AZERI GAUTAMA ARIFIN
Laboratory of Plant Breeding, Department of Agronomy, Faculty of Agriculture, Universitas Brawijaya. Jl. Veteran, Malang 65145, East Java, Indonesia

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In-situ screening of high-yielding maize (Zea mays) for climate resilience in the semi-arid tropics of East Nusa Tenggara, Indonesia ERLANGGA DWI ATMOJO; SHANASYA NAJWA DEVYA ASYARI; AZERI GAUTAMA ARIFIN; ARIFIN NOOR SUGIHARTO
Biodiversitas Journal of Biological Diversity Vol. 26 No. 12 (2025)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d261240

Abstract

Abstract. Atmojo ED, Asyari SND, Arifin AG, Sugiharto AN. 2025. In-situ screening of high-yielding maize (Zea mays) for climate resilience in the semi-arid tropics of East Nusa Tenggara, Indonesia. Biodiversitas 26: 6427-6436. Developing climate-resilient maize (Zea mays) is crucial for ensuring food security in Indonesia's semi-arid regions, particularly in East Nusa Tenggara, where recurring droughts severely impact maize productivity. Maize farming in these areas faces extreme environmental challenges, highlighting the need for varieties capable of thriving under water-limited conditions. This study evaluated the performance of ten top-cross maize hybrids (UB 21-UB 30), derived from elite S3 inbred lines, under semi-arid conditions, comparing them to two commercially available varieties as controls. Genetic parameters were calculated from variance components, phenotypic variation was assessed using analysis of variance, and superior hybrids were identified through hierarchical clustering and Genotype × Trait (GT) analysis. The studied traits showed medium to high heritability, with low to moderate genotypic and phenotypic coefficients of variation. UB 25 emerged as the top performer, with a potential yield of 6.39 t ha⁻¹, surpassing the best commercial variety. This hybrid also demonstrated significant drought resilience, characterized by a shorter anthesis-silking interval and fewer unfilled tips, both of which are essential for maintaining yield stability under drought stress. Additionally, UB 28 was identified as another promising hybrid, exhibiting high yield potential and favorable stress-adaptive traits. These results underscore the importance of in-situ screening to identify maize varieties tailored to the specific challenges of semi-arid environments. The hybrids identified in this study provide a strong foundation for developing drought-resilient maize in Indonesia's semi-arid tropics.
Exploring phenotypic variability in gamma‑irradiated melon (Cucumis melo) for early-generation putative mutant selection ASTRID IKA PARAMITHA; ARIFIN NOOR SUGIHARTO; BUDI WALUYO; AFIFUDDIN LATIF ADIREDJO; AZERI GAUTAMA ARIFIN
Biodiversitas Journal of Biological Diversity Vol. 27 No. 3 (2026)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d270324

Abstract

Abstract. Paramitha AI, Sugiharto AN, Waluyo B, Adiredjo AL, Arifin AG. 2026. Exploring phenotypic variability in gamma‑irradiated melon (Cucumis melo) for early-generation putative mutant selection. Biodiversitas 27 (3): d270324. https://doi.org/10.13057/biodiv/d270324. The melon (Cucumis melo), an agriculturally pivotal crop globally esteemed for its economic value, faces intrinsic breeding limitations due to restricted genetic diversity. Confronting these inherent challenges, gamma irradiation has emerged as a robust mutagenic agent, purposefully employed to elicit phenotypic variability and strategically advance the enhancement of elite melon cultivars. This investigation systematically explored phenotypic modifications induced by six discrete gamma irradiation doses (0-150 Gy) in two melon varieties, CMA and DKN. Comprehensive assessments of fruit weight, flesh thickness, sugar content, and rind color were conducted in the M2 generation, analyzed via descriptive and non-parametric statistics. Results revealed distinct dose-specific responses. Notably, G5 treatment yielded the highest mean sugar content in CMA (10.75°Brix), with DKN exhibiting substantial variation up to 15.00°Brix at G5. Fruit weight demonstrated considerable variability, exemplified by DKN at G1 (0.28-1.92 kg range). Both DKN and CMA consistently achieved their highest mean flesh thickness at G5. Statistical analyses confirmed significant differences across most irradiation doses for sugar content and flesh thickness in both varieties, while fruit weight showed significant effects exclusively at G4 for both CMA and DKN. Crucially, the study identified four novel putative mutant plants: one from CMA (G1) and three from DKN (G5). These putative mutants represent invaluable genetic resources, integrating dark rind color (absent in controls) with quantitative traits was not more than 5% lower than the control mean, thus proving highly advantageous for early generation selection. These findings unequivocally underscore gamma irradiation's profound potential in inducing beneficial phenotypic variability, offering critical foundations for breeding programs targeting enhanced melon fruit quality and marketability.