MUFTI PETALA PATRIA
Department of Biology, Faculty of Mathematics and Natural Sciences, Universitas Indonesia. Jl. Prof. DR. Sudjono D. Pusponegoro, Kampus UI Depok, Depok 16424, West Java, Indonesia

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Abundance and distribution of microplastics in seawater, sediment, and macroalgae sea grapes Caulerpa racemosa from Semak Daun Island, Jakarta Bay, Indonesia MUFTI PETALA PATRIA; NOER KHOLIS; DIAN ANGGREINI; FAEIZA BUYONG
Biodiversitas Journal of Biological Diversity Vol. 24 No. 6 (2023)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d240638

Abstract

Abstract. Patria MP, Kholis N, Anggreini D, Buyong F. 2023. Abundance and distribution of microplastics in seawater, sediment, and macroalgae sea grapes Caulerpa racemosa from Semak Daun Island, Jakarta Bay, Indonesia. Biodiversitas 24: 3424-3430. Microplastic pollution in marine ecosystems poses a significant global concern, specifically regarding the security of food derived from the sea. Macroalgae, as a food source from the sea, can be susceptible to contamination by microplastics. This research assessed the abundance and forms of microplastics in macroalgae sea grapes (Caulerpa racemosa (Forssk.) J.Agardh) collected from Semak Daun Island within the Seribu Island National Park. Additionally, the impact of washing and stirring on microplastic abundance was examined in macroalgae. The average number of microplastics and their identification showed that the washed, stirred, and NaOH-treated macroalgae samples contained an average abundance of 3.28±0.31 particles/g, 5.06±0.59 particles/g, and 2.0±0.81 particles/g, respectively. Furthermore, microplastics were detected in seawater and sediment samples, with an average abundance of 8.2±2.19 particles/L and 15,200±4,932 particles/Kg, respectively. Fragmented microplastics were the predominant form in macroalgae, while fibrous microplastics dominated seawater and sediment samples. Significant differences were observed between the washed and stirred samples (p = 0.009), where the stirred sample exhibited a higher reduction percentage. Microplastics in edible macroalgae indicated the potential hazards of exposure and subsequent accumulation in the human body.
Exploring plastic-degrading enzyme producers from Ascidian-associated bacteria in Karimunjawa Islands, Indonesia DIAH AYUNINGRUM; MOH YUNUS SHUKOR; MUFTI PETALA PATRIA; BUNTORA PASARIBU; SULISTIOWATI SULISTIOWATI
Biodiversitas Journal of Biological Diversity Vol. 26 No. 3 (2025)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d260303

Abstract

Abstract. Ayuningrum D, Shukor MY, Patria MP, Pasaribu B, Sulistiowati S. 2025. Exploring plastic-degrading enzyme producers from Ascidian-associated bacteria in Karimunjawa Islands, Indonesia. Biodiversitas 26: 1050-1061. Ascidians are sessile, benthic invertebrate chordates that attach to various substrates, including hard corals, ship decks, buoys, and marine debris such as wood or plastic waste. This study aimed to isolate ascidian-associated bacteria from Karimunjawa National Park, explore their potential as PETase enzyme producers, and identify the bacteria using morphological and molecular approaches via the 16S rRNA gene. The research employed an exploratory descriptive and experimental approach. A total of nine ascidian samples were used as inoculum sources, specifically Eusynstyela sp., Didemnum sp., Clavelina arafurensis, Pseudodistoma fragile, Lissoclinum sp., Rhopalaea crassa, Phallusia sp., Rhopalaea macrothorax, and Aplidium breveriventer. From these samples, 45 pure bacterial isolates were obtained. Screening for plastic degradation activity revealed that 33% of the isolates exhibited enzymatic activity, with two isolates (13%) demonstrating plastic-degrading activity as many as ?5%. These two potential isolates, KJ12-01 Z (-4)/3 and KJ07-01 (-2)/1, were identified as Gram-positive cocci and Gram-negative rods, respectively. Sequence alignment and BLAST analysis from 16S rRNA gene amplification using PCR technique on the NCBI database showed that bacterial isolate of KJ12-01 Z (-4)/3 had 99.16% similarity with Staphylococcus condimenti, while KJ07-01 (-2)/1 had 99.36% similarity with Alloalcanivorax dieselolei. These findings indicate that ascidian-associated bacteria can serve as a promising source of PETase enzyme-producing inoculum.