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Gunung Djati Conference Series
ISSN : 27746585     EISSN : -     DOI : -
Gunung Djati Conference Series merupakan penyedia layanan publikasi dan konferensi berbagai bidang keilmuan yang diterbitkan oleh UIN Sunan Gunung Djati Bandung dan sebagai sarana publikasi hasil penelitian. Penerbit ini memuat artikel yang belum pernah dipublikasikan sebelumnya yang berupa artikel hasil penelitian ataupun penelitian terapan. Informasi mengenai pedoman penulisan artikel dan prosedur pengiriman artikel terdapat pada setiap penerbitan. Semua artikel yang masuk akan melalui ‘peer-review process’ setelah memenuhi persyaratan sesuai pedoman penulisan artikel, kemudian penerbit menyerahkan semua template ke pelaksana konferensi keilmuan. Penerbitan artikel ini dilakukan sesuai kegiatan yang dilaksanakan oleh penyelenggara konferensi.
Arjuna Subject : Umum - Umum
Articles 2,030 Documents
INOCULATION TECHNIQUE OF COLLETOTRICHUM GLOEOSPORIOIDES AFFECTS Phyllanthus niruri L. GROWTH AND BIOACTIVE COMPOUND SYNTHESIS Irna Surya Bidara; Siti Himawati; Eka Nurhangga; Yomi Guno; Winda Nawfetrias
Gunung Djati Conference Series Vol. 66 (2026): The International Conference on Perennial Crops 2026
Publisher : UIN Sunan Gunung Djati Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15575/gdcs.v66i.3414

Abstract

Colletotrichum gloeosporioides, an endophytic fungus, significantly enhances growth, defense against pathogens, and remediation of environmental stress in medicinal plants through induced resistance and phytohormone synthesis. The application technique affects the fungi's effectiveness in stimulating growth and inducing bioactive compounds in plants. Phyllanthus niruri is an Indonesian medicinal plant with bioactive compounds like flavonoids, alkaloids, terpenoids, lignans, polyphenols, tannins, and saponins. They offer health benefits like antioxidant, anti-inflammatory, analgesic, and antiviral effects. However, research on Phyllanthus-endophytic fungi from the Colletotrichum has not been reported. This study proposes that the application technique used for C. gloeosporioides affects the fungi's effectiveness in stimulating plant growth and inducing beneficial bioactive compounds. We experimented during 2022 and 2023 at an experimental greenhouse with two different methods of fungi inoculation: seed and planting medium. The study reveals that C. gloeosporioides inoculation impacts P. niruri growth differently, with seed inoculation promoting growth and planting medium inoculation potentially hindering it. Metabolic profiling through clustering analysis indicates that fungal inoculation significantly alters the plant's chemical composition, particularly increasing the abundance of specific alkenes, suggesting activation of defense mechanisms involving very long-chain fatty acids. It highlights the critical role of the inoculation method in shaping plant-microbe interactions and influencing the production of pharmacologically relevant compounds like steroids, diketones, alkanes, and alkenes, which may serve in the plant's defense responses and have beneficial impacts on human health. Therefore, optimizing inoculation strategies and understanding the underlying biological mechanisms are crucial for harnessing the potential benefits of microbial inoculants in agriculture and biotechnology.
THE RATIO OF SILICA FERTILIZATION TO NITROGEN ON RICE PLANT PRODUCTIVITY Budy Frasetya Taufik Qurrohman; Fitriani Adiningsih; Jajang Supriatna
Gunung Djati Conference Series Vol. 66 (2026): The International Conference on Perennial Crops 2026
Publisher : UIN Sunan Gunung Djati Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15575/gdcs.v66i.3415

Abstract

Rice plants are Si accumulators, but in the field farmers rarely apply silica fertilizer, farmers tend to prioritize nitrogen fertilizer. In fact, rice plants need balanced elements of silica and nitrogen in the soil.. The aim of this research is to determine the effect of application the ratio of silica to nitrogen fertilizer and to obtain the best ratio of silica application to nitrogen fertilizer. The method used in this research was a randomized block design with 6 treatments and 5 replications, the treatments give were: A = control; B = Si: N (0,8); C = Si: N (1); D = Si: N (1,2); E = (Si: N 1,4); F = (Si: N 1,6). As indicators for rice plant productivity in this research were productive tiller, weight of 1000 grains, and rice plant yield per clump. The research results showed that the ratio (0, 8) of applying silica fertilizer to nitrogen fertilizer was potential to increase rice plant productivity.
FROM CONVENTIONAL FERTILIZATION TO INTELLIGENT CULTIVATION: HARNESSING TRICHODERMA-BASED TRICHOCOMPOST TO SUPPORT SUSTAINABLE AGROINDUSTRY 4.0 IN MAIZE PRODUCTION Rida Iswati; Angry Pratama Solihin; Siska Irhamnawati Pulogu; Sofyan S. Rudin
Gunung Djati Conference Series Vol. 66 (2026): The International Conference on Perennial Crops 2026
Publisher : UIN Sunan Gunung Djati Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15575/gdcs.v66i.3416

Abstract

Maize production in low-organic-matter soils requires cultivation technologies that can sustain yield while reducing dependence on inorganic fertilizers. Trichocompost enriched with local Trichoderma isolates offers a promising biological input to improve soil function, plant growth, and productivity. This study evaluated the effectiveness of trichocompost prepared with Trichoderma asperellum TZ11DI1 and Trichoderma reesei TZ31DU1 on maize growth, biomass, and yield components under reduced inorganic fertilizer application. The field experiment was conducted in Gorontalo Province, Indonesia, using a randomized complete block design with three treatments and three replications: full recommended inorganic fertilizer without trichocompost, 75% inorganic fertilizer combined with TZ11DI1 trichocompost, and 75% inorganic fertilizer combined with TZ31DU1 trichocompost. Growth, root development, biomass, and yield components were measured during vegetative growth and after harvest. The results showed that both trichocompost treatments improved plant height, number of leaves, root length, root biomass, shoot biomass, ear development, kernel weight, and 1000-kernel weight compared with the control. TZ11DI1 produced the best performance in most shoot and yield parameters, including plant height, leaf number, shoot biomass, ear weight, kernel weight, and 1000-kernel weight, whereas TZ31DU1 was more effective in increasing root length and root biomass. These findings indicate that local Trichoderma-based trichocompost can maintain and enhance maize productivity while reducing inorganic fertilizer use by 25%. This technology provides a practical and environmentally friendly strategy for sustainable maize cultivation and supports biological innovation in Agroindustry 4.0.
GROWTH AND MORPHOLOGICAL DIVERSITY OF 16 SINENSIS TEA CLONES (Camellia sinensis (L.) Kuntze var. sinensis) DURING SEEDLING PHASE Syahrul Firdaus A. L; Ida Adviany; Heri Syahrian; Vitria P. Rahadi; M. Khais Prayoga
Gunung Djati Conference Series Vol. 66 (2026): The International Conference on Perennial Crops 2026
Publisher : UIN Sunan Gunung Djati Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15575/gdcs.v66i.3417

Abstract

This study investigated the morphological diversity and population structure of 16 Sinensis tea clones (Camellia sinensis (L.) Kuntze var. sinensis) during the nursery phase to support superior variety development. The research was conducted at the Gambung Tea and Kina Research Center, West Java, using morphological and growth trait analysis. Data were analyzed using Principal Component Analysis (PCA) and Cluster Analysis. The results revealed significant morphological variation among the clones, particularly in leaf number, shoot color, and leaf blade morphology. PCA indicated that 88% of the phenotypic variation was explained by five principal components, with the number of leaves and second leaf color at the p+2 position identified as the most influential traits for clonal differentiation. Cluster analysis classified the 16 clones into two distinct kinship groups, with the second group comprising 81.25% of the tested population. These findings provide essential insights into the genetic and morphological landscape of Sinensis tea clones, establishing a robust framework for parent selection and future breeding programs aimed at producing high-quality varieties for the international green tea market.
GROWTH RESPONSE OF Melaleuca leucadendron L. EXPLANTS TO VARIOUS CONCENTRATIONS OF WPM MEDIUM AND THIDIAZURON IN VITRO Azizah Nurul Aulia; Susiyanti; Sulastri Isminingsih; Andi Apriany Fatmawaty
Gunung Djati Conference Series Vol. 66 (2026): The International Conference on Perennial Crops 2026
Publisher : UIN Sunan Gunung Djati Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15575/gdcs.v66i.3418

Abstract

This study aimed to investigate the effects of Woody Plant Medium (WPM) concentration and Thidiazuron (TDZ) on the in vitro morphogenesis response of Melaleuca leucadendron L. leaf explants. The research was conducted from November 2025 to March 2026 at the Plant Physiology and Biotechnology Laboratory, Faculty of Agriculture, Sultan Ageng Tirtayasa University. This research used a factorial randomized block design, consisting of three levels of WPM concentration (¼, ½, and full-strength WPM) and three levels of TDZ concentration (0.25, 0.50, and 0.75 mg L-1). Young leaf explants were cultured under controlled conditions (25 ± 2°C, dark incubation). The fastest explant rolling time 1.0 Week After Planting (WAP) was achieved in the combination of ¼ WPM + 0.25 mg L-1 TDZ. The results showed that WPM concentration significantly affected explant diameter at 6 weeks after planting (WAP), while TDZ concentration significantly affected explant diameter at both 6 and 8 WAP. A highly significant interaction between WPM and TDZ was observed for explant diameter at 8 WAP. The treatment combination of ¼ WPM and 0.75 mg L-1 TDZ produced the highest mean diameter (0,366 cm). A notable finding was the occurrence of direct rhizogenesis in two treatment combinations (¼ WPM + 0.75 mg L-1 TDZ and ½ WPM + 0.50 mg L-1 TDZ), attributed to the auxin-like activity of TDZ under dark incubation conditions.
NITROGEN MINERALIZATION RATE IN COMBINED APPLICATION OF ORGANIC AND INORGANIC NITROGEN FERTILIZERS ON INCEPTISOL’S BENGKULU Kartika Utami; Hepyliani Marsanda; Sukisno; M. Faiz Barchia; H. Gusmara
Gunung Djati Conference Series Vol. 66 (2026): The International Conference on Perennial Crops 2026
Publisher : UIN Sunan Gunung Djati Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15575/gdcs.v66i.3419

Abstract

Inceptisol is characterized by poor soil chemical properties, particularly a deficiency of nitrogen (N), one of the essential macronutrients required by plants in large amounts but typically present in soil at low availability. This study aimed to determine the rate of N mineralization resulting from the combined application of ZA fertilizer (21% N) and cow manure on Inceptisol soil from Bengkulu. The experiment was conducted from November 2023 to March 2024 at the Soil Science Laboratory, Faculty of Agriculture, University of Bengkulu, using a single-factor Completely Randomized Design (CRD) with four treatments: 100% ZA fertilizer (400 kg ha⁻¹), 50% ZA + 50% organic fertilizer, 30% ZA + 70% organic fertilizer, and 100% organic fertilizer (25,000 kg cow manure ha⁻¹), each replicated three times across five incubation intervals (7, 14, 28, 42, and 70 days after incubation/DAI), producing 60 experimental units. Ammonium (NH4⁺) and nitrate (NO3⁻) concentrations were measured periodically, and the mineralization rate was calculated using a first-order kinetic model. The results showed that the combination of 50% ZA and 50% organic fertilizer produced the highest NO3⁻ mineralization rate (2.37 ppm day⁻¹), while 100% organic fertilizer produced the highest NH4⁺ mineralization rate (0.93 ppm day⁻¹). Sole application of ZA fertilizer resulted in a negative NH4⁺ mineralization rate (-2.96 ppm day⁻¹), indicating rapid conversion of NH4⁺ into NO3⁻ through nitrification. These findings suggest that the combination of inorganic and organic N fertilizers provides a more sustained and balanced N mineralization pattern than either fertilizer applied alone, offering a practical strategy for improving N availability in Inceptisol soils.
STUDY OF LIFE CYCLE ASSESSMENT AND IMPROVEMENT FOR REDUCING GREENHOUSE GAS EMISSIONS IN TEA SHOOT FIELD PRODUCTION Rezamela Erdiansyah; R. Wulansari; M. K. Prayoga; I. Fitri; E. Pranoto; Rosmeika; A. Sulaswaty
Gunung Djati Conference Series Vol. 66 (2026): The International Conference on Perennial Crops 2026
Publisher : UIN Sunan Gunung Djati Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15575/gdcs.v66i.3420

Abstract

Tea industry is a crucial agricultural sector in Indonesia, that both contributes to and absorbs greenhouse gas (GHG) emissions. However, limited information exists about GHG emission during these processes. Chemical fertilizers predicted contribute the most portion to GHG emissions in the field, while tea cultivation requires nitrogen in a dominant composition with the most readily available source coming from urea fertilizer. Therefore, the objectives of this study are to calculate the impact of Global Warming Potential (GWP) in tea shoot field production process and to explore methods for reducing GWP through demonstration plots through a combination of bio-organo-mineral fertilizer applications to reduce urea use. The study was conducted in Negarakanaan Tea Plantation (1.350 m asl), West Java Indonesia during 2023 to 2024. The assessment of the life cycle impacts in field activities calculated using the Cool Farm Tool (CFT) software. There was no significant difference in total fresh shoot production between Bio-Organo-mineral combine with 50% Urea (8,246 kg/0.48 ha) and conventional 100% chemical dose fertilizer (8,049 kg/0.48 ha), even Bio-organo-mineral demonstrated a greater improvement in shoot production, particularly during the productive phase of the tea plants (Pruned Years 2 and 3). The GHG’s Emission for Bio-organo-mineral were only 55.16 kg CO₂eq per tons compare to conventional plots 125.10 kg CO₂eq per tons and baseline cultivation 186.85 kg CO₂eq per tons. The Bio-organo-mineral treatment improved fertilizer efficiency around 35.98% by reducing the urea dosage by 57.71% and reduced total GHG emissions (CO₂eq) by 55.90% compared to conventional plots.
EVALUATION OF GROWTH RATE AND CHLOROPHYLL CONTENT OF CABBAGE MICROGREENS UNDER DIFFERENT LED LIGHT SPECTRA Rommy Andhika Laksono; Elsa Novyanti; Fawzi Muhammad BF; Nana Suryana Nasution; Anggun Pertiwi
Gunung Djati Conference Series Vol. 66 (2026): The International Conference on Perennial Crops 2026
Publisher : UIN Sunan Gunung Djati Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15575/gdcs.v66i.3421

Abstract

Microgreens are high-value horticultural commodities that are increasingly in demand due to their rich nutritional content and short harvesting period. One of the critical factors in microgreen cultivation is lighting, particularly the use of LED technology, which enables spectral manipulation according to the physiological requirements of plants. However, plant responses to light spectra are variety-specific, necessitating a thorough evaluation of the interaction between cultivar and LED spectrum to achieve optimal results. This study aimed to investigate the interaction effects between cabbage cultivars (Brassica oleracea var. Capitata) and LED spectra on plant height growth rate and chlorophyll content in microgreens. The experiment was conducted using a factorial Completely Randomized Design (CRD) with two factors: cultivar (Talenta F1, Takada F1, Summer Autumn, and Scarlet) and LED spectrum (white, blue, red, and a red–blue combination at 80%:20%). A total of 16 treatments were applied, each replicated twice. Observed parameters included plant height growth rate (cm/day) and chlorophyll content (unit). Data were analyzed using ANOVA at a 5% significance level, followed by Duncan’s Multiple Range Test (DMRT) when significant differences were detected. The results revealed a significant interaction between cultivar and LED spectrum for both observed parameters. The red spectrum (s₃) exerted the greatest influence on plant height growth rate, with the highest values recorded in Talenta F1 (0.40 cm/day) and Scarlet (0.31 cm/day). Conversely, the red–blue combination (s₄) produced the highest chlorophyll content, particularly in Scarlet (49.15 units) and Talenta F1 (40.35 units), indicating the synergistic effectiveness of combined spectra in supporting photosynthetic pigment synthesis. The Summer Autumn cultivar exhibited a positive response to the blue spectrum, while Takada F1 demonstrated flexibility under both white and red–blue spectra. The coefficients of variation (CV) were 15.47% for growth and 14.29% for chlorophyll, reflecting moderate variability and representative data quality.
FEASIBILITY STUDY JOURNAL OF ROBUSTA GROUND COFFEE BUSINES IN TANGGAMUS REGENCY Dwi Diana Sukmasari; Irmayani Noer; Ahfandi Ahmad
Gunung Djati Conference Series Vol. 66 (2026): The International Conference on Perennial Crops 2026
Publisher : UIN Sunan Gunung Djati Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15575/gdcs.v66i.3422

Abstract

Tanggamus Regency is one of the main producers of Robusta coffee in Lampung Province; however,the added value enjoyed by farmers is still limited to the sale of raw coffee beans (green beans). This study aims to analyze the business feasibility of establishing a Robusta ground coffee processing unit to increase the economic value of local commodities and community economic empowerment. The research method used is descriptive quantitative by evaluating five main aspects of business feasibility: market and marketing aspects,technical and production aspects,human resource management aspects,legal aspect,and financial aspects. Data were obtained through field observations,interviews with stakeholders, and trend analysis of the contemporary coffee market. The results of the analysis indicate that from the market aspect,the demand for locally processed coffee continues to increase in line with the lifestyle trends of quality coffee consumption. From the technical aspect,the abundant availability of raw materials in Tanggamus ensures production sustainability. Analysis of the financial aspect using indicators such as Net Present Value (NPV), Internal Rate of Return (IRR), Payback Period, and Net Benefit /Cost Ratio shows that this business has positive profit prospects and is feasible to implement. Coffee is a leading commodity for farmers in Lampung and its surroundings (South Sumatra and Bengkulu ). In 2019,the coffee production share of these three provinces reached 49 % of the national productions (BPS Lampung Province,2020). Robusta coffee is the largest agricultural crop in Indonesia produced in Lampung province, with an are of 162,954 hectares and production reaching 131,501 tons, with an average production capacity of 965 kg /ha. This study concludes that the development of the Robusta ground coffee industry in Tanggamus Regency is not only financially feasible but also strategic. In creating new job opportunities and strengthening the branding of regional coffee in the national market.
Biaya Article Processing Charges (APC): Studi Kasus Publikasi Artikel pada Jurnal Berdampak Tinggi Wahyudin Darmalaksana
Gunung Djati Conference Series Vol. 65 No. 1 (2026): Social Media, Artificial Intelligence, and the Future of Humanity
Publisher : UIN Sunan Gunung Djati Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

This study aims to examine Article Processing Charges (APC) in journal article publishing. This study employs a qualitative approach, utilizing the case study method. The findings indicate that global publishers set higher APC for high-impact journals using the open-access publishing model; however, they also offer a no-fee pathway—involving peer review, author revisions, and editorial acceptance—under a closed-access (subscription-based) model. The study concludes that APC are primarily targeted at competitive research projects supported by substantial funding to ensure high citation rates for published articles, whereas research findings intended for immediate public access can be uploaded to repositories as pre-prints, which do not incur APC.

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