AHMAD JUNAEDI
Department of Agronomy and Horticulture, Faculty of Agriculture, Institut Pertanian Bogor. Jl. Meranti, IPB Dramaga Campus, Bogor 16680, West Java, Indonesia

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Application of selection index for rice mutant screening under a drought stress condition imposed at reproductive growth phase MAMIK SARWENDAH; ISKANDAR LUBIS; AHMAD JUNAEDI; BAMBANG SAPTA PURWOKO; DIDY SOPANDIE; AZRI KUSUMA DEWI
Biodiversitas Journal of Biological Diversity Vol. 23 No. 10 (2022)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d231056

Abstract

Abstract. Sarwendah M, Lubis I, Junaedi A, Purwoko BS, Sopandie D, Dewi AK. 2022. Application of selection index for rice mutant screening under a drought stress condition imposed at reproductive growth phase. Biodiversitas 23: 5446-5452. Drought is a condition of limited availability of water that can reduce rice growth and productivity, and may threaten food security. Therefore, efforts are needed to produce drought-tolerant rice genotypes. This study aimed to select drought tolerant of the M3 mutant upland rice population at the reproductive growth phase. This research was carried out in dryland at BATAN, Indonesia, from September 2020 to February 2021, using an augmented design. The study employed 360 ??genotypes of mutant upland rice and 5 check varieties, namely Salumpikit, IR20, IR64, Limboto, and Situgintung. The selection index was constructed based on multivariate analyses such as correlation, path, and Principal Component Analysis (PCA). The coefficient of the selected main component can be used as a selection index. Before selecting the character values of each genotype, the values were standardized to obtain the same degree of value. The results showed that grain weight per hill (W.G.), panicle density (P.D.), panicle length (P.L.), and the number of filled grains per panicle (NFG) could be used as selection criteria for mutant upland rice tolerant to drought at reproductive growth phase. The selection index formula was I = (5*0.44*WG) + (2*0.41*PD) + (0.23*PL) + (0.42*NFG). Selection of genotypes of mutant upland rice based on weighted index selection resulted in 89 genotypes with high yields and good agronomic characteristics so that they could be tested in further research.
Genotypes assessment for developing varieties on multi-canopy rice cultivation system MIFTAKHUL BAKHRIR ROZAQ KHAMID; AHMAD JUNAEDI; HENI PURNAMAWATI; HAJRIAL ASWIDINNOOR; LILIK BUDI PRASETYO
Biodiversitas Journal of Biological Diversity Vol. 24 No. 2 (2023)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d240258

Abstract

Abstract. Khamid MBR, Junaedi A, Purnamawati H, Aswidinnoor H, Prasetyo LB. 2023. Genotypes assessment for developing varieties on multi-canopy rice cultivation system. Biodiversitas 24: 1175-1185. The Multi-Canopy Rice Cultivation (MCRC) system is a promising cultivation technique that adopts the advantages of cultivar mixture with different canopy vertical dispersion. This system may increase productivity by optimizing vertical space and more efficient input resources. This study aimed to assess the genotype derived from the IPB breeding line for suitability in the MCRC system by combining the short and the tall rice plants. Seed material used four genotypes of the short plants and four genotypes of the tall plants as promising breeding lines of IPB University and three released varieties as the control for productivity evaluation. The resultsshowed morphological and physiological performance as good as in the mono-genotype on the variables of the flag leaf shape, plant height, Soil Plant Analysis Development (SPAD)value, and Crop Growth Rate (CGR). Some genotype combinations achieved productivity higher than 1.00 Land Equivalent Ratio (LER) compared to the mono-genotype, indicating that increasing rice productivity is possible using the MCRC system. The result indicates that the suitable combination of the short-tall genotypes in the MCRC system may be considered to deal with the criteria of plant height, grain yield, and LER in the MCRC, as well as grain index and related grain quality.