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Michael Anthony Thongiratama
Universitas Surabaya

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Effect of Light Color and Auxin on Callus Induction and Development in Amorphophallus muelleri Blume. Popy Hartatie Hardjo; Michael Anthony Thongiratama; Fenny Irawati; Didik Pudji Restanto
Vegetalika Vol 14, No 3 (2025)
Publisher : Universitas Gadjah Mada

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.22146/veg.106227

Abstract

Porang (Amorphophallus muelleri Blume) is a significant player in the international market, but its slow seedling growth rate is a major concern. This study, which holds significant implications for porang cultivation, aimed to accelerate the seedling growth phase through the induction of adventitious shoots from callus proliferation. We explored the use of plant growth regulators (PGRs), specifically auxins (NAA and 2,4-D) and cytokinins (BAP), in combination with variations in light color (white and white-blue). The observed parameters included the time of first callus and adventitious shoot emergence, callus growth, number of adventitious shoots, and callus coloration. Data were subjected to two-way analysis of variance (ANOVA) to evaluate the effects of plant growth regulator (PGR) type and light quality as independent variables. Statistical significance was assessed at a 95% confidence level using SPSS software. The combination of 1.0 ppm NAA and 0.5 ppm BAP in MS medium under white-blue light effectively accelerated callus induction from bulbil explants, with visible callus formation by day 8 and the fastest proliferation over 7 weeks. Under white light, the same PGR combination also promoted the earliest adventitious shoot formation by day 16 and yielded the highest number of shoots, totaling seven by the end of the culture period.
Delignification Effect of Aceh Patchouli Leaves (Pogostemon cablin Benth.) by Trichoderma viride on the Quality of Patchouli Oil Popy Hartatie Hardjo; Michael Anthony Thongiratama; Azminah Azminah Azminah; Theresia Desy Askitosari
Vegetalika Vol 15, No 3 (2026): In Publish
Publisher : Universitas Gadjah Mada

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.22146/veg.111559

Abstract

Aceh patchouli (Pogostemon cablin Benth.) is an aromatic plant that produces essential oil, with patchouli alcohol (PA) as the primary compound determining its quality. This study aimed to investigate the effects of delignification using the fungus Trichoderma viride on PA content, other chemical components in patchouli oil, and the functional group characteristics of the oil. A factorial experimental design was employed, with the first factor being leaf delignification (control without delignification, natural delignification, and delignification by T. viride for 5 days), and the second factor being the extraction method (hydrodistillation and steam distillation). PA content and the composition of volatile compounds were analyzed using Gas Chromatography–Mass Spectrometry (GC–MS), while Fourier-Transform Infrared (FTIR) spectroscopy was used to characterize functional groups. This study provides a novel integrated approach by combining biological delignification using T. viride with different distillation techniques and spectroscopic–multivariate analysis to systematically evaluate changes in patchouli oil composition and extraction efficiency. The results indicated that delignification by T. viride significantly increased PA content, with the highest concentration reaching 61.12%, compared to 37.96% in the control treatment. The levels of other compounds, such as caryophyllene, decreased following delignification, indicating a shift in chemical composition. Delignification treatment had a significant effect on PA content, whereas the distillation method showed no significant difference. FTIR analysis revealed consistent major functional groups, including O–H and C–H vibrations, suggesting that the primary chemical functionalities of the oil were retained. However, these results should be interpreted cautiously due to the complex mixture nature of essential oils and the overlapping of spectral bands. Overall, T. viride demonstrated potential as an effective and environmentally friendly biological pretreatment agent to enhance patchouli oil quality by improving PA yield without evident alteration of its dominant functional groups.