ILMU KELAUTAN: Indonesian Journal of Marine Sciences
Vol 30, No 4 (2025): Ilmu Kelautan

Potential of Marine Sponge-Associated Fungi (Callyspongia sp.) as Textile Dye Biodegradation Agents

Erlita Dwi Octaviani (Department of Marine Science, Faculty of Fisheries and Marine Science, Universitas Diponegoro Marine Natural Product Laboratory, Centre for Research and Services, Universitas Diponegoro)
Agus Trianto (Department of Marine Science, Faculty of Fisheries and Marine Science, Universitas Diponegoro Marine Natural Product Laboratory, Centre for Research and Services, Universitas Diponegoro)
Ocky Karna Radjasa (National Research and Innovation Agency)
Bambang Yulianto (Department of Marine Science, Faculty of Fisheries and Marine Science, Universitas Diponegoro)
Agus Sabdono (Department of Marine Science, Faculty of Fisheries and Marine Science, Universitas Diponegoro)
Erin M. Cauley (California State University Dominguez Hills)



Article Info

Publish Date
20 Dec 2025

Abstract

Textile industries generate large volumes of wastewater containing synthetic dyes such as azo, naphthol, and rhodamine B, which are highly resistant to degradation and pose significant environmental risks when discharged into aquatic ecosystems. These dyes can be toxic to aquatic life, disrupt food chains, and cause long-term pollution. This study aimed to evaluate the biodegradation potential of marine fungi isolated from the sponge Callyspongia sp. as a natural and eco-friendly solution for textile dye removal. Two fungal isolates, RA.S12.1 and RA.S12.2, were tested on solid and liquid media with 200 ppm dye concentrations. Isolation involved collecting sponges from marine environments and culturing them on selective media to obtain fungal colonies. Decolorization was assessed through qualitative observations (changes in growth zone color) and quantitative analyses using UV-Vis spectrophotometry to measure absorbance reductions at specific wavelengths, as well as CMYK color measurements to quantify objective color intensity changes. Results indicated that isolate RA.S12.2 achieved the highest decolorization percentage of 64.8% for Azo Mordant Black 17 after 7 days of incubation, while RA.S12.1 reached only 30.1%. Molecular identification via ITS rDNA gene sequencing confirmed both isolates as Penicillium citrinum with 100% homology. These findings suggest that marine-derived P. citrinum holds strong potential as a bioremediation agent for textile dye degradation, offering an environmentally friendly alternative for wastewater treatment in coastal and marine areas impacted by industrial pollution. This approach could provide a sustainable alternative to conventional chemical methods, with broader applications in mitigating global aquatic pollution. Further research is needed to optimize conditions and test at an industrial scale.

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Journal Info

Abbrev

ijms

Publisher

Subject

Earth & Planetary Sciences

Description

ILMU KELAUTAN: Indonesian Journal of Marine Sciences (IJMS) is dedicated to published highest quality of research papers and review on all aspects of marine biology, marine conservation, marine culture, marine geology and ...