Open Access
Issue
BIO Web Conf.
Volume 246, 2026
Sriwijaya International Conference on Smart and Integrated Agriculture System (1st SRI-ICAS 2026)
Article Number 00025
Number of page(s) 6
DOI https://doi.org/10.1051/bioconf/202624600025
Published online 22 July 2026
  • Andrejiova, A., Hegedusovâ, A., Mafovâ, A., and Vargova, A. (2018). The possibility of Butternut squash growing in conditions of Slovak Republic. International Journal of Agriculture Forestry and Life Sciences, 2(2), 116–121. [Google Scholar]
  • Armesto, J., Rocchetti, G., Senizza, B., Pateiro, M., Barba, F.J., Dominguez, R., Lucini, L., & Lorenzo, J.M. (2020). Nutritional characterization of Butternut squash (Cucurbita moschata D.): Effect of variety (Ariel vs. Pluto) andfarming type (conventional vs. organic). Food Research International, 132, 109052. https://doi.org/10.1016/j.foodres.2020.109052 [Google Scholar]
  • Gomes, R.S., Jùnior, R.M., de Almeida, C.F., Chagas, R.R., de Oliveira, R.L., Delazari, F.T., & da Silva, D.J.H. (2020). Brazilian Germplasm of Winter Pumpkin (Cucurbita moschata D.) Displays Vast Genetic Variability, Allowing Identification of Promising Genotypes for Agromorphological Traits. PLOS ONE, 15(6), e0230546. https://doi.org/10.1371/journal.pone.0230546 [Google Scholar]
  • Che Ya, Y.M., Susanto, D., Liew, J.Y., Zain, N.M., Naher, L., & Azmin, S.N.H.M. (2023). Response of growth performance and yield of Butternut squash (Cucurbita moschata Duch Ex Poir) cultivar Waltham under different dosages of bokashi application. Journal of Applied and Natural Science. https://doi.org/10.31018/jans.v15i4.5042 [Google Scholar]
  • Ugrinovic, M., Girek, Z., Pavlovic, S., Adzic, S. Damnjanovic, J., Gavrilovic, M., & Ugrenovic, V. (2021). The influence of organic fertilizers on the seed yield and seed quality of Butternut squash (Cucurbita moschata) grown on different types of soil. BOOK OF, 753. [Google Scholar]
  • Dermawan, R., Dungga, N.E., Sjahril, R., Mollah, A., & Yuniarti, N.S. (2020). Response of growth and development of Butternut squash (Cucurbita moschata) to the combination of bioslurry and NPK fertilization. In IOP Conference Series: Earth and Environmental Science, Vol. 575, No. 1, p. 012119. IOP Publishing. https://doi.org/10.1088/1755-1315/575/1/012119 [Google Scholar]
  • Motadi, S.A., Mbhenyane, X.G., Zuma, M.K., & Freeland Graves, J.H. (2024). Effects of Cucurbita moschata squash (Butternut) seed paste in improving zinc and iron status in children attending Early Childhood Development centres in Limpopo province, South Africa. Plos one, 19(4), e0300845. https://doi.org/10.1371/journal.pone.0300845 [Google Scholar]
  • Padrones, E.J.A., Rosel, M., & Bustillo, R. (2024). Evaluating the Growth, Yield, and Resilience of F1, F2, and Open-Pollinated Pumpkin Varieties: A Comparative Study. https://doi.org/10.62718/vmca.tech-gjtdsi.3.1.SC-0824-007 [Google Scholar]
  • Zhang, Z., Jiang, Y., Zhu, H., Chen, Z., & Liu, Z. (2025). Segregation distortion and linkage analysis in F2 populations of pumpkin (C. moschata Duch). Plant Gene, 100508. https://doi.org/10.1016/j.plgene.2025.100508 [Google Scholar]
  • Javed, T., Afzal, I., Shabbir, R., Ikram, K., Zaheer, M.S., Faheem, M., & Iqbal, J. (2022). Seed coating technology: An innovative and sustainable approach for improving seed quality and crop performance. Journal of the Saudi Society of Agricultural Sciences, 21(8), 536–545. https://doi.org/10.1016/jjssas.2021.05.003 [Google Scholar]
  • Fadhilah, A.N., Farid, M., Ridwan, I., Anshori, M.F., & Yassi, A. (2022). Genetic parameters and selection index of high-yielding tomato F2 populations. https://doi.org/10.24831/jai.v50i2.37434 [Google Scholar]
  • Siraj-Ud-Doulah, M. (2018). Alternative measures of standard deviation coefficient of variation and standard error. International Journal of Statistics and Applications, 8(6), 309–315. https://doi.org/10.5923/j.statistics.20180806.02 [Google Scholar]
  • Suwignyo, B., Arifin, L., Umami, N., Muhlisin, M., & Suhartanto, B. (2021). The performance and genetic variation of first and second generation tropical alfalfa (Medicago sativa). Biodiversitas Journal of Biological Diversity, 22(6). https://doi.org/10.13057/biodiv/d220643 [Google Scholar]
  • Haleem, A., Hassan, G., Iqbal, A., Khan, F.U., Sajid, M., Ahmad, F., & Ilyas, M. (2022). Genetic variability and correlation analysis in F2 wheat populations. Sarhad Journal of Agriculture, 38(2), 398–408. https://doi.org/10.17582/journal.sja/2022/38.2.398.408 [Google Scholar]
  • Al-Araby, A.A. (2021). Genetic Variability, Heritability, Genetic Advance, and Correlation Analysis in F2 Segregating Population of Tomato (Solanum lycopersicum L.). Annals of Agricultural Science, Moshtohor, 59(5), 225–232. https://doi.org/10.21608/assjm.2021.187604 [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.