Effect of Different Sowing Media on Seed Germination and Seedling Performance of Ficus auriculata L. and F. hispida L.

Authors

  • Mohd Imran Hossain Chowdhury Institute of Forestry and Environmental Sciences, University of Chittagong, Chittagong-4331, Bangladesh
  • Tonima Hossain Institute of Forestry and Environmental Sciences, University of Chittagong, Chittagong-4331, Bangladesh https://orcid.org/0009-0003-9842-4732

DOI:

https://doi.org/10.56946/jspae.v4i1.516

Keywords:

Nodal leaf cuttings, tip cuttings, principal component analysis, IBA, branch cutting

Abstract

In Bangladesh, the declining populations of Ficus auriculata L and Ficus hispida L, vital for maintaining ecosystem balance and supporting wildlife, are threatened by low germination rates and poor seedling establishment, highlighting the need for effective propagation strategies to ensure their conservation and sustainability. This experiment investigated the germination and seedling development of Ficus auriculata L and Ficus hispida L, species crucial for biodiversity and environmental stability in Bangladesh. Effective conservation and propagation require high germination rates and vigorous seedlings. This study examined the impact of different sowing media on germination and seedling growth for these two important species. The trial, conducted over two years (2019–2022), employed a completely randomized design with eight treatments, including a control and various mixtures of soil, cow dung, and sand. Seeds were obtained from the University of Chittagong and monitored daily for germination rates and growth parameters. The results showed that the different media significantly affected germination percentages. The control treatment achieved the highest germination rate for F. auriculata (63.66%) and showed good performance in other growth parameters. For F. hispida, Treatment 01 recorded the highest germination rate at 81.33%. Seedling growth was assessed by measuring shoot and root lengths, revealing significant differences among treatments. Shoot length and collar diameter were notably improved in F. auriculata under the control treatment, reaching 121.5 mm, compared to lower values in other treatments. The findings indicate that Treatment 7 (Sand: Soil: Dung in a 1:2:1 ratio) provided the most favorable conditions for seedling growth, promoting robust development and higher survival rates. These results highlight the importance of selecting appropriate growing conditions to enhance germination and survival rates, contributing to biodiversity conservation amid challenges like climate change and habitat degradation. Further research is recommended to explore the therapeutic and ecological benefits of these lesser-known Ficus species.

References

Amaducci, S., Scordia, D., Liu, F. H., Zhang, Q., Guo, H., Testa, G., & Cosentino, S. L. . Key cultivation techniques for hemp in Europe and China. Industrial Crops and Products. (2015). 68, 2–16. https://doi.org/10.1016/j.indcrop.2014.06.041

Almodares, A., Hadi, M. R., & Dosti, B. Effects of salt stress on germination percentage and seedling growth in sweet sorghum cultivars. Journal of Biological Sciences. (2007).7(8), 1492-1495. https://doi.org/10.3923/jbs.2007.1492.1495

Bewley, J. D. Bradford, K. J. Hilhorst, H. W. M. and Nonogaki H. Seeds: physiology of development, germination and dormancy. 3rd ed. Springer, New York. (2013). https://doi.org/10.1007/978-1-4614-4693-4

Brown, R. F. and Mayer, D. G. Representing cumulative germination. 1. A critical analysis of single-value germination indices. Annals of Botany. (1988). 61(2), 117-125. https://doi.org/10.1093/oxfordjournals.aob.a087535

Debbarma, S., Banik, B., Baishnab, B., Datta, B. K., & Majumdar, K. Diversity and distribution of figs in Tripura with four new additional records. Journal of Threatened Taxa. (2020). 12(11), 11. https://doi.org/10.11609/jott.4975.12.11.16548-16570

Dwivedi, A. P. A Text Book of Silviculture. International Book Distributors. 9/3 Rajpur Road, Dehradun – 248001, India. (1993). pp. 01-505

Fujita, T., & Yamashina, C. Do consumer-mediated negative effects on plant establishment outweigh the positive effects of a nurse plant? Ecology and Evolution. (2018). 8(7), 3702–3710. https://doi.org/10.1002/ece3.3935

Guo, B., Gao, M., & Liu, C.-Z. In vitro propagation of an endangered medicinal plant Saussurea involucrata Kar. Et Kir. Plant Cell Reports, 26(3). (2007). 261–265. https://doi.org/10.1007/s00299-006-0230-6

Tanjina Hasnat, G. N., Hossain, M., Kalimuddin Bhuiyan, M., & Shafiul Alam, N. I.Effect of pre. Sowing treatments on germination and initial growth of seedlings of kusum (schletchera oleosa. Int. J. of Usuf. Mnst. (2014). 15(1), 3-9.

Hesami, M., Daneshvar, M. H., & Yoosefzadeh-Najafabadi, M. (2018). Hesami, M., Daneshvar, M. H., & Yoosefzadeh-Najafabadi, M. Establishment of a protocol for in vitro seed germination and callus formation of Ficus religiosa L., an important medicinal plant. Jundishapur Journal of Natural Pharmaceutical Products. (2018). 13(4), e62682. https://doi.org/10.5812/jjnpp.62682

Heydecker, W. Glossary of terms. In: W. Heydecker (ed.), Seed ecology. 553-557 pp. Butterworths, London. (1973).

Islam, K. N., Rana, L. R. S., Islam, K., Hossain, Md. S., Hossain, M. M., & Hossain, Md. A. Climate change and the distribution of two Ficus spp. In Bangladesh – predicting the spatial shifts. Trees, Forests and People. (2021). 4, 100086. https://doi.org/10.1016/j.tfp.2021.100086

Islam, K. N., Rahman, M. M., Jashimuddin, M., Islam, K., & Zhang, Y. Impact of co-management on tree diversity and carbon sequestration in protected areas: Experiences from Bangladesh. Trees, Forests and People, 2, 100033. (2020). https://doi.org/10.1016/j.tfp.2020.100033

Janssens, S. B., Couvreur, T. L. P., Mertens, A., Dauby, G., Dagallier, L.-P. M. J., Vanden Abeele, S., Vandelook, F., Mascarello, M., Beeckman, H., Sosef, M., Droissart, V., van der Bank, M., Maurin, O., Hawthorne, W., Marshall, C., Réjou-Méchain, M., Beina, D., Baya, F., Merckx, V., Hardy, O. (2020). A large-scale species level dated angiosperm phylogeny for evolutionary and ecological analyses. Biodiversity Data Journal, 8, e39677. https://doi.org/10.3897/BDJ.8.e39677

Jha, S., Raina, S. N., Ohri, D., Verma, R. C., Dhar, M. K., Lekhak, M. M., Yadav, S. R., Mahadev, N., & Satyawada, R. R. A new online database on genome-related information of Indian plants. Plant Systematics and Evolution. (2019). 305(9), 837–843. https://doi.org/10.1007/s00606-019-01602-5

Kumar, V. P., Chauhan, N. S., Padh, H., & Rajani, M. Search for antibacterial and antifungal agents from selected Indian medicinal plants. Journal of Ethnopharmacology. (2006). 107(2), 182–188. https://doi.org/10.1016/j.jep.2006.03.013

Kumar, V. (2015). Nursery and Plantation Practices in Forestry. Scientific Publishers.

Lisci, M., & Pacini, E. Germination ecology of drupelets of the fig (Ficus carica L.). Botanical Journal of the Linnean Society. (1994). 114(2), 133–146. https://doi.org/10.1111/j.1095-8339.1994.tb01927.x

Mofokeng, M., Prinsloo, G., & Kritzinger, Q. Germination response of four South African medicinal plants to a range of temperatures and treatments. Seed Science and Technology. (2012). 40(1), 123–128. https://doi.org/10.15258/sst.2012.40.1.15

Maguire, J. D. Speed of germination-aid in selection and evaluation for seedling emergence and vigor. Crop science. (1962).. 2, 176-177.https://doi.org/10.2135/cropsci1962.0011183X000200020033x

Mukarati, T. H., Rukuni, D., & Madhanzi, T. Influence of temperature on germination performance of osmoprimed flue-cured tobacco (Nicotiana tabacum L.) seeds. African Journal of Agricultural Research. (2013). 8, 6615-6624.

Raji, I. A., Thabethe, V., & Downs, C. T. The role of avian frugivores in the germination and dispersal of fleshy-fruited Ficus species in KwaZulu-Natal, South Africa. Journal of Ornithology. (2022). 163(2), 395–404. https://doi.org/10.1007/s10336-022-01963-8

Ranjan Satapathy, S., Prasad Khanduri, V., Singh, B., Riyal, M. K., Kumar, S., Kumar, P., & Rawat, D. Allelopathic potential of Ficus auriculata and Ficus semicordata on growth of four traditional food crops of Garhwal Himalaya. Journal of Agriculture and Food Research. (2022). 9, 100352. https://doi.org/10.1016/j.jafr.2022.100352

Raji, I. A., & Downs, C. T. Ficus-frugivore interactions, especially in areas of land-use change, in Africa: A systematic review. Acta Oecologica. (2021). 113, 103774. https://doi.org/10.1016/j.actao.2021.103774

Rudra, S., Islam, K. N., Rahman, Md. M., & Uddin, S. B. Medicinal Plant Diversity and Their Therapeutic Uses in Selected Village Common Forests in Chittagong Hill Tracts, Bangladesh. Journal of Herbs, Spices & Medicinal Plants. (2021). 27(1), 83–107. https://doi.org/10.1080/10496475.2020.1786874

Ranal, M. A. and Santana, D. G. D. How and why to measure the germination process? Brazilian Journal of Botany. (2006). 29(1), 1-11. https://doi.org/10.1590/S0100-84042006000100002

Saimun, Md. S. R., Karim, Md. R., Sultana, F., & Arfin-Khan, M. A. S. Multiple drivers of tree and soil carbon stock in the tropical forest ecosystems of Bangladesh. Trees, Forests and People. (2021). 5, 100108. https://doi.org/10.1016/j.tfp.2021.100108

Sayed, A., Sarker, A., Kim, J.-E., Rahman, M., & Mahmud, Md. G. A. Environmental sustainability and water productivity on conservation tillage of irrigated maize in red brown terrace soil of Bangladesh. Journal of the Saudi Society of Agricultural Sciences. (2020). 19 (4), 276–284. https://doi.org/10.1016/j.jssas.2019.03.002

Suratman, M. N., Latif, Z. A., Oliveira, G. D., Brunsell, N., Shimabukuro, Y., & Santos, C. A. C. D. Forest Degradation around the World. BoD – Books on Demand. (2020).

Soleymani, A. and Shahrajabian, M. H. Changes in Germination and Seedling Growth of Different Cultivars of Cumin to Drought Stress. Cercetari Agronomice in Moldova. (2018). 51(1), 91-100. https://doi.org/10.2478/cerce-2018-0008

Steinbauer, M. J., Uddin, M. B., Jentsch, A., & Beierkuhnlein, C. Drivers for plant species diversity in a characteristic tropical forest landscape in Bangladesh. Landscape Research. (2017). 42(1), 89–105. https://doi.org/10.1080/01426397.2016.1252038

Sohel, S. I., Akhter, S., Ullah, H., Haque, E., & Rana, P. Predicting impacts of climate change on forest tree species of Bangladesh: Evidence from threatened Dysoxylum binectariferum (Roxb.) Hook.f. ex Bedd. (Meliaceae). IForest - Biogeosciences and Forestry. (2016). 10(1), 154. https://doi.org/10.3832/ifor1608-009

Sparg, S. G., Kulkarni, M. G., & Van, S. J. Germination and seedling establishment strategies for Merwilla natalensis, a South African medicinal plant in high demand: Research letter. South African Journal of Science. (2005). 101(3), 205–208. https://doi.org/10.10520/EJC96366

Schrauf, G. E. Cornaglia, P. S. Deregibus, V. A. and Ríssola, M. G. Improvement in germination behaviour of Paspalum dilatatum Poir. seeds under different pre‐conditioning treatments. New Zealand Journal of Agricultural Research. (1995). 38(4), 501-509. https://doi.org/10.1080/00288233.1995.9513152

Sengupta, B., Nandi, A. S., Samanta, R. K., Pal, D., Sengupta, D. N., & Sen, S. P. Nitrogen Fixation in the Phyllosphere of Tropical Plants: Occurrence of Phyllosphere Nitrogen-Fixing Micro-organisms in Eastern India and their Utility for the Growth and Nitrogen Nutrition of Host Plants. Annals of Botany. (1981). 48(5), 705–716. https://doi.org/10.1093/oxfordjournals.aob.a086177

Tamta, G., Mehra, N., & Tandon, S. Traditional Uses, Phytochemical and Pharmacological Properties of Ficus auriculata: A Review. Journal of Drug Delivery and Therapeutics. (2021). 11(3), 3. https://doi.org/10.22270/jddt.v11i3.4853

Tang, Z.-H., Mukherjee, A., Sheng, L.-X., Cao, M., Liang, B., Corlett, R. T., & Zhang, S.-Y. Effect of ingestion by two frugivorous bat species on the seed germination of Ficus racemosa and F. hispida (Moraceae). Journal of Tropical Ecology. (2007). 23(1), 125–127. https://doi.org/10.1017/S0266467406003737

Vimala, G. Pharmacological evaluations of ethanol extract of Ficus benghalensis L. seeds for its antiulcer and antimicrobial efficacy. Indian Journal of Natural Products and Resources (IJNPR)[Formerly Natural Product Radiance (NPR)]. (2018). 8(4), 329-334.. https://doi.org/10.56042/ijnpr.v8i4.14211

Zeng, Y., Giblin-Davis, R. M., & Ye, W. Two new species of Schistonchus (Nematoda: Aphelenchoididae) associated with Ficus hispida in China. Nematology. (2007). 9(2), 169–187. https://doi.org/10.1163/156854107780739135

Downloads

Published

2025-02-26
CITATION
DOI: 10.56946/jspae.v4i1.516

How to Cite

Chowdhury, M. I. H., & Hossain, T. (2025). Effect of Different Sowing Media on Seed Germination and Seedling Performance of Ficus auriculata L. and F. hispida L. Journal of Soil, Plant and Environment, 4(1), 18–30. https://doi.org/10.56946/jspae.v4i1.516

Issue

Section

Article