Water Quality Assessment of Bagek Kembar Mangrove Ecosystem Using Phytoplankton as A Bioindicators
Authors
Yoszi Setiawan , Lalu Japa , Prapti SedijaniDOI:
10.29303/jbt.v26i1.11492Published:
2026-02-28Issue:
Vol. 26 No. 1 (2026): Januari-MaretKeywords:
Anthropogenic disturbance, Bioindicator, Mangrove ecosystem, Phytoplankton, Water qualityArticles
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Abstract
Mangrove ecosystems are highly dependent on surrounding water quality, which can be effectively assessed using biological indicators such as phytoplankton communities. This study aimed to analyze the water quality of the Bagek Kembar Mangrove Essential Ecosystem, West Lombok, based on phytoplankton community. The research employed a descriptive exploratory design with purposive sampling at three mangrove ecosystem types: pond area, rehabilitated mangrove, and natural mangrove. Phytoplankton samples were collected using a plankton net and analyzed for abundance, species diversity, evenness, and dominance. Physical and chemical parameters including temperature, pH, and salinity were also study fully identified 67 species of phytoplankton with a total abundance of 2,542.5 ind/L. Merismopedia elegans was a dominant species, particularly in the pond area. Diversity indices ranged from low to moderate, evenness valuew indicated relatively stable communities, and dominance indexs showed no species dominance. These results indicated that the waters of the Bagek Kembar mangrove ecosystem are generally in good condition with mild ecological pressure influenced by anthropogenic activities. This study provides baseline ecological data to support sustainable management and conservation strategies for mangrove essential ecosystems of Bagek kembar, West Lombok.
References
Aaimérance, K., Daniel, K., Davy, Z., Thomas, E., & Tchoumboue, P. (2022). Species richness, diversity and distribution of phytoplankton in fertilised ponds of the Western Highlands agro-ecological zone of Cameroon. Asian Journal of Environment & Ecology, 19(4), 1–12. https://doi.org/10.9734/ajee/2022/v19i4423
Ahmed, S., Sarker, S., Friess, D. A., Jacobs, M., Islam, M., Alam, M., Suvo, M. A. H., Hossain, M., Dey, T., Sullibie, C., Naabeh, S., & Pretzsch, H. (2022). Salinity reduces site quality and mangrove forest functions: From monitoring to understanding. Science of the Total Environment, 824, 158662. https://doi.org/10.1016/j.scitotenv.2022.158662
Aminah, S., Nuraini, R., & Djunaedi, A. (2020). Komposisi dan kelimpahan fitoplankton di perairan Pandansari, Desa Kaliwlingi, Kabupaten Brebes, Jawa Tengah. Journal of Marine Research, 9(1), 81–86. https://doi.org/10.14710/jmr.v9i1.25793
Apresia, F., & Wahyudi, N. (2025). Stabilitas ekosistem marikultur udang vannamei pada komunitas fitoplankton melalui indeks saprobik di Desa Kedongkelor, Kabupaten Pemalang. Journal of Marine Research, 14(2). https://doi.org/10.14710/jmr.v14i2.50555
Arofah, S., Sari, L., & Kusdarwati, R. (2021). The relationship with N/P ratio to phytoplankton abundance in mangrove Wonorejo waters, Rungkut, Surabaya, East Java. IOP Conference Series: Earth and Environmental Science, 718, 012018. https://doi.org/10.1088/1755-1315/718/1/012018
Aulia, P., & Hutasuhut, M. (2025). Phytoplankton diversity as a water quality bioindicator of mangrove ecosystems in the mangrove rehabilitation and mangrove ecotourism area of Merdeka Beach, Serdang Bedagai. Biology, Medicine, & Natural Product Chemistry, 14(1), 575–583. https://doi.org/10.14421/biomedich.2025.141.575-583
Barroso, G., Gomes, L., & Oliveira, S. (2025). Planktonic communities as indicators of water quality in a tropical reservoir. Environmental Management, 75, 1571–1588. https://doi.org/10.1007/s00267-025-02157-7
Borics, G., Abonyi, A., Salmaso, N., & Ptáčník, R. (2020). Freshwater phytoplankton diversity: Models, drivers and implications for ecosystem properties. Hydrobiologia, 848, 53–75. https://doi.org/10.1007/s10750-020-04332-9
Carneiro, F. M., Santos, A. M., Medina, N. M., De Marco Júnior, P., & Hortal, J. (2024). Drivers of phytoplankton diversity in tropical artificial ponds. Perspectives in Ecology and Conservation, 22, 1–10. https://doi.org/10.1016/j.pecon.2024.03.001
Chandel, P., Mahajan, D., Thakur, K., Kumar, R., Kumar, S., Brar, B., Sharma, D., & Sharma, A. (2023). A review on plankton as a bioindicator: A promising tool for monitoring water quality. World Water Policy. https://doi.org/10.1002/wwp2.12137
Cui, Y., Dong, J., Wang, H., Shang, M., Xie, H., Du, Y., Li, Y., & Wang, Y. (2023). Spatiotemporal response of water quality in fragmented mangroves to anthropogenic activities and recommendations for restoration. Environmental Research, 117075. https://doi.org/10.1016/j.envres.2023.117075
De Jong, C., Van Os, I., Sepúlveda-Rodríguez, G., De Baat, M., & Schoepf, V. (2025). High-resolution temporal assessment of physicochemical variability and water quality in tropical semi-enclosed bays and coral reefs. Science of the Total Environment, 968, 178810. https://doi.org/10.1016/j.scitotenv.2025.178810
De Melo, V., Suter, M., & Narwani, A. (2025). Light and nutrients modulate the temperature-sensitivity of growth in phytoplankton. Limnology and Oceanography Letters, 10. https://doi.org/10.1002/lol2.10453
Dermawan, A., & Mujib, A. (2025). Environmental monitoring of coastal waters in Poja Village, Bima Regency: A scientific base for sustainable marine resource management. Jurnal Biologi Tropis, 25(2). https://doi.org/10.29303/jbt.v25i2.8836
Dhal, P., Kopprio, G. A., & Gärdes, A. (2019). Insights on aquatic microbiome of the Indian Sundarbans mangrove areas. PLoS ONE, 14(2), e0221543. https://doi.org/10.1371/journal.pone.0221543
Dittmann, S., Mosley, L. M., Stangoulis, J., Nguyen, V., Beaumont, K., Dang, T., Guan, H., Gutiérrez-Jurado, K., Lam-Gordillo, O., & McGrath, A. (2022). Effects of extreme salinity stress on a temperate mangrove ecosystem. Frontiers in Forests and Global Change, 5, 859283. https://doi.org/10.3389/ffgc.2022.859283
Dongoran, K. (2025). Analysis of primary productivity and phytoplankton abundance in pond, estuary, and marine ecosystems in Maros coastal waters to support aquaculture sustainability. Journal of Earth Kingdom, 2(2). https://doi.org/10.61511/jek.v2i2.2025.1497
Febriansyah, S., Hakim, L., & Retnaningdyah, C. (2022). Evaluation of mangrove water quality in Pancer Cengkrong and Sine, East Java, Indonesia using phytoplankton as bioindicators. Jurnal Ilmiah Perikanan dan Kelautan, 14(2). https://doi.org/10.20473/jipk.v14i2.32459
Febriansyah, S., Hakim, L., Saptoyo, S., & Retnaningdyah, C. (2023). Phytoplankton diversity as a bioindicator of water quality mangrove ecosystems in Clungup Mangrove Conservation, Kondang Merak and Sempu Island, Malang Regency. Journal of Tropical Biodiversity and Biotechnology. https://doi.org/10.22146/jtbb.73002
Fonge, A., Tabot, P., Mumbang, C., & Mange, C. (2016). Water quality and phytoplankton community structure in mangrove streams under different logging regimes in Cameroon. African Journal of Ecology, 54, 39–48. https://doi.org/10.1111/aje.12256
Heinrichs, A., Happe, A., Koussoroplis, A., Hillebrand, H., Merder, J., & Striebel, M. (2025). Temperature-dependent responses to light and nutrients in phytoplankton. Ecology, 106. https://doi.org/10.1002/ecy.70027
Hendrasarie, N., & Kartika, S. (2024). Phytoplankton diversity as bioindicator of water quality in mangrove area of Surabaya East Coast. Jurnal Presipitasi, 21(1), 237–248. https://doi.org/10.14710/presipitasi.v21i1.237-248
Henson, S. A., Cael, B. B., Allen, S. R., & Dutkiewicz, S. (2021). Future phytoplankton diversity in a changing climate. Nature Communications, 12, 5372. https://doi.org/10.1038/s41467-021-25699-w
Hilaluddin, F., Yusoff, F. M., Natrah, F. M. I., & Lim, P. T. (2020). Disturbance of mangrove forests alters estuarine phytoplankton community structure. Marine Environmental Research, 158, 104935. https://doi.org/10.1016/j.marenvres.2020.104935
Hilaluddin, F., Yusoff, F., & Toda, T. (2020). Shifts in diatom dominance associated with seasonal changes in an estuarine-mangrove phytoplankton community. Journal of Marine Science and Engineering, 8(7), 528. https://doi.org/10.3390/jmse8070528
Hossain, N., Rahman, S., Hossain, M., Hafiz, K., Sowrav, S., Masud-Ul-Alam, M., & Choudhury, T. (2025). Decoding phytoplankton quality in the waterways of the Sundarbans mangrove forest, Bangladesh. Marine Pollution Bulletin, 213, 117669. https://doi.org/10.1016/j.marpolbul.2025.117669
Hu, C., Xie, C., Yang, W., Liu, Q., Gao, Y., Zeng, Y., Li, H., Sun, J., & Wang, C. (2024). Function rather than structure of phytoplankton community reveals water quality changes in a restored lake. Environmental Monitoring and Assessment, 196. https://doi.org/10.1007/s10661-024-12398-4
Hu, M., Sardans, J., Sun, D., Yan, R., Wu, H., Ni, R., & Peñuelas, J. (2024). Microbial diversity and keystone species drive nutrient cycling following mangrove restoration. Environmental Research, 238, 118715. https://doi.org/10.1016/j.envres.2024.118715
Inyang, A., Wang, Y., & Cheng, H. (2022). Application of microalgae assemblages’ parameters for ecological monitoring in mangrove forest. Frontiers in Marine Science, 9. https://doi.org/10.3389/fmars.2022.872077
Jamiyyah, S., Japa, L., & Ilhamdi, M. (2025). Community structure of phytoplankton in the waters of Bagek Kembar mangrove ecosystem essential area, Sekotong, West Lombok. Jurnal Biologi Tropis, 25(1). https://doi.org/10.29303/jbt.v25i1.8617
Luo, J., Huang, Q., Zhang, H., Xu, Y., Zu, X., & Song, B. (2024). Impact of conservation in the Futian Mangrove National Nature Reserve on water quality in the last twenty years. Forests, 15(7), 1246. https://doi.org/10.3390/f15071246
Mack, M., Langley, J., Feller, I., & Chapman, S. (2024). The ecological consequences of nutrient enrichment in mangroves. Estuarine, Coastal and Shelf Science, 108690. https://doi.org/10.1016/j.ecss.2024.108690
McSherry, M., Davis, R., Andradi-Brown, D., Ahmadia, G., Van Kempen, M., & Brian, S. (2023). Integrated mangrove aquaculture: The sustainable choice for mangroves and aquaculture? Frontiers in Forests and Global Change, 6. https://doi.org/10.3389/ffgc.2023.1094306
Nindarwi, D., Samara, S., & Santanumurti, M. (2021). Nitrate and phosphate dynamics of phytoplankton abundance in Kanceng River, Sepuluh, Bangkalan, East Java, Indonesia. IOP Conference Series: Earth and Environmental Science, 679, 012063. https://doi.org/10.1088/1755-1315/679/1/012063
Ren, J., Yang, G., Sun, W., Huang, K., Lu, C., Yu, W., Zhang, X., Chen, B., Liu, W., & Feng, T. (2025). Spatiotemporal changes in China’s mangroves and their possible impacts on coastal water quality from 1998 to 2018. Remote Sensing, 17(9), 1640. https://doi.org/10.3390/rs17091640
Retnaningdyah, C., Arisoesilaningsih, E., Vidayanti, V., Salsabila, Q., & Purnomo, P. (2024). Habitat quality and aquatic biodiversity relationships in mangrove ecosystems of Bawean Island. Biodiversitas, 25(7). https://doi.org/10.13057/biodiv/d250723
Retnaningdyah, C., Febriansyah, S., & Hakim, L. (2023). Evaluation of the quality of mangrove ecosystems using macrozoobenthos as bioindicators in the southern coast of East Java, Indonesia. Biodiversitas, 23(12). https://doi.org/10.13057/biodiv/d231247
Retnaningdyah, C., Ridlo, I., Febriansyah, S., & Nusantara, O. (2021). Water quality evaluation of some mangrove ecosystems with variations of time restoration in South Malang, East Java, Indonesia. IOP Conference Series: Earth and Environmental Science, 743, 012011. https://doi.org/10.1088/1755-1315/743/1/012011
Röthig, T., Trevathan-Tackett, S., Voolstra, C., Ross, C., Chaffron, S., Durack, P., Warmuth, L., & Sweet, M. (2023). Human-induced salinity changes impact marine organisms and ecosystems. Global Change Biology, 29, 4731–4749. https://doi.org/10.1111/gcb.16859
Saifullah, A., Kamal, A., Idris, M., Rajaee, A., & Bhuiyan, M. (2016). Phytoplankton in tropical mangrove estuaries: Role and interdependency. Forest Science and Technology, 12, 104–113. https://doi.org/10.1080/21580103.2015.1077479
Salmaso, N., & Tolotti, M. (2020). Phytoplankton and anthropogenic changes in pelagic environments. Hydrobiologia, 848, 251–284. https://doi.org/10.1007/s10750-020-04323-w
Salsabila, Q., Retnaningdyah, C., & Hakim, L. (2024). Evaluation of mangrove ecosystem quality in Bawean Island, East Java using phytoplankton as bioindicators. Jurnal Ilmiah Perikanan dan Kelautan, 16(2). https://doi.org/10.20473/jipk.v16i2.55755
Suhartawan, B., & Daawia, D. (2025). Coastal Water Quality Index (CWQI) assessment of Youtefa Bay, Jayapura: Status and management implications. Journal of Health and Nutrition Research, 4(1). https://doi.org/10.56303/jhnresearch.v4i1.380
Sulochanan, B., Ratheesh, L., Veena, S., Padua, S., Prema, D., Rohit, P., Kaladharan, P., & Kripa, V. (2022). Water and sediment quality parameters of the restored mangrove ecosystem of Gurupura River and natural mangrove ecosystem of Shambhavi River in Dakshina Kannada, India. Marine Pollution Bulletin, 176, 113450. https://doi.org/10.1016/j.marpolbul.2022.113450
Swain, S., Sahu, B., Pattanaik, S., Sahoo, R., Majhi, A., Satapathy, D., Panda, C., Roy, R., & Choudhury, S. (2020). Anthropogenic influence on the physico-chemical parameters of Dhamra estuary and adjoining coastal water of the Bay of Bengal. Marine Pollution Bulletin, 111826. https://doi.org/10.1016/j.marpolbul.2020.111826
Tagulao, K., Lai, W., Lebel, A., & Calheiros, C. (2023). Evaluating the potential of mangrove phytoremediation for mitigating coastal water eutrophication in Macao SAR: A field and mesocosm study. Sustainability, 15(10), 7830. https://doi.org/10.3390/su15107830
Trombetta, T., Vidussi, F., Mas, S., Parin, D., Simier, M., & Mostajir, B. (2019). Water temperature drives phytoplankton blooms in coastal waters. PLoS ONE, 14. https://doi.org/10.1371/journal.pone.0214933
Ugya, A., Yan, C., Chen, H., & Wang, Q. (2025). Unravelling the eco-monitoring potential of phytoplankton towards a sustainable aquatic ecosystem. Marine Pollution Bulletin, 216, 118021. https://doi.org/10.1016/j.marpolbul.2025.118021
Yan, Y., He, S., Mai, J., Xu, R., He, Y., Zhu, W., Peng, Z., Wu, X., & Han, Y. (2025). Mangrove habitat health assessment in the Sanya River: Multidimensional analysis of diatom communities and physicochemical water properties. Water, 17(12), 1770. https://doi.org/10.3390/w17121770
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