Genetic diversity for agro-morphological characters and nutritional compositions of some local faba bean (Vicia faba L.) genotypes

Genetic diversity for agro-morphological characters and nutritional compositions of some local faba bean (Vicia faba L.) genotypes

This study was carried out in Mediterranean climate and under rainfed conditions in Turkey for a period of three years throughout the growing seasons of 2014/2015, 2015/2016 and 2016/2017. It was conducted in a randomized complete block experimental design (RCBD) with three replications. In present study, genetic diversity for agro-morphological characters and macro/ microelements were investigated in sixteen promising local faba bean genotypes originated from Turkey. According to the results of the study, mean grain yield varied from 2320 kg ha–1 (Tekirdağ-39) to 3130 kg ha–1 (Burdur-50). 100-grain weight and branches per plant had high heritability and genetic advance as a percentage of mean. As for path analysis; plant height, branches per plant and 100-grain weight had a major role in improving the grain yield of faba bean. Therefore, effective selection for mentioned traits can be made for increasing grain yield in faba bean. Wide diversity for macro and micronutrients in the studied local genotypes can be considered for improving new faba bean cultivars in Mediterranean climate conditions as well.

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  • Abdul Rahman SM (2018). Chemical composition and some functional properties of flour and isolated protein from mung bean seeds (Vigna radiate) cultivated in Iraq. Iraqi Journal of Agricultural Sciences 49 (3): 418-425.
  • Ahmad HB, Rauf S, Rafiq CM, Mohsin AU, Iqbal A (2014). Estimation of genetic variability in pea (Pisum sativum L.). Journal of Global Innovation in Agricultural and Social Science 2: 62-64. doi: 10.17957/jgiass/2.2.496
  • Abdelmula AA, Abuanja IK (2007). Genotypic responses, yield stability, and association between characters among some of Sudanese faba bean (Vicia faba L.) genotypes under heat stress. In: Proceeding of the Conference on International Agricultural Research for Devolopment; Witzenhausen, Germany. pp.1-7.
  • Alghamdi SS (2009). Chemical composition of faba bean (Vicia faba L.) genotypes under various water regimes. Pakistan Journal of Nutrition 8: 477-482. doi: 10.3923/pjn.2009.477.482
  • Ali EAAMO, Awadelkareem AM, Gasım S, Yousif NEA (2014). Nutritional composition and anti nutrients of two faba bean (Vicia faba L.) lines. International Journal of Advanced Research 2: 538-544.
  • Aziz AAHA, Osman AAM (2015). Variability, heritability and genetic advance infaba bean, Vicia faba L. International Journal of Research in Agriculture and Forestry 2: 42-45.
  • Badolay A, Hooda J, Malik B(2009). Correlation and path analysis in fababean (Vicia faba L.). Journal of Haryana Agronomy 25: 94-95.
  • Bakhiet MA, Rania AR, El-Said Raslan MA, Abdalla NG (2015). Genetic variability, heritability and correlation in some faba bean genotypes under different sowing dates. World Applied Sciences Journal 33: 1315-1324. doi: 10.5829/idosi. wasj.2015.33.08.15598
  • Baloch FS, Karaköy T, Demirbaş A, Toklu F, Özkan H et al. (2014). Variation of some seed mineral contents in open pollinated faba bean (Vicia faba L.) landraces from Turkey. Turkish Journal of Agriculture and Forestry 38: 591-602. doi: 10.3906/ tar-1311-31
  • Baloch K, Rizwan S, Mahmood K, Jan MH, Hussain J et al. (2017). Biochemical and trace elements composition of faba bean (ViciafabaL.) cultivated in Panjgur and Kech districts of Balochistan. Pure and Applied Biology 6: 981-988. doi: 10.19045/bspab.2017.600104
  • Bishop J, Potts SG, Jones HE (2016). Susceptibility of faba bean (Vicia faba L.) to heat stress during floral development and anthesis. Journal of Agronomy and Crop Science 202: 508-517. doi: 10.1111/jac.12172
  • Biswas N, Yadav S, Yadav S, Choudhary R, Saini N et al. (2020).Vigor difference during storage and germination in Indian mustard explained by reactive oxygen species and antioxidant enzymes. Turkish Journal of Agriculture and Forestry 44: 577-588. doi: 10.3906/tar-1909-48
  • Blum A, Lehrer W (1973). Genetic and environmental variability in some botanical characters of common vetch. Euphytica 22: 88- 97.
  • Bozokalfa MK, Yagmur B, Ilbi H, Esiyok D, Kavak S(2009). Genetic variability for mineral concentration of Eruca sativa L. and Diplotaxis tenuifolia L. accessions. Crop Breeding and Applied Biotechnology 9: 372-381.
  • Corleto A (1976). Genetic variability of quantative characteristic among types of Vicia sativa L. Rivista Di Agronomia. Ann. III. 4: 75-79.
  • Comstock RR, Robinson HF (1952). Genetic Parameters, Their Estimation and Scientific, Proc. 6th International Grassland Congress, Vol. 1. Washington, DC, USA: Natural. Publ. Co.
  • Fikreselassie M, Seboka H (2012). Genetic variability on seed yield and related traits of elite faba bean (Vicia faba L.) genotypes. Pakistan Journal of Biological Sciences 15: 380-385. doi: 10.3923/pjbs.2012.380.385
  • Gunathilake KGT, Herath T, Wansapala J (2016). Comparison of physicochemical properties of selected locally available legumes varieties (mung bean, cowpea and soybean). Potravinarstvo Scientific Journal for Food Industry 10 (1): 424-430.
  • Georgieva N, Nikolova I, Kosev V (2016). Evaluation of genetic divergence and heritability in pea (Pisum sativum L.). Journal of Bioscience and Biotechnology 5: 61-67.
  • Hamza FEA, Khalifa GE, Ahmed AAS (2017). Assesment of genotypic and phenotypic variability, heritability and genetic advanve for seed and related agrononic traits in faba bean (Vicia faba L.) genotypes in the Northern State, Sudan. Net Journal of Agricultural Science 5: 48-52.
  • Hefny M (2013). Use of genetic variability estimates and interrelationships of agronomic and biochemical characters for selection of lupin genotypes under different irrigation regimes. African Crop Science Journal 21: 97-108.
  • Hendawey M, Younes A (2013). Biochemical evaluation of some faba bean cultivars under rainfed conditions at El-Sheikh Zuwayid. Annals of Agricultural Sciences 58: 183-193. doi: 10.1016/j. aoas.2013.07.010
  • Karaca AC, Low N, Nickerson M (2011). Emulsifying properties of chickpea, faba bean, lentil and pea proteins produced by isoelectric precipitation and salt extraction. Food Research International 44: 2742-2750.
  • Karaköy T, Erdem H, Baloch, FS, Toklu F, Eker S et al. (2012). Diversity of macro and nicronutrients in the seeds of lentil landraces. The Scientific World Journal 2012: 1-9. doi: 10.1100/2012/710412
  • Khan RA, Mahmud F, Reza A, Mahbub M, Shirazy J et al. (2017). Genetic diversity, correlation and path analysis for yield and yield components of pea (Pisum sativum L.). World Journal Agricultural Sciences 13: 11-16. doi: 10.5829/idosi. wjas.2017.11.16
  • Kumar P, Das R, Bishnoi S, Vinay S (2017). Inter-correlation and path analysis in faba bean (Vicia faba L.). Electronic Journal of Plant Breeding 8: 395-397. doi: 10.5958/0975-928x.2017.00059.x
  • Mulualem T, Dessalegn T, Dessalegn Y (2013). Genetic variability, heritability and correlation in some faba bean genotypes (Vicia faba L.) grown in North Western Ethiopia. International Journal of Genetics and Molecular Biology 5: 8-12. doi: 10.5897/ijgmb12.006
  • Ozcan K, Açıkgoz N (1999). A statistical analysis program for population genetics. In: 3th The symposium of Computer Application for Agriculture; Adana, Turkey.
  • Sayar MS (2014). Path coefficient and correlation analysis between seed yield and its affecting components in common vetch (Vicia sativa L.). Turkish Journal Agriculture and Natural Science (Special Issue) 1: 596-602.
  • Seco-Gesto EM, Moreda-Pineiro A, Bermejo-Barrera A, BermejoBarrera P (2007). Multi-element determination in raft mussels by fast microwave-assisted acid leaching and inductively coupled plasma-optical emission spectrometry. Talanta 72: 1178-1185. doi: 10.1016/j.talanta.2007.01.009
  • Sheelamary S, Shivani (2015). Genetic variability, heritability andcorrelation of faba bean (Vicia faba L.) International Journal of Advanced Technology in Engineering and Science 3: 48-51.
  • Saxesena RR, Vidyakar V, Vishwakarma MK, Yadav PS, Meena M et al. (2014). Genetic variability and heritability analysis for some quantitative traits in field pea (Pisum sativum L.). The Bioscan Journal 9: 895-898.
  • Sharifi P (2014). Correlation and path coefficient analysis of yield and yield component in some of broad bean (Vicia faba L.) genotypes. Genetika 46: 905-914. doi: 10.2298/gensr1403905s
  • Sharifi P(2015). Genetic variation for seed yield and some of agromorphological traits in faba bean (Vicia faba L.) genotypes. Acta Agriculturae Slovenica 105: 73-83. doi: 10.14720/aas. 2015.105.1.08
  • Sharma PP, Vyas M, Meghawal DR (2017). Estimation of genetic variability and correlation analysis in field pea (Pisum sativum L.) genotypes. Journal of Plant Development Science 9: 53-56.
  • Singh RK, Chaudhary BD (1985). Biometrical Methods in Quantitative Genetic Analysis. New Delhi, Ludhiana, India: Kalyani Publication, pp. 39-78.
  • Talukder Z, Anderson E, Miklas P, Blair MW, Osorno J et al. (2010). Genetic diversity and selection of genotypes to enhance Zn and Fe content in common bean. Canadian Journal of Plant Science 90: 49-60. doi: 10.4141/CJPS09096
  • Tuna GS, Yücel G, Aşçioğul TK, Ateş D, Eşiyok D et al. (2020). Molecular cytogenetic characterization of common bean (Phaseolus vulgaris L.) accessions. Turkish Journal of Agriculture and Forestry 44: 612-630.
  • Türkeri M (2016). Determining some morphological and agronomical characters of broad bean (Vicia faba L.) landraces collected from Turkey. PhD, Çukurova University, Adana, Turkey (in Turkish with an abstract in English).
  • Yazar A, Mart D, Çolak YB, Kaya ÇI (2017). Yield response of faba bean to various irrigation strategies in the Mediterranean region. International Journal of Research in Agriculture and Forestry 4: 9-19.
  • Zia-Ul-Haq M, Ahmad S, Qayum M, Ercişli S (2013). Compositional studies and antioxidant potential of Albizia lebbeck (L.) Benth. Pods and seeds. Turkish Journal of Biology 37: 25-32. doi: 10.3906/biy-1204-38
Turkish Journal of Agriculture and Forestry-Cover
  • ISSN: 1300-011X
  • Yayın Aralığı: Yılda 6 Sayı
  • Yayıncı: TÜBİTAK
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