Effect of Different Storage Periods and Medium on Germination and Seedling Parameters of Faba Bean (Vicia faba L.)

Yazarlar

DOI:

https://doi.org/10.24925/turjaf.v12is3.2710-2717.7277

Anahtar Kelimeler:

Faba bean- germination tests- storage medium- Gloria - storage time

Özet

Germination is the first stage of a plant’s life. The seeds of grain legumes are used both as food and as seedlings. The vitality of the seeds is crucial for both uses. This study was conducted to determine the effect of storing seeds of the Lara variety of Faba bean (Vicia faba L.), harvested in 2023, in different periods (4, 6, 8, 10 and 12 months) and different storage medium (paper bag, plastic bag, glass jar and plastic bottle) on their biological value. The experiment was set up in a completely randomized design with three replications. Germination was done in 2 different materials (sand and paper) in room conditions. Germination speed, germination power, length of plumula and radicle, dry matter of them, seedling vigour index, allometric coefficient, germination energy were observed. On the 4th day, which is considered in determining the germination rate for faba beans, no germination value was determined in any process. Germination power values varied between 72.7% and 97.3%. The highest germination value was obtained from seeds stored for 8 and 10 months. The highest value was recorded in plumula and root length values in 12 and 8-month-old stored seeds, respectively. It was determined that storage medium did not have a single effect on the observed measurements for these experiments. However, statistical differences between storage period and storage material interactions were found to be significant. The statistical differences between storage period and storage material interactions were found to be significant. As a result, it was concluded that the germination rate of the faba bean was early on the 4th day, the counting day, and this value should be studied. It has been concluded that the loss of germination power is very low in about 1 year of storage of faba bean, which have strong germination ability.

Referanslar

Abbasi-Khalaki, M., Ghorbani, A. & Dadjou, F. (2019). Influence of Nano-Priming on Festuca ovina Seed Germination and Early Seedling Traits under Drought Stress, in Laboratory Condition. ISSN: 2476-6909; Ecopersia . 2019;7(3):133-139.

Anon., (2022). Bitki Bazlı Gıda Endüstrisi ve Yenilikçi Ürünler (Değirmenci, mayıs-haziran 2022; s 69-70) https://millermagazine.com/tr/blog/bitki-bazl-gda-endustrisi-ve-yenilikci-urunler-4558, erişim: 23 Mayıs 2022.

Anon., (2023). https://www.resmigazete.gov.tr/eskiler/2008/01/ 20080118-7.htm. Erişim:16.09.2024

Aziz, T. & Peksen, E. (2020). Seed priming with gibberellic acid rescues chickpea (Cicer arietinum L.) from chilling stress. Acta Physiologiae Plantarum (2020) 42:139, https://doi.org/10.1007/s11738-020-03124-x

Boğusoğlu, C. (2022). Bitki bazlı protein pazarı. Değrimenci dergisi, ocak-şubat 2022, 134 sayı https://millermagazine.com/tr/blog/bitki-bazl-protein-pazar-4556, Bakliyat Ticaret Direktörü Delta Energy Trading SA.

Damalas, C. A., Koutroubas, S. D. & Fotiadis, S. (2019). Hydro-Priming Effects on Seed Germination and Field Performance of Faba Bean in Spring Sowing Agriculture 2019, 9, 201; doi:10.3390/agriculture9090201

Dhull, S.B., Kidwai, M.K., Noor, R., Chawla, P. (2024). Areview of nutritioanl profile nd proccessing of faba bean (Vicia faba L.). Legume Science. 2022;4:e129. 1 of 13. https://doi.org/10.1002/leg3.129

Farooq, M., Basra, S. M. A., Ahmad, N. & Hafeez, K. (2005). Thermal Hardening: A new seed vigor enhancement tool in rice. Journal of Integrative Plant Biology.

Floresa, F., Hyblb, M., Knudsenc, J.C., Margetd, P., Muele, F., Nadalf, S., Naritsg, L., Raffiotd, B., Sassh, O., Solisi, J., Winklerj, J., Stoddardk, F. L. & Rubiales, D. (2013). Adaptation of spring faba bean types across European climates. Field Crops Research 145 (2013) 1–9 dx.doi.org/10.1016/j.fcr.2013.01.022

Farooq, M., Basra, S.M.A., Ahmad, N. and Hafeez, K. (2005). Thermal Hardening:A new seed vigor enhancement tool in rice. Journal of İntegrative Plant Biology. Formerly Acta Botanica Sinica. 47(2):187-193. DOI: 10.1111/j.1744-7909.2005.00031.x

Finch-Savage, W.E. & Bassel, G. (2022). Seed vigour and crop establishment: Extending performance beyond adaptation. J. Exp. Bot. 2016, 67, 567–591.)Martineau-Côté, D., Achouri, A., Karboune, S. and L’Hocine, L. Faba Bean: An Untapped Source of Quality Plant Proteins and Bioactives. Nutrients 2022, 14(8), 1541; https://doi.org/10.3390/nu14081541

Geren, H. ve Kavut, Y. T. (2020). Farklı Depolama Ortamı ve Sıcaklıkların Kinoa (Chenopodium qinoa Willd.) Tohumlarında Çimlenme ve Sürme Oranı Üzerine Etkisi Iğdır Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 10(3): 2180-2190, 2020. DOI: 10.21597/jist.717061

Gotor, A. A. & Marraccini, E. (2022). Innovative Pulses for Western European Temperate Regions:A Review. Agronomy 2022,12,170. https://doi.org/10.3390/agronomy12010170

Kevseroğlu, K. (2000). Tarla Tarımı 1 (Genel İlkeler). OMÜ Ziraat Fak. Ders Kitabı no:36.

Khan, M. A. H., Mia, A. B., Quddus, A., Sarker, K. K., Rahman, M., Skalicky, M., Brestic, M., Gaber, A., Alsuhaibani, A. M. & Hossain, A. (2022). Salinity-Induced Physiological Changes in Pea (Pisum sativum L.): Germination Rate, Biomass Accumulation, RelativeWater Content, Seedling Vigor and Salt Tolerance Index. Plants 2022, 11, 3493. https://doi.org/10.3390/plants11243493

Oğuz, G. ve Bozoğlu, H. (2022). Farkli Ortam Sıcaklığı Ve Bekletme Süresinin Bakla (Vicia faba L.) ‘nın Çimlenme Yeteneğine Etkisi. ISPEC International 1. Agriculture Research Congress, p 247-254. https://doi.org/10.21566/tarbitderg.280389

Saleh, H. M., Hassan, A. A., Mansour, E. H., Fahmy, F. A., El-Fath, A., El-Bedawey, A., (2019). Melatonin, phenolics content and antioxidant activity of germinated selected legumes and their fractions. Journal of the Saudi Society of Agricultural Sciences. Journal of the Saudi Society of Agricultural Sciences 18 (2019) 294–301). DOI:10.1016/j.jssas.2017.09.001

Santos, W. F. G, .Junior, D. B. S., Gama, A. T., Costa, C.A. & Alves, É. E. (2024). Storability of landrace fava bean seeds in different packaging materials. Ciência Rural, v.54, n.5, 2024. http://doi.org/10.1590/0103-8478cr20210774

Sidding, A. M. A. & Idris, A. Y. (2015). Effev-ct of seed size and sowing depth on germination and some growth paremeters of faba bean (Vicia faba L.). Agricultural and Biological Sciences Journal Vol 1, no 1, pp1-5. http://www.publicscienceframework.org/journal/absj

Sivritepe H. Ö. (2011). Tohum Canlılığının Değerlendirilmesi alatarım 2011, 10 (2): 94-105, 94. chrome-extension://efaidnbmnnnibpcajpcglclefindmkaj/https://arastirma.tarimorman.gov.tr/alata/Belgeler/alatarim/alatarim020_2011_12.pdf

Şehirali, S. ve Yağcılar, Ö. (2011). Tohumluk ve Teknoliojisi. S.528.

Wei, X., Wanasundara, J. P.D., & Shand, P. (2022). Short-term germination of faba bean (Vicia faba L.) and the effect on selected chemical constituents. Applied Food Research 2 (2022) 100030.

Zahedifar, M. & Zohrabi, S. (2016). Germination and seedling characteristics of drought-stressed corn seed as influenced by seed priming with potassium nano-chelate and sulfate fertilizers Acta agriculturae Slovenica. 107 - 1. marec 2016 str. 113 – 128. DOI:10.14720/aas.2016.107.1.12

Yayınlanmış

2024-12-25

Nasıl Atıf Yapılır

Bozoğlu, H., & Aybey, Z. (2024). Effect of Different Storage Periods and Medium on Germination and Seedling Parameters of Faba Bean (Vicia faba L.). Türk Tarım - Gıda Bilim Ve Teknoloji Dergisi, 12(s3), 2710–2717. https://doi.org/10.24925/turjaf.v12is3.2710-2717.7277