USE OF EXTRACT FROM DRY MARIGOLD (Tagetes spp.) FLOWERS TO PRIME EGGPLANT (Solanum melongena L.) SEEDS

Kazim Mavi

Mustafa Kemal University, Antakya, Turkey



Abstract

Although chemical priming agents have been successfully used to improve seed germination, emergence and seedling quality in different plant species, still they are not yet useful for organic cultivation. Marigold is a multipurpose plant and rich source of lutein and gallic acid, to be explored as an organic priming agent. The purpose of this study was to identify an organic priming agent for organic growing and to develop appropriate methods by using two different species of marigold (Tagetes patula L. and T. erecta L.). Herbal tea obtained from the dried flower of marigold was used as a priming agent for eggplant (Solanum melongena L) cv. Pala seeds. Hydropriming and control seeds were compared with organic priming (T. patula and T. erecta) for germination percentage, mean germination time, germination rate, two different emergence tests, seedling height, seedling fresh and seedling dry weights. Data obtained from the application of organic
priming (T. patula and T. erecta) showed a difference in both the germination (82 and 80%), and the emergence (73 and 76%) from Controls and Hydropriming. Seeds emerged in, which unprimed in 52 and 39% respectively, when primed with T. patula, emerged in 73 and 56% respectively. The mean germination time and the mean emergence time were shortened compared with Controls and Hydropriming. MET decreased in 1 cm and 2.5 cm depth sowing from 14.0 and 16.1 days than 10.3 and 11.9 days in Emergence-1 and 10.4 and 10.2 days in Emergence 2, respectively. Seedling quality characteristics were examined in the seedling height, the seedling fresh and dry weights of T. patula and T. erecta applications were also statistically significant. This is the first report which results showed that marigold species can be used as a potential organic priming agent.

Keywords:

flower seed priming, seed germination, emergence, aubergine, marigold

Baninasab B., Baghbanha M.R., 2013. Influence of salicylic acid pre-treatment on emergence and early seedling growth of cucumber (Cucumis sativus) under salt stress. Int. J. Plant Prod., 7(2), 187–206.
Basra S.M.A., Iftikhar M.N., Afzal I., 2011. Potential of moringa (Moringa oleifera) leaf extract as priming agent for hybrid maize seeds. Int. J. Agri. Biol., 13, 1006–1010.
Brocklehurst P.A., Dearman J., 1983. Interactions between seed priming treatments and nine seed lots of carrots, celery and onion. Ann. Appl. Biol., 102, 577–584.
Côme D., 1983. Post harvest physiology of seeds as related to quality and germinability. In: Post harvest physiology and crop preservation, M. Lieberman (ed.). Plenum Press, New York, 165–190.
Coolbear P., Grierson D., 1979. Studies on the changes in the major nucleic acid components of tomato seeds (Lycopersicon esculentum Mill.) resulting from osmotic presowing treatment. J. Exp. Bot., 30(119), 1153–1162.
Demir I., Ellialtıoglu S., Tıpırdamaz R., 1994. The effect of different priming treatments on reparability of aged eggplant seeds. Acta Hort., 362, 205–212.
Demir I., Mavi K., 2004. The effect of priming on seedling emergence of differentially matured watermelon (Citrullus lanatus (Thunb.) Matsum and Nakai) seeds. Sci. Hort., 102, 467–473.
Demir N., Dural B., Yıldırım K., 2006. Effect of seaweed suspansions on seed germination of tomato, pepper and aubergine. J. Biol. Sci., 6(6), 1130–1133.
Demir I., Light M.E., van Staden J., Kenanoglu B.B., Celikkol T., 2009. Improving seedling growth of unaged and aged aubergine seeds with smoke-derived butenolide. Seed Sci. Tech., 37, 255–260.
Ellis R.H., Roberts E.H., 1980. Towards a rational basis for testing seed quality. In: Seed Production, P.D. Hebblethwaite (ed.). London, Butterworths, 605–635.
Groot S.P.C., van der Wolf J.M., Jalink H., Langerank C.J., van den Bulk R.W., 2004. Challenges for the production of high quality organic seeds. Seed Test. Int., 127, 12–15.
Halmer P., Groot S.P.C., Birnbaum Y., Groeneveld R., Swaay N., 2004. Commercial organic pelleting and priming treatments for sugarbeet seed. In: Proceeding of the First World Conferance on Organic Seed, Van Bueren L., Ranganathan R., Sorensen N. (eds). July 5–7, Rome.
International Seed Testing Association (ISTA), 2008. International Rules for Seed Testing, Bassersdorf, Switzerland.
Kester S.T., Geneve R.L., Houtz R.L., 1997. Priming and accelerated ageing affect L-isoaspartylmethyl-transferase activity in tomato seed. J. Exp. Bot., 48(309), 943–949.
Kibinza S., Bazin J., Bailly C., Farrant J.M., Corbineau F., El-Maarouf-Bouteau H., 2011. Catalase is a key enzyme in seed recovery from ageing during priming. Plant Sci., 181(3), 309–315.
Liu G., Wang Q., Liu X., 2011. Promotive effect of Nostoc commune Vauch. water extract on seed germination of Gentiana dahurica Fischer. Grass. Sci., 57(2), 116–118.
Maguire J.D., 1962. Speed of germination-aid in selection and evaluation for seedling emergence and vigor. Crop Sci., 2, 176–177.
Matysiak K., Kaczmarek S., Krawczyk R., 2011. Influence of seaweed extracts and mixture of humic and fulvic acids on germination and growth of Zea mays L. Acta Sci. Pol., Agricultura, 10(1), 33–45.
Mavi K., Ermis S., Demir I., 2006. The effect of priming on tomato rootstock seeds in relation to seedling growth. Asian J. Plant Sci., 5(6), 940–947.
Mavi K., Karaca F., Yetişir H., 2010a. Effects of different priming techniques on germination and seedling emergence in naturally aged melon seeds. Proceeding of 8th Vegetable Symposium, 273–277.
Mavi K., Light M.E., Demir I., van Staden J., Yasar F., 2010b. Positive effect of smoke-derived butenolide priming on melon seedling emergence and growth. New Zeal. J. Crop Hort. Sci., 38(2), 147–155.
Mehta D.K., Kanwar H.S., Thakur A.K., Thakur K.S., 2010. Influence of organic seed priming on germination and seedling quality in bell pepper (Capsicum annuum L.). J. Hill Agri., 1(1), 85–87.
Patade Y.V., Maya K., Zakwan A., 2011. Chemical seed priming as a simple technique to impart cold and salt stress tolerance in Capsicum. J. Crop Imp., 25, 497–503.
Sivritepe H.Ö., 2000. The effects of osmotic conditioning treatments with seaweed extract on viability of pepper seeds. Proceeding of 3rd Vegetable Symposium. Isparta, 482–486.
Sivritepe H.Ö., Sentürk B., 2011. A comparison of hydro and halopriming with dehydration treatments for physiological enhancement of pepper seeds. J. Agr. Fac. Uludağ Univ., 25(1), 53–64.
Szopinska D., 2011. Enhancement of Zinnia seeds by osmopriming and grapefruit extract treatment. Acta Sci. Pol., Hortorum Cultus, 10(2), 33–47.
Thirusenduraselvi D., Jerlin R., 2007. Effect of pre-germination treatments on the emergence percentage of bitter gourd cv. CO 1 seeds. Tropical Agri. Res. Ext., 10, 88–90.
Trigo M.F.O., Trigo L.F.N., 1999. Effect of priming on germination and on vigor of eggplant (Solanum melongena L.) seeds. Rev. Bras. de Sem., 21(1), 107–113.
Vasudevan P., Kashyap S., Sharma S., 1997. Tagetes: A multipurpose plant. Bioresource Tech., 62, 29–35.
Xu L.W., Wang G.Y., Shi Y.P., 2011. Chemical constituents from Tagetes erecta Flowers. Chem. Nat. Comp., 47(2), 281–283.
Yıldırım E., Güvenç İ., 2005. The effect of seaweed extract treatments on germination of leek seeds under salinity. Bahçe, 34(2), 83–87.
Download

Published
2014-08-31



Kazim Mavi 
Mustafa Kemal University, Antakya, Turkey



License

 

Articles are made available under the conditions CC BY 4.0 (until 2020 under the conditions CC BY-NC-ND 4.0).
Submission of the paper implies that it has not been published previously, that it is not under consideration for publication elsewhere.

The author signs a statement of the originality of the work, the contribution of individuals, and source of funding.

 


Most read articles by the same author(s)