DIDY SOPANDIE
Department of Agronomy and Horticulture, Faculty of Agriculture, Institut Pertanian Bogor. Jl. Meranti, Kampus IPB Darmaga, Bogor 16680, West Java, Indonesia

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Genetic analysis for designing an ideotype of high-yielding sorghum based on existing lines performance Desta Wirnas; Neni Oktanti; Hana Nur Rahmi; DEWI ANDRIANI; Faturrahman FATURRAHMAN; ERIN PUSPITA RINI; Siti Marwiyah; Trikoesoemaningtyas TRIKOESOEMANINGTYAS; DIDY SOPANDIE
Biodiversitas Journal of Biological Diversity Vol. 22 No. 12 (2021)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d221208

Abstract

Abstract. Wirnas D, Oktanti N, Rahmi HN, Andriani D, Faturrahman, Rini EP, Marwiyah S, Trikoesoemaningtyas, Sopandie D. 2021. Genetic analysis for designing an ideotype of high-yielding sorghum based on existing lines performance. Biodiversitas 22: 5286-5292. Sorghum is a potential crop as an alternative and substitutes food source for rice or wheat. The ideal type of sorghum design for a high-yielding trait is needed to streamline the process of selecting the best genotype that can be developed into pure lines and released as varieties. The research purpose was to design the ideal type of sorghum based on the morphological, physiological, and agronomic characters that contribute to a high-yielding trait. The research was carried out at the Agriculture Research Center for Biotechnology and Genetic Resources, Bogor, West Java, Indonesia and experimental field of IPB University, Bogor, Indonesia. The genetic materials used in this study consisted of 56 F5 sorghum lines advanced from three segregating populations and 8 check varieties. The ideal type of sorghum to obtain a genotype with high grain weight per panicle was to have a phenotypic value of 150-235 cm for plant height (medium plant height). The physiological and agronomic characters obtained to design the ideal type of sorghum were stem diameter, leaf number, flag leaf area, leaf greenness, green leaf percentage, and panicle diameter with the minimum value for the traits are 17 mm, 10, 209 cm2, 44 CCI units, 48%, and 49 mm, respectively. This ideotype is going to be used as selection criteria for selection of high-yielding sorghum genotypes.
Plant growth modeling in six landraces of Bambara groundnut seed production (Vigna subterranea) ASTRYANI ROSYAD; SATRIYAS ILYAS; ABDUL QADIR; M. RAHMAD SUHARTANTO; DIDY SOPANDIE
Biodiversitas Journal of Biological Diversity Vol. 26 No. 5 (2025)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d260508

Abstract

Abstract. Rosyad A, Ilyas S, Qadir A, Suhartanto MR, Sopandie D. 2025. Plant growth modeling in six landraces of Bambara groundnut seed production (Vigna subterranea). Biodiversitas 26: 2097-2105. The unavailability of high-quality seeds, low productivity, and lack of information on ecophysiological responses are the major problems in Bambara groundnut (Vigna subterranea) seed production. In this context, agro-climate components influencing plant growth include solar radiation and temperature. These components are quantified in the form of a plant model to influence growth through metabolic processes. A dynamic model is used as a solution to the problem. Therefore, this research aimed to create a dynamic model for the seed production of six Bambara groundnut landraces and to study the physiological processes related to yield. The stages in the model construction included (i) identifying system components, (ii) model construction, (iii) simulation, and (iv) validation. The ecophysiological reaction of plants to temperature and solar radiation in photosynthesis and respiration was constructed using the growth model. Model construction used the STELLA software.  Each landrace has different input components at each stage of development, including the carbohydrate partition coefficient, specific leaf area, extinction coefficient, and light usage efficiency. Simulated seed productivity on Tasikmalaya, Sukabumi, Sumedang, Small Sumedang, Bogor, and Gresik landrace was 2,115 kg ha-1, 2,263 kg ha-1, 1,975 kg ha-1, 1,890 kg ha-1, 2,179 kg ha-1, and 1,975 kg ha-1, respectively. The level of validity of the Tasikmalaya landrace, Sukabumi, Sumedang, Small Sumedang, Bogor, and Gresik growth model reached 82.4%, 82.4%, 94.1%, 82.4%, 88.2%, and 82.4%, respectively. These models are considered fit as the validity is greater than 80%. The seed production growth model with pod dry weight output was named 'The BAMSeed Model'. In practice, this model could benefit the researchers in predicting the yield of bambara groundnut using the selected system components.