9. https://doi.org/10.25130/tjas.25.2.5
- 17. Al-Mathidy A, Shehab MO, Al-Doskey ZA. Rosa L. species identification using the rbcL gene in the Kurdistan Region, Iraq. SABRAO J Breed Genet. 2025;57(2):618–27. https://doi.org/10.54910/sabrao2025.57.2.20
- 18. Tamura K, Nei M. Estimation of the number of nucleotide substitutions in the control region of mitochondrial DNA in humans and chimpanzees. Mol Biol Evol. 1993;10(3):512–26.
- 19. Nei M, Kumar S. Molecular evolution and phylogenetics. Oxford: Oxford University Press; 2000. https://doi.org/10.1093/oso/9780195135848.001.0001
- 20. Mahmud RH. Morphological characteristics of grains and plants in some types of wheat Triticum sp. [master's thesis]. Mosul: University of Mosul, Faculty of Education; 2004.
- 21. Khader AH, Majid R, Aqeel YH. Using morphological characterisation to distinguish wheat varieties based on the UPOV index. Jordan J Agric Sci. 2017;13(3):839–51.
- 22. Kurmanbayeva M, Sarsenbek B, Kusmangazinov A, Karabalayeva D, Yerezhepova N. Anatomical and morphological features and productivity of six perennial wheat varieties in the agroecological conditions of the Almaty region, Kazakhstan. BIO Web Conf. 2024;100:04048. https://doi.org/10.1051/bioconf/202410004048
- 23. Li X, Yang Y, Henry RJ, Rossetto M, Wang Y, Chen S. Plant DNA barcoding: from gene to genome. Biol Rev Camb Philos Soc. 2014;90(1):157–66. https://doi.org/10.1111/brv.12104
- 24. Abouseada HH, Al-Safa HM, Teleb SS, Abdelfattah B, Mohamed E. Genetic diversity analysis in wheat cultivars using SCoT and ISSR markers, chloroplast DNA barcoding and grain SEM. BMC Plant Biol. 2023;23(193):15–2. https://doi.org/10.1186/s12870-023-04196-w
- 25. Muslih BA, Almehemdi A. Effect of tillage systems on growth and yield of five cultivars of soft wheat. Iraqi J Desert Stud. 2018;8(1):10–5.
- 26. Hamed SH, Al-Baker AA, Muttalib Alhayali MA. Estimating some genetic parameters of growth, grain yield, yield components and quality traits in sweetcorn and studying their effects on quail feed. IOP Conf Ser Earth Environ Sci. 2025;1487(1):012079. https://doi.org/10.1088/1755-1315/1487/1/012079
- 27. Fouad HM, Bakry HS, Soltan HA. Morphological and molecular characterisation of some soft wheat (Triticum aestivum L.) genotypes. SVU-Int J Agric Sci. 2024;6(3):155–71. https://doi.org/10.21608/svuijas.2024.306534.1382
Downloads
Download data is not yet available.