Seed priming with bio-priming improves stand establishment, seed germination and salinity tolerance in canola cultivar (Hayola 401)
الموضوعات :Mohammadreza Mousavi 1 , Heshmat Omidi 2
1 - Department of Agronomy and Seed Science, College of Agricultural Sciences, Shahed University, P.O.Box 18151/159, Tehran, Iran University
2 - Department of Agronomy and Seed Science, College of Agricultural Sciences, Shahed University, P.O.Box 18151/159, Tehran, Iran University
الکلمات المفتاحية: germination, Salinity, priming, Hayola 401, Bacillus subtilis bacteria,
ملخص المقالة :
This research has been done to examine the effect of bio-priming on germination parameters related to seeds of canola cultivar (Hayola 401) under high salinity as factorial in seed laboratory of Shahed University based on a Completely Randomized Design (CRD) in three replications. Experimental factors included bio-priming with bacteria strains inoculation at three levels: seed inoculation with water as a control, inoculation of seed with Bacillus subtilis bacteria, inoculation of seed with Macrophomina phaseolina fungus, and combination of Bacillus subtilis bacteria and Macrophomina phaseolina fungus. Salinity treatment was applied at four levels (0, 2.5 dS.m-1, 5 dS.m-1, and 7.5 dS.m-1). Results of variance analysis showed that the effect of priming and high salinity was meaningful for all characteristics. The highest length measurement for the radicle and relative content of leaf water was obtained in salinity 2.5 dS.m-1. The maximum root and seedling length and length matrix of seedling vigor was related to fungus priming in bacteria and high salinity as 7.5 dS.m-1. Seeds primed with fungi under high salinity 2.5 dS.m-1 produced the highest mean dry weight of seedlings, germination percentage, and the mean germination. Also, the results included the highest mean germination period, germination speed factor, and germination rate for bacteria priming in the salinity control. Generally, according to the results, using Bacillus subtilis bacteria and Macrophomina phaseolina fungus could improve germination index and modify the effects of salinity.
Akhtar, S. S., M. N. Andersen, M. Naveed, Z. A. Zahir, and F. Liu. 2015. 'Interactive effect of biochar and plant growth-promoting bacterial endophytes on ameliorating salinity stress in maize'. Functional Plant Biology, 42 (8): 770-781.
Alvarez S. and M.J. Sanchez-Blanco. 2014. ̍Long-term effect of salinity on plant quality, water relations, photosynthetic parameters, and ion distribution in Callistemon citrinus. ̍Plant Biology, 16: 757–764.
Ataei Somagh, H., S. M. Mousavi, H. Omidi, E. Mohammadian, and M. Hemmati. 2016. 'Canola seed germination and seedling growth in response to the saline condition and bio-priming'. Iranian Journal of Plant Physiology, 7 (4), 2149- 2156.
Ellis, R.H. and E. H. Roberts. 1981.'The quantification of aging and survival in orthodox seeds'. Seed Science and Technology, 9: 377-409.
Ghasemi Golezani, K. and B. Dalil. 2012.'Germination and seed vigor tests'. Publications University Jahad Mashhad.
Hameed A., T. Hussain, S. Gulzar, I. Aziz, B. Gul and M.A. Khan. 2012. 'Salt tolerance of a cash crop halophyte Suaeda fruticosa: Biochemical responses to salt and exogenous chemical treatments ̍. Acta Physiological Plantarum, 34: 2331–2340.
Humber, R.A. 2012. 'Identification of entomopathogenic fungi. In: Lacey, L.A. (Ed.), Manual of Techniques in Invertebrate Pathology'. Academic Press, USA, pp. 151– 187.
ISTA. 2010. International rules for seed testing. International seed testing association (ISTA).
Omidi H, H. A Naghdi Badi, and L. Jafarzadeh. 2015. 'Seeds of medicinal plants and crops'. Shahed University Press.
Riazi, A., F. SHARIFZADEH, and AS Ahmadi. 2008.'Osmo-priming effect on germination millet forage'. Research and development in agriculture and horticulture. N. 77. Pp. 80-72.
Rodrigues Neto, J., V. A.Malavolta Júnior, O. Victor, O.'Meio simples para o isolamento e cultivo de Xanthomonas campestris pv. citri tipo B'. Summa Phytopathologica, v. 12, p. 16, 1986.
Russo, M.L., S. A. Pelizza, M. N. Cabello, S. A. Stenglein and A. C. Scorsetti. 2015. 'Endophytic colonisation of tobacco, corn, wheat and soybeans by the fungal entomopathogen Beauveria bassiana (Ascomycota, Hypocreales)'. Biocontrol Sci. Techn. 25, 475–480.
|
Scott, S. J., Jones, R. A. and Willams, W. A. 1984.'Review of data analysis methods for seed germination'. Crop Science, 24: 1192-1199.
Singh, J. Kumar, S. Singh, V.P. Singh, and S.M. Prasad. 2015. ̍Roles of osmoprotectants in improving salinity and drought tolerance in plants: A review ̍. Reviews in Environmental Science and Biotechnology, 14(3): 407–426.
Singh, J. and P. Sharma. 2016. 'Comparative effects of soil and water salinity on oil quality parameters of Brassica juncea'. Journal of Oilseed Brassica, 1 (1): 29-37.