Have a personal or library account? Click to login
Enhancing germination of Sapindus mukorossi (Gaertn.) through dormancy-breaking treatments Cover

Enhancing germination of Sapindus mukorossi (Gaertn.) through dormancy-breaking treatments

Open Access
|Apr 2025

References

  1. Araújo, S. D. S., Paparella, S., Dondi, D., Bentivoglio, A., Carbonera, D., Balestrazzi, A., 2016. Physical methods for seed invigoration: advantages and challenges in seed technology. Frontiers in Plant Science 7, 646.
  2. Baskin, C. C., Baskin, J. M., 1998. Germination ecology of seeds with physical dormancy. Seeds 101–132.
  3. Baskin, C. C., Baskin, J. M., 2020. Breaking seed dormancy during dry storage: a useful tool or major problem for successful restoration via direct seeding?. Plants 9(5), 636.
  4. Baskin, J. M., Baskin, C. C., Li, X., 2000. Taxonomy, anatomy and evolution of physical dormancy in seeds. Plant Species Biology 15(2), 139–152.
  5. Baskin, J. M., Baskin, C. C., 2022. Seed (true seed plus endocarp) dormancy in Anacardiaceae in relation to infra-familial taxonomy and endocarp anatomy. Seed Science Research 32, 187–199.
  6. Bewley, J. D., Bradford, K. J., Hilhorst, H. W., Nonogaki, H., 2013. Germination. Seeds: Physiology of Development, Germination and Dormancy, 3rd Edition, Springer, New York, p. 133–181.
  7. Bhatla, S. C., Lal, M. A., 2023. Seed dormancy and germination. In Plant Physiology, Development and Metabolism (pp. 625–640). Singapore, Springer Nature Singapore.
  8. Côme, D., 1970. Les obstacles to germination. Masson et Cie (Paris) 14, 24–27.
  9. Chovancová, S., Neugschwandtner, R. W., Ebrahimi, E., Kaul, H.-P. 2015. Effects of aqueous above-ground bio-mass extracts of cover crops on germination and seedlings of maize. Die Bodenkultur, 66(1–2), 17–23.
  10. Cook, A., Turner, S. R., Baskin, J. M., Baskin, C. C., Steadman, K. J., Dixon, K. W., 2008. Occurrence of physical dormancy in seeds of Australian Sapindaceae: a survey of 14 species in nine genera. Annals of Botany 101(9), 1349–1362.
  11. Coolbear P., Francis A., Grierson D., 1984. The effect of low temperature pre-sowing treatment on the germination performance and membrane integrity of artificially aged tomato seeds. Journal of Experimental Botany 35(11), 1609–1617.
  12. Copeland, L. O., McDonald M. F., 2012. Principles of seed science and technology. Springer Science & Business Media, New York, USA.
  13. Dalling, J. W., Davis, A. S., Arnold, A. E., Sarmiento, C., Zalamea, P. C., 2020. Extending plant defense theory to seeds. Annual Review of Ecology, Evolution, and Systematics 51, 123–141.
  14. Goyal, S., 2014. Medicinal plants of the genus Sapindus (Sapindaceae) – A review of their botany, phytochemistry, biological activity and traditional uses. Journal of Drug Delivery and Therapeutics 4(5), 7–20.
  15. Haider, M. R., Alam, M. S., Shutrodha, A. R., 2016. Effect of pre-sowing treatment on seed germination and seedlings growth of Sapindus mukorossi Gaertn. An important medicinal plant in Bangladesh. Journal of Bioscience and Agriculture Research 6(02), 570–577.
  16. ISTA, 2022. International Rules for Seed Testing, International Seed Testing Association, Bassersdorf, Switzerland.
  17. Khan, M. N., Ali, S., Yaseen, T., Ullah, S., Zaman, A., Iqbal, M., Shah, S., 2019. Eco-Taxonomic Study of Family Poaceae (Gramineae). RADS Journal of Biological Research & Applied Sciences 10, 63–75.
  18. Kheloufi, A., 2017. Germination of seeds from two leguminous trees (Acacia karroo and Gleditsia triacanthos) following different pre-treatments. Seed Science and Technology 45(1), 259–262.
  19. Kheloufi, A., 2022. Inventory, description and germination of woody fodder resources of the genus Acacia in Algeria – Data synthesis. Livestock Research for Rural Development 34(3), 1–17.
  20. Kheloufi, A., 2024. Breaking seed dormancy in Searsia pentaphylla (Anacardiaceae). Seed Science and Technology, 52(3), 303–308.
  21. Kheloufi, A., Mansouri, L. M., Aziz, N., Sahnoune, M., Boukemiche, S., Ababsa, B., 2018. Breaking seed coat dormancy of six tree species. Reforesta 5, 4–14.
  22. Kheloufi, A., Mansouri, L. M., Bouafia, B., Khamari, Y., Kheloufi, H., Bouguern, Y., 2019. Morphological characteristics and seed germination improvement of two ecotypes of Astragalus armatus Willd. subsp. armatus in Algeria. Cercetări Agronomice în Moldova 51(4), 96–107.
  23. Khurana, E. K. T. A., Singh, J. S., 2001. Ecology of seed and seedling growth for conservation and restoration of tropical dry forest: a review. Environmental Conservation 28(1), 39–52.
  24. Kildisheva, O. A., Dixon, K. W., Silveira, F. A., Chapman, T., Di Sacco, A., Mondoni, A., Turner, S.R., Cross, A.T., 2020. Dormancy and germination: making every seed count in restoration. Restoration Ecology 28, 256–265.
  25. Klupczyńska, E. A., Pawłowski, T. A., 2021. Regulation of seed dormancy and germination mechanisms in a changing environment. International Journal of Molecular Sciences 22(3), 1357.
  26. Kumar, M., Sarvade, S., Kumar, R., Kumar, A., 2024. Pre-sowing treatments on seeds of forest tree species to overcome the germination problems. Asian Journal of Environment & Ecology 23(5), 1–18.
  27. Lamont, B. B., Pausas, J. G., 2023. Seed dormancy revisited: Dormancy-release pathways and environmental interactions. Functional Ecology 37(4), 1106–1125.
  28. Liu, J., Qiu, S., Xue, T., Yuan, Y., 2024. Physiology and transcriptome of Sapindus mukorossi seeds at different germination stages. Genomics 116(3), 110822.
  29. Maguire, J. D., 1962. Speed of germination-aid in selection aid in evolution for seedling emergence and vigor. Crop Science 2, 176–177.
  30. Mansouri, L. M., Kheloufi, A., Belatreche, R. 2024. Assessment of the germination potential of Myrtus communis (L.) based on seed size. Reforesta 17, 10–17.
  31. Moro, A. V. I., Bravo, S. J., Abdala, N. R., Borghetti, F., Chaib, A.M., Galetto, L., 2021. Heat shock effects on germination and seed survival of five woody species from the Chaco region. Flora 275, 151751.
  32. Naik, I. S., Deshpande, V. K. 2021. Seed coat dormancy: An overview in legumes. The Pharma Innovation Journal 10(11), 620–624.
  33. Nautiyal, P. C., Sivasubramaniam, K., Dadlani, M., 2023. Seed dormancy and regulation of germination. Seed Science and Technology 39–66.
  34. Nikolaeva, M. G., Razumova, M. V., Gladkova, V. N., 1985. Reference book on dormant seed germination. Nauka, Leningrad, USSR
  35. Orchard, T., 1977. Estimating the parameters of plant seedling emergence. Seed Science and Technology 5, 61–69.
  36. Patel, I., Talathi, A., 2016. Use of traditional Indian herbs for the formulation of shampoo and their comparative analysis. International Journal of Pharmacy and Pharmaceutical Sciences 8(3), 28–32.
  37. Rusdy, M., 2017. A review on hard seedness and breaking dormancy in tropical forage legumes. Livestock Research for Rural Development 29(12), 237.
  38. Sahito, Z. A., Zehra, A., Yu, S., Chen, S., He, Z., Yang, X., 2023. Chinese sapindaceous tree species (Sapindus mukorossi) exhibits lead tolerance and long-term phytore-mediation potential for moderately contaminated soils. Chemosphere 338, 139376.
  39. Shiferaw, W., Demissew, S., Bekele, T., 2018. Ecology of soil seed banks: Implications for conservation and restoration of natural vegetation: A review. International Journal of Biodiversity and Conservation 10(10), 380–393.
  40. Singh, R., Sharma, B., 2019. Pharmacological activities and medicinal implications of Sapindus spp. Biotechnological Advances, Phytochemical Analysis and Ethnomedical Implications of Sapindus species 89–105.
  41. Steinbrecher, T., Leubner-Metzger, G., 2017. The biomechanics of seed germination. Journal of Experimental Botany 68(4), 765–783.
  42. Upadhyay, A., Singh, D. K., 2012. Pharmacological effects of Sapindus mukorossi. Revista do Instituto de Medicina Tropical de São Paulo 54, 273–280.
  43. Vinodkumars, B., Hipparagi, Y., Sushma, P. P., Sunnadagudi, R., 2014. Non-invasive techniques for seed quality analysis. Trends in Biosciences 7(10), 838–845.
  44. Wang, Y. R., Hanson, J., Mariam, Y. W., 2011. Breaking hard seed dormancy in diverse accessions of five wild Vigna species by hot water and mechanical scarification. Seed Science and Technology 39(1), 12–20.
  45. Zandi, P., Basu, S. K., Khatibani, L. B., Balogun, M. O., Aremu, M. O., Sharma, M., Kumar, A., Sengupta, R., Li, X., Li, Y., Tashi, S., Hedi, A., Cetzal-Ix, W., 2015. Fenugreek (Trigonella foenum-graecum L.) seed: a review of physiological and biochemical properties and their genetic improvement. Acta Physiologiae Plantarum 37, 1–14.
DOI: https://doi.org/10.2478/boku-2024-0010 | Journal eISSN: 2719-5430 | Journal ISSN: 0006-5471
Language: English
Page range: 105 - 113
Submitted on: Jul 22, 2024
Accepted on: Dec 23, 2024
Published on: Apr 17, 2025
Published by: Universität für Bodenkultur Wien
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2025 Abdenour Kheloufi, Lahouaria Mounia Mansouri, Thorayya Goudja, Mohammed Boukhecha, published by Universität für Bodenkultur Wien
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.