Bioprospecting Marine Endophytic Fungi from Buton Island: Antibacterial Activity and Cellulase Production for Sustainable Blue Economy

Penulis

  • Ismi - Isti'anah IPB University http://orcid.org/0000-0002-3135-6937 (tidak diautentikasi)
  • Kustiariyah Tarman
  • Wen-Chien Lee College of Engineering, National Chung Cheng University, Taiwan
  • Sugeng Heri Suseno Department of Aquatic Product Technology, Faculty of Fisheries and Marine Science, IPB University, Indonesia
  • Roni Nugraha Department of Aquatic Product Technology, Faculty of Fisheries and Marine Science, IPB University, Indonesia
  • Irzal Effendi Division of Marine Biotechnology, Center for Coastal and Marine Resources Studies (PKSPL), International Research Institute for Maritime, Ocean and Fisheries (i-MAR), IPB University, Indonesia Department of Aquaculture, Faculty of Fisheries and Marine Science, IPB University, Indonesia
  • Rodiah Nurbayasari Doctoral Program in Natural Resources and Environmental Management Science (NREMS), Graduate School of IPB University, School Building Floor II IPB Campus Baranangsiang Bogor 16144 Indonesia Research Center for Marine and Land Bioindustry, National Research and Innovation Agency, Laterio Building Jakarta 14430 Indonesia
  • Riyan Maulana Jakarta Technical University of Fisheries (Politeknik Ahli Usaha Perikanan (AUP), Jl. AUP Pasar Minggu, Jakarta, 12520, Indonesia Tual Surveillance for Marine And Fisheries Resources Base, Jl. Bukit Dumar No. 1, Tual Fishing Port Area, Maluku, Indonesia

DOI:

https://doi.org/10.15578/squalen.1024

Kata Kunci:

biotechnology, blue economy, cellulase, mangrove, sustainable

Abstrak

Marine-derived endophytic fungi represent an underexplored reservoir of biologically active metabolites and enzymes with industrial relevance. This study investigated the fungal diversity associated with seaweed, seagrass, and mangrove leaf tissues collected from Buton Island, Southeast Sulawesi, with particular emphasis on antibacterial properties and cellulolytic activity. Thirty-two fungal isolates were successfully recovered and characterized based on morphological features. Antibacterial assays against Vibrio harveyi showed that several isolates, notably WB 1-2, WB 6-2, and SM 27-2, produced clear inhibition zones ranging from 11 to 13 mm, demonstrating notable antibacterial efficacy. Among all isolates, Aspergillus terreus (WB 1-2) exhibited the highest cellulase activity and was therefore selected for further enzymatic evaluation. The crude cellulase displayed maximum activity at pH 4 and a temperature of 70 °C. Hydrolysis products were qualitatively analyzed using HPLC, confirming the presence of glucose. These results highlight the dual potential of marine endophytic fungi as sources of antibacterial agents and thermostable cellulases. This work lays the groundwork for future development of eco-friendly enzyme production and marine-based antimicrobial resources, supporting sustainable biotechnological innovation within the blue economy framework.

Biografi Penulis

  • Ismi - Isti'anah, IPB University
    Aquatic Product Technology IPB University, 1st rank

Diterbitkan

2025-12-31

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