Microplastics in the Gastrointestinal Tract of Blue Crab (Portunus pelagicus) Caught by Bandaran, Bangkalan Fishermen at Different Sizes

Sri Astutik, Indah Wahyuni Abida

Abstract


Microplastics are plastic waste that is degraded into small sizes that float in water bodies and can be ingested by aquatic biota. This study aims to determine the shape, color, and abundance of microplastics in the digestive tract of blue swimming crab (Portunus pelagicus) caught by fishermen in Bandaran Village, Bangkalan at different sizes. Swimming crab sampling was carried out 3 times with different sizes, namely small, medium, and large. Identification of microplastics using a solution of H2SO4 and H2O2 with a concentration of 30% with a ratio of 3:1. Microplastic forms found include fiber, fragments, and films. The highest abundance of microplastics was found in large crabs with a value of 3.13 particles/g. The simple regression test results obtained a relatively small R² value of 0.0003 meaning that the size of the crab has a very small correlation with the abundance of microplastics in the digestive tract.


Keywords


Microplastic; Crab; Portunus pelagicus; Digestive tract

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References


Arico, Z., & Jayanthi, S. Pengolahan Limbah Plastik Menjadi Produk Kreatif Sebagai Peningkatan Ekonomi Masyarakat Pesisir. J. Pengabdi. Kpd. Masy. 1, 1–6 (2018).

Galgani, F. The Mediterranean Sea : From Litter to Microplastic. (Micro 2015: Book of Abstracts).

Haji, A.TS., Rahadi, B., & Firdausi, N. Analisis Kelimpahan Mikroplastik Pada Air Permukaan di Sungai Metro, Malang. J. Sumberd. Alam dan Lingkung. 8, 78–84 (2021).

Fitria, S.N., Anggraeni, V., Abida, I.W., & Junaedi, A. . Identifikasi Mikroplastik pada Gastropoda dan Udang di Sungai Brantas. Environ. Pollutian J. 1, 159–166 (2021).

Von Moss, N., Burkhardt-Holm, P., & Kohler, A. Uptake and Effects of Microplastics on Cells and Tisuue of the Blue Mussel Mytilus edulis L. after an Experimental Exposure. Environ. Sci. Technol. 46, 11327–11335 (2012).

Wright, S.L., Thompson, R.C., & Galloway, T. The Physical Impact of Microplastics on Marine Organism : a Review. Environ. Pollut. 178, 483–492 (2013).

Kementrian Kelautan dan Perikanan. Produktivitas Perikanan Indonesia. (2018).

Fitriyah, A., Insafitri., & Nugraha, W. Mikroplastik pada Rajungan (Portunus pelagicus) di Perairan Tebul Kecamatan Kwanyar Kabupaten Bangkalan Madura. J. Ilmu Perikan. 13, 8–16 (2022).

Erlinda, S., Sara, L., & Irawati, N. Makanan Rajungan (Portunus pelagicus) di Perairan Lakara Kabupaten Konawe Selatan, Sulawesi Tenggara. J. Manaj. Sumber Daya Perair. 1, 131–140 (2016).

Anggraeni, V., Abida, I.W., Mariyana, R., & Yolanda, B. Kelimpahan Mikroplastik pada Perairan Bancaran, Sukolilo, Socah Kabupaten Bangkalan. Pros. Semin. Nas. Has. Penelit. Pertanian, Perikan. dan Kelaut. (2021).

Sugiyono. Metode Penelitian Kuantitatif, Kualitatif dan R & D. (Alfabeta, 2006).

Lai, J.CY., Ng, P.K.L., & Davie, P. J. A Revision of the Portunus pelagicus (Linnaeus, 1758) Species Complex (Crustacea: Brachyura: Portunidae, With the Recognition of Four Species. Raffles Bull. Zool. 58, 199–237 (2010).

Afifah, N. Morfometri dan Sebaran Ukuran Rajungan (Portunus pelagicus, Linnaeus 1758) di Perairan Pulau Lancang, Kabupaten Seribu. (Institut Pertanian Bogor, 2017).

Kamelia, N.D., & Muhsoni, F. Kajian Stok Rajungan (Portunus pelagicus) di Pendaratan Ikan Desa Bancaran Bangkalan. J. Kelaut. 13, 185–195 (2020).

Haspitasari, N. Analisis Kandungan Mikroplastik pada Pasir dan Ikan Demersal : Kakap (Lutjanus sp.) dan kerapu (Epinephelus sp.) di Pantai Ancol, Pelabuhan Ratu , dan Labuan. (Fakultas Matematika dan Ilmu Pengetahuan Alam, Institut Pertanian Bogor, 2016).

Bessa, F.P., Barria, J.M., Neto, J.P.GL., Frias, V., Otero, P., Sobral., & Marques, J. Occurence of Microplastics in Commercial Fish From a Natural Estuarine Environment. Mar. Pollut. Bull. 128, 575–584 (2018).

Nor, M., & Obbard, J. Microplastics in Singapore’s Coastal Mangrove Ecosystems. Mar Pollut Bull 79 1, 278–283 (2014).

Crawford, C.B., & Quinn, B. Microplastic Identification Techniques, in : Microplastics Pollutans. Elsevier pp, 159=178 (2017).

Rochman, C.M., Tahir, A., Williams, S.L., Baxa, D.V., Lam, R., & Miller, J.T., S. . Plastic Debris in Seafood: Plastic Debris and Fiber from Textiles in 59 Fish and Bilvalves Sold for Human Consumption. Sci. Rep. 5, 14340 (2015).

Septian. Sebaran Spasial Mikroplastik di Sedimen Pada Pantai Pangandaran, Jawa Brat. J. Geomaritim Indones. 1, 1–8 (2014).

Harpah, N., Suryati, I., Leonardo, R., Rizky, A., Ageng, P., & Addauwiyah, R. Analisa Jenis, Bentuk dan Kelimpahan Mikroplastik di Sungai Sei Sikambing Medan. J. Sains dan Teknol. 20, 108–115 (2020).

Yona, D., Harlyan, L.I., Fuad, M.A.Z., Prananto, Y.P., Ningrum, D., & Evitantri, M. . Komposisi Mikroplastik pada Organ Sardinella Lemuru yang Didaratkan di Pelabuhan Sendangbiru, Malang. J. Fish. Mar. Res. 5, 675–684 (2021).

Ernawati, T., Boer, M., & Y. Biologi Populasi Rajungan (Portunus pelagicus) di Perairan Sekitar Wilayah Pati, Jawa Tengah. Bawal 6, 31–40 (2014).

Hiwari, H., Purba, N.P., Ihsan, Y.N., Yuliadi, L.P.S., & Mulyani, P. Kondisi sampah mikroplastik di permukaan air laut sekitar Kupang dan Rote, Provinsi Nusa Tenggara Timur. Pros. Semin. Nas. Masy Biodiv Indon 5, 165–171 (2019).




DOI: https://doi.org/10.26555/symbion.11699

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