Germination Response of Juniperus procera Seed to Temperature and Pre-sowing Treatments
Abstract
Juniperus procera is an indigenous tree species of Ethiopia that has high economic and ecological importance. Propagation of seedlings had poor germination due to dormancy. Enhancing the germination of Indigenous trees particularly, Juniperus procera seeds is the challenge encountered by nurseries. This study was conducted in the laboratory of the Central Ethiopia Forestry Development Center, with the aim to investigate the effect of seed pre-pretreatments (soaking in cold water for 24 hours, scarification, soaking in hot water for10 minutes, and no seed pre-treatment) and temperature regimes (20℃, 30℃, 40℃, and room temperature) on germination. Twenty-five quality seeds per treatment were sown on a petri dish incubated under temperature regimes using a completely randomized design with four replicates. Germination starting and closing dates, germination period, percentages, mean germination time and index were calculated and analysis of variance was done. The result of ANOVA revealed a significant (P<0.05) effect of pre-treatments and temperature regimes on seed germination closing dates, period, percentage and index over the control. There was a non-significant effect of temperature on germination starting and mean germination time. There was also a non-significant combined effect of pretreatments and temperature on the germination period. Among pre-treatments, scarification achieved the best germination and from temperature regimes, 20℃ attained the best result over the other treatments. The highest germination percentage (74%) was obtained under 20℃ with scarification. The lowest germination percentage (18 %) was recorded under the control at 30℃. No germination was observed under 40℃. The shortest germination starting, closing dates and period were obtained under 20℃ with scarification. The lowest mean germination time and the greatest germination index were recorded under 20℃ with scarification. Compared to the control, almost all pre-treatments and temperature regimes increased germination with decreasing temperature regimes. Hence, in raising Juniperus seeds, it is recommended to use scarification under 20℃.
Downloads
References
Amoakoh, O. A., Nortey, D. D. N., Sagoe, F., Amoako, P. K., & Jallah, C. K. (2017). Effects of pre-sowing treatments on the germination and early growth performance of Pouteria campechiana. Forest Science and Technology 13(2): 83–86.
Aref, I. M., Atta, H. A., Shahrani, T. Al., & Mohamed, A. I. (2011). Effects of seed pretreatment and seed source on germination of five acacia species. African Journal of Biotechnology 10(71): 15901–15910.
Belmehdi, O., El Harsal, A., Benmoussi, M., Laghmouchi, Y., Skali Senhaji, N., & Abrini, J. (2018). Effect of light, temperature, salt stress, and pH on seed germination of Origanum elongatum Emb and Maire. Biocatalysis and Agricultural Biotechnology (16): 126–131
Bian, L., Yang, L., Wang, J.A., & Shen, H.L. (2013). Effects of KNO3 pretreatment and temperature on seed germination of Sorbus pohuashanensis. Journal of Forestry Research 24(2): 309-316.
Botsheleng, B., Mathowa, T., & Mojeremane, W. (2014). Effects of pre-treatments methods on the germination of pod mahogany (Afzelia quanzensis) and Mukusi (Baikiaea Plurijuga) seeds. International Journal of Innovative Research in Science, Engineering and Technology 3(1): 8108–8113.
Catara, S., Cristaudo, A., Gualtieri, A., Galesi, R., Impelluso, C., & Onofri, A. (2016). Threshold temperatures for seed germination in nine species of Verbascum (Scrophulariaceae). Seed Science Research 26(1): 30–46.
Chahtane, H., Kim, W., & Lopez-Molina, L. (2017). Primary seed dormancy: A temporally multilayered riddle waiting to be unlocked. Journal of Experimental Botany 68(4): 857– 869.
Cristaudo, A., Catara, S., Mingo, A., Restuccia, A. and Onofri, A. 2019. Temperature and storage time strongly affect the germination success of perennial Euphorbia species in Mediterranean regions. Ecology and Evolution 9(19): 10984–10999.
Daibes, L.F., Amoêdo, S.C., Nascimento Moraes, J., Fenelon, N., Da Silva, D.R., Vargas, L.A., Monteiro, E.F., & Frigeri, R.B. (2019). Thermal requirements of seed germination of ten tree species occurring in the western Brazilian Amazon. Seed Science Research 29(2): 115-123.
Daneshvar, A., Tigabu, M., Karimidoost, A. and Odén, P. C. (2017). Flotation techniques to improve the viability of Juniperus polycarpous seed lots. Journal of Forestry Research 28(2): 231–239.
De oliveira, A. K. M., Ribeiro, J. W. F., Pereira, K. C. L., & Silva, C. A. A. (2013). Effects of temperature on the germination of Diptychandra aurantiaca (Fabaceae) seeds. Acta Scientiarum Agronomy 35(2): 203–208.
Fredrick, C., Muthuri, C., Ngamau, K., & Sinclair, F. (2017). Provenance and pretreatment effect on seed germination of six provenances of Faidherbia albida. Agroforestry Systems 91(6): 1007–1017.
Gairola, K.C., Nautiyal, A.R., & Dwivedi, A.K. (2011). Effect of temperatures and germination media on seed germination of Jatropha curcas Linn. Advances in bioresearch 2(2): 66-71.
Gama-Arachchige, N. S., Baskin, J. M., Geneve, R. L., & Baskin, C. C. (2012). The autumn effect: Timing of physical dormancy break in seeds of two winter annual species of Geraniaceae by a stepwise process. Annals of Botany 110(3): 637–651.
Gilani, M. M., Ahmad, I., Farooq, T. H., Wu, P., Yousaf, M. S., Khan, M. W., Yousaf, T. Bin and Ma, X. (2019). Effects of pre-sowing treatments on seed germination and morphological growth of Acacia nilotica and Faidherbia albida. Forest Sciences 47(122): 374–382.
Guo, C., Shen, Y., & Shi, F. (2020). Effect of temperature, light, and storage time on the seed germination of Pinus bungeana Zucc: The role of seed-covering layers and abscisic acid changes. Forests 11(3): p.300.
Hasnat, G. N. T., Hossain, M. K., Bhuyian, M. K., Alam, M. S., & Hossain, M. A. (2016). Effect of pre-sowing treatments on seed germination and initial seedling growth performance of Canarium resiniferum: A native threatened tree of Bangladesh. Journal of Tropical Forestry and Environment 6(1): 11–19.
Jaganathan, G. K., Yule, K. J., & Biddick, M. (2018). Determination of the water gap and the germination ecology of Adenanthera pavonina; the adaptive role of physical dormancy in mimetic seeds. AoB Plants 10(5): 1–11.
Kahveci, G., Alan, M., & Köse, N. (2018). Distribution of Juniper stands and the impact of environmental parameters on growth in the drought-stressed forest-steppe zone of central Anatolia. Dendrobiology 80: 61–69.
Kidane, L., Bekele, T., & Nemomissa, S. (2010). Vegetation composition in Hugumbirda- Gratkhassu national forest priority area, South Tigray. Momona Ethiopian Journal of Science 2(2): 27-48.
Mewded, B., Lemessa, D., Negussie H., & Berhanu, A. (2019). Germination pretreatment and storage behavior of Terminalia laxiflora seed. Journal of Forestry Research 30(4): 1337–1342.
Missanjo, E., Chioza, A., & Kulapani, C. (2014). Effects of different pretreatments to the seed on seedling emergence and growth of Acacia polyacantha. International Journal of Forestry Research p. 1–6.
Missanjo, E., Maya, C., Kapira, D., Banda, H., & Kamanga-Thole, G. (2013). Effect of seed size and pretreatment methods on germination of Albizia lebbeck. ISRN Botany p. 1–4.
Mmolutsi, G. G., Matsuane, C., & Mojeremane, W. (2020). Application and use of presowing treatment methods to improve germination of Vachellia karroo (Hayne) Banfi and Galasso. Agriculture and Forestry Journal 4(1): 47–54.
Mojeremane, W., Mathowa, T., & Teketay, D. (2018). Effects of different pre-sowing treatments on germination of Peltophorum africanum. Seeds from two provenances in Botswana. Journal of Biodiversity and Environmental Sciences 12(2): 230-236.
Motsa, M. M., Slabbert, M. M., Van Averbeke, W., & Morey, L. (2015). Effect of light and temperature on seed germination of selected African leafy vegetables. South African Journal of Botany 99: 29–35
Mujwah, A. A., Mohammed, M. A., & Ahmed, M. H. (2010). First isolation of a flavonoid from Juniperus procera using ethyl acetate extract. Arabian Journal of Chemistry 3(2): 85–88.
Nasr, S. M. H., Savadkoohi, S. K., & Ahmadi, E. (2013). Effect of different seed treatments on dormancy breaking and germination in three species in arid and semi-arid lands. Forest Science and Practice 15(2): 130–136.
Negash, L. (2010a). A Selection of Ethiopia's indigenous trees: Biology, uses and propagation techniques. Addis Ababa University Press, Addis Ababa, Ethiopia. ISBN 978-99944-52- 27-9.
Negash, L., & Kagnew, B. (2013). Mechanisms for the successful biological restoration of the threatened African pencil cedar (Juniperus procera Hochst. ex. Endl. Cupressaceae) in a degraded landscape. Forest Ecology and Management 310: 476–482.
Odirile, O., Mojeremane, W., Teketay, D., Keotshepile, K., & Mathowa, T. (2019). Responses of seeds of Vachellia Erioloba (E. Mey.) P.J.H. Hurter in Botswana to different pre-sowing treatment methods. International Journal of Biology 16(1): 181– 188.
Olatunji, D. 2012. Effect of pre-treatments on the germination and early seedlings growth ofAcacia auriculiformis Cunn. Ex. Benth. African Journal of Plant Science 6(14): 364–369.
Rasebeka, L., Mathowa, T., & Witness, M. (2014). Effect of seed pre-sowing treatment on germination of three Acacia species indigenous to Botswana. International Journal of Plant and Soil Science 3(1): 62–70.
Razgour, O., Kasso, M., Santos, H., & Juste, J. (2021). Threats to Afromontane biodiversity from climate change and habitat loss are revealed by genetic monitoring of the Ethiopian Highlands bat. Evolutionary Applications 14(3): 794–806.
Ribeiro, J.N.S., & Costa, C.S.B. (2015). The effect of temperature regulation on seed germination of the tropical tree Myrsine parvifolia A. South African Journal of Botany 98: 128-133.
Rupinta, N. M., Medina, M. A. P. and Marin, R. A. 2014. Effects of different hot water pre- germination treatment and germination media on the germination of Falcata (Falcataria moluccana). Paper Knowledge Toward a Media History of Documents 16: 130–136.
Sebsibe, A., Woldeyes, F., & Shibru, S. (2018). Woody vegetation composition, structure, and community types of Doshke forest in Chencha, Gamo Gofa zone, Ethiopia. International Journal of Biodiversity 16.
Scheler, C., Weitbrecht, K., Pearce, S. P., Hampstead, A., Büttner-Mainik, A., Lee, K. J. D., Voegele, A., Oracz, K., Dekkers, B. J. W., Wang, X., Wood, A. T. A., Bentsink, L., King, J. R., Knox, J. P., Holdsworth, M. J., Müller, K., & Leubner-Metzger, G. (2015). The promotion of testa rupture during garden cress germination involves seed compartment-specific expression and activity of pectin methylesterases. Plant Physiology 167(1): 200–215.
Shiferaw, M., Nones, M., & Adeba, D. (2021). Ethiopian Basins. Land 10 (585): 1–18.
Singh, S., Bharat, N. K., Singh, H., Kumar, S., Jakhar, S., & Vijay. (2019). Effect of hot water treatment of seeds on seed quality parameters and seedling growth parameters in (Capsicum annuum). Indian Journal of Agricultural Sciences 89(1): 133–137.
Tanaka-Oda, A., Kenzo, T. and Fukuda, K. 2009. Optimal germination condition by sulfuric acid pretreatment to improve seed germination of Sabina vulgaris Ant. Journal of Forest Research 14(4): 251–256
Teketay, D., Botumile, A., Mojeremane, W., & Mathowa, T. (2020). Overcoming seed dormancy of Senegalia galpinii and Vachellia robusta through scarification pre-sowing treatments. Agriculture and Forestry 66(1): 153–169.
Thakur, U., Sood, M., & Rani, J. (2019). Effect of pre-sowing treatments on seed germination of Asparagus racemosus willd. Journal of Tree Sciences 38(2): 98.
Thangjam, U., & Sahoo, U. K. (2017). Effects of different pre-treatments and germination media on seed germination and seedling growth of Parkia timoriana. Journal of Experimental Biology and Agricultural Sciences 5: p.1
Willis, C. G., Baskin, C. C., Baskin, J. M., Auld, J. R., Venable, D. L., Cavender-Bares, J., Donohue, K., de Casas, R. R., Bradford, K., Burghardt, L., Kalisz, S., Meyer, S., Schmitt, J., Strauss, S., & Wilczek, A. (2014). The evolution of seed dormancy: Environmental cues, evolutionary hubs, and diversification of the seed plants. New Phytologist 203(1): p.300–309.
Copyright (c) 2024 Dereje Chimsa, Tesfaye Ashine

This work is licensed under a Creative Commons Attribution 4.0 International License.