2,131
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Effect of Soil Application of Stabilized Ortho Silicic Acid Based Granules on Growth and Yield of Rice (Oryza sativa L.)

, , , , , , , , , , & show all
Pages 444-452 | Received 07 Oct 2020, Accepted 08 Aug 2022, Published online: 24 Aug 2022

References

  • Agostinho, F. B., B. S. Tubana, M. S. Martins, and L. E. Datnoff. 2017. Effect of different silicon sources on yield and silicon uptake of rice grown under varying phosphorus rates. Plants 6 (3):35. doi:10.3390/plants6030035.
  • Anderson, J. M., and J. S. I. Ingram. 1993. Tropical soil biology and fertility: A handbook of methods. 2nd ed. Wallingford: CAB International.
  • Beenart, F. R. 1999. Feasibility study of production of lime and/or ground travertine for the management of acid soils in Rwanda. Brussels: ProInter Project Consultants.
  • Clay, D. C., and Y. Dejaegher. 1987. Agroecological zones: The development of a regional classification scheme for Rwanda. Tropicultura, 153–59. http://www.tropicultura.org/text/v5n4/153.pdf
  • Crusciol, C. A. C., R. P. Soratto, G. S. A. Castro, C. H. M. Costa, and J. F. Neto. 2013. Aplicação foliar de ácido silícico estabilizado na soja, feijão e amendoim. Revista Ciência Agronômica 44 (2):404–10. doi:10.1590/S1806-66902013000200025.
  • Cuong, T. X., H. Ullah, A. Datta, and T. C. Hanh. 2017. Effects of silicon-based fertilizer on growth, yield and nutrient uptake of rice in tropical zone of Vietnam. Rice Science 24 (5):283–90. doi:10.1016/j.rsci.2017.06.002.
  • Cyamweshi, A. R., J. Kayumba, and N. L. Nabahunga. 2017. Optimizing fertilizer use within the context of integrated soil fertility management in Rwanda. In Fertilizer use optimization in sub-Saharan Africa, ed. C. S. Wortmann and K. Sones, 165–75. London: CABI. doi:10.1079/9781786392046.0164.
  • Da Silva, V. F., J. C. Morales, and B. A. Melo. 2010. Influence of silicon on the development, productivity and infestation by insect pest in potato crop. Ciência e Agrotecnologia Lavras 34:465–69. doi:10.1590/S1413-70542010000600016.
  • Dwivedi, S., A. Kumar, S. Mishra, P. Sharma, G. Sinam, L. Bahadur, V. Goyal, N. Jain, and R. D. Tripathi. 2020. Orthosilicic acid (OSA) reduced grain arsenic accumulation and enhanced yield by modulating the level of trace element, antioxidants, and thiols in rice. Environmental Science and Pollution Research International 27 (19):24025–38. doi:10.1007/s11356-020-08663-x.
  • Epstein, E., and A. J. Bloom. 2005. Mineral nutrition of plants: Principles and perspectives. 2nd ed. Sunderland: Sinauer Associates. doi:10.1086/497210.
  • Fukagawa, N. K., and L. H. Ziska. 2019. Rice: Importance for global nutrition. Journal of Nutritional Science and Vitaminology 65:S2–S3. doi:10.3177/jnsv.65.S2.
  • Gokulraj, N., V. Ravichandran, P. Boominathan, and R. P. Soundararajan. 2018. Response of silicon on membrane stability, plant water status and yield of rice genotypes under drought. International Journal of Agriculture Sciences 10 (13):6615–18. https://www.bioinfopublication.org/jouarchive.php?opt=&jouid=BPJ0000217.
  • Gulzar, N., S. Ali, M. A. Shah, and A. N. Kamili. 2021. Silicon supplementation improves early blight resistance in (Lycopersicon esculentum) by modulating the expression of defense-related genes and antioxidant enzymes. 3 Biotechnology 11 (5):232. doi:10.1007/s13205-021-02789-6.
  • Hattori, T., S. Inanagaa, and H. Arakib. 2005. Application of silicon enhanced drought tolerance in sorghum bicolor. Physiologia Plantarumarum 123 (4):459–66. doi:10.1111/j.1399-3054.2005.00481.x.
  • Hodson, M. J., P. J. White, A. Mead, and M. R. Broadley. 2005. Phylogenetic variation in the silicon composition of plants. Annals of Botany 96 (6):1027–46. doi:10.1093/aob/mci255.
  • Javaid, K., and F. A. Misgar. 2017. Effect of foliar application of orthosilicic acid on leaf and fruit nutrient content of apple cv. “Red Delicious”. Advance Research Journal of Multidisciplinary Discoveries 20:30–32.
  • Jawahar, S., C. Kalaiyarasan, S. Ramesh, S. R. Vinod Kumar, K. Suseendran, and K. Arivukkarasu. 2019. Effect of orthosilicic acid formulations on leaf folder incidence in lowland rice. Asian Journal of Multi-Disciplinary Research 5 (1):1–4.
  • Jawahar, S., D. Vijayakumar, R. Bommera, N. Jain, and Jeevanandham. 2015. Effect of Silixol granules on growth and yield of Rice. International Journal of Current Research and Academic Review 3 (12):168–74.
  • Ju S, Yin N, Wang L, Zhang C, and Wang Y. 2017. Effects of silicon on Oryza sativa L. seedling roots under simulated acid rain stress. PLoS One 12 (3):e0173378. doi:10.1371/journal.pone.0173378.
  • Karuku, G. N., and M. Maobe. 2018. Impact of privi-silixol foliar fertilizer in combination with di-ammonium phosphate and mycorrhiza on performance, NPK uptake, disease and pest resistance on selected crops in a greenhouse experiment. Tropical and Subtropical Agroecosystems 21:151–62.
  • Lierop, W.V., and A. F. MacKenzie. 1977. Soil pH measurement and its application to organic soils. Canadian Journal of Soil Science 57 (1):55–64. doi:10.4141/cjss77-008.
  • Lokadal, A., and B. Sreekanth. 2018. Effect of soil application of silicon on growth and yield attributes of rice (Oryza sativa L.). International Journal of Current Microbiology and Applied Sciences 7 (11):838–44. doi:10.20546/ijcmas.2018.711.099.
  • Mbaraka, S. R, J. C. Abayisenga, C. Nkurunziza, F. X. Rucamumihigo, S. Habimana, L. V. Nguyen, I. Gasangwa, J. Neeru, E. Mutamuliza, F. R. Musana, et al. 2021. Effect of combined application of foliar sprays of orthosilicic acid (OSA) with basal NPK fertilizer on growth and yield of rice (Oryza sativa L). Silicon 4:5207–5212. doi:10.1007/s12633-021-01308-9.
  • MINAGRI (Ministry of Agriculture and Animal Resources). 2013. National Rice Development strategy (2011-2018). Kigali, Rwanda: MINAGRI.
  • MINAGRI (Ministry of Agriculture and Animal Resources). 2014. National Fertilizer Policy. https://extwprlegs1.fao.org/docs/pdf/rwa174364.pdf.
  • More, S. S., N. B. Gokhale, S. E. Shinde, and G. N. Korake. 2015. Effect of different sources of silica on nutrient content of leaves and fruit at different stages of Alphonso mango (Mangifera indica L.) in lateritic soil. Journal of Progressive of Agriculture 6 (2):1–9.
  • Mukamuhirwa, A., H. P. Hovmalm, R. Ortiz, O. Nyamangyoku, and E. Johansson. 2018.Quality and Grain Yield Attributes of Rwandan Rice (Oryza sativa L.) Cultivars Grown in a Biotron Applying Two NPK Levels. Journal of Food Quality 2018: 1–12. doi: 10.1155/2018/5134569
  • NISR (National Institute of Statistics of Rwanda). 2018. Seasonal agricultural survey, annual report. https://www.statistics.gov.rw/datasource/seasonal-agricultural-survey-2018
  • NISR (National Institute of Statistics of Rwanda). 2020. Seasonal agricultural survey, annual report. https://www.statistics.gov.rw/datasource/seasonal-agricultural-survey-2020
  • NISR (National Institute Statistics of Rwanda). 2014. Seasonal agricultural survey annual report. https://www.statistics.gov.rw/publication/seasonal-agricultural-survey-report-2014.
  • Okalebo, J. R., K. W. Gathua, and P. L. Woomer. 2002. Laboratory methods of soil and plant analysis. A working manual, 2nd ed., vol. 21, 25–26. Nairobi, Kenya: Sacred Africa.
  • Pati, S., B. Pal, S. Badole, G.C Hazra, and B. Mandal. 2016. Effect of silicon fertilization on growth, yield, and nutrient uptake of rice. Communications in Soil Science and Plant Analysis 47 (3):284–90. doi:10.1080/00103624.2015.1122797.
  • R Core Team. 2019. R: A language and environment for statistical computing. Vienna, Austria: R Foundation for Statistical Computing. https://www.R-project.org/.
  • Ramteke, S. D., R. J. Kor, M. A. Bhange, A. P. Khot, N. A. Zende, S. S. Datir, and K. D Ahire. 2012. Physiological studies on effects of silixol on quality and yield in Thompson seedless grapes. Annals of Plant Physiology 26 (2):47–51.
  • Ratnakumar, P., P. P. Deokate, J. Rane, N. Jain, V. Kumar, D. Vanden Berghe, and P. S. Minhas. 2016. Effect of Ortho-Silicic Acid Exogenous Application on Wheat (Triticum aestivum L.) under Drought. Journal of Functional and Environmental Botany 6 (1):34–42. doi:10.5958/2231-1750.2016.00006.8.
  • Rietra, R. P. J. J., M. Heinen, C. O. Dimkpa, and P. S. Bindraban. 2017. Effects of nutrient antagonism and synergism on yield and fertilizer use efficiency. Communications in Soil Science and Plant Analysis 48 (16):1895–920. doi:10.1080/00103624.2017.1407429.
  • Saeed, I. N., K. Abbasi, and M. Kazim. 2001. Response of maize (Zea mays) to nitrogen and phosphorus fertilization under agro-climatic condition of Rawalokot Azad Jammu and Kashmir. Pakistan Journal of Biological Sciences 4 (8):949–52. doi:10.3923/pjbs.2001.949.952.
  • Singh, K. K, K. Singh, S. Ragevendra, S. Yogeshwar, and C. S. Singh. 2006. Response of nitrogen and silicon levels on growth, yields attribute and nutrient uptake of rice (Oryza sativa L). Oryza 43:220–23.
  • Soratto, R. P., A. N. Fernandes, C. A. C. Crusciol, and G. D de Souza-Schlick. 2012. Produtividade, qualidade de tubérculos e incidência de doenças em batata, influenciados pela aplicação foliar de silício. Pesquisa Agropecuária Brasileira 47 (7):1000–06. doi:10.1590/S0100-204X2012000700017.
  • Tripathy S., and L. K. Rath. 2017. Silicon induced resistance expression in rice to Yellow stem borer. Journal of Entomology and Zoology Studies 5 (5):12–15.
  • Wedepohl, K. H. 1995. The composition of the continental crust. Geochim et Cosmochimica Acta 59 (7):1217–39. doi:10.1016/0016-7037(95)00038-2.
  • Yoshida S, S. A. Navasero, and E. A. Ramirez. 1969. Effects of silica and nitrogen supply on some leaf characters of the rice plant. Plant and Soil 31 (1):48–56. doi:10.1007/BF01373025.