Baseline Assessment of Seagrass Abundance and Community Structure in the Coastal Waters of Barangay Poblacion as Basis for Coastal Ecosystem Management in Malay, Aklan
Josave Oczon | Modesto Melden Intoy
Discipline: environmental sciences
Abstract:
Seagrass communities are vital in the coastal ecosystem, providing habitat, stabilizing sediment, and contributing to
fisheries productivity. However, there is no baseline information for seagrass abundance and community structure in the
coastal area of Poblacion, Malay, Aklan. To answer this gap, this study assessed seagrass cover, abundance, diversity and
community structure to establish baseline data for the area. Sampling was conducted from February to April 2022 during
daytime and low tide using the transect-quadrat method. A 25-grid quadrat was placed along three 50 m transect lines, with
10 m intervals between each quadrat. Overall, three species were recorded to be ecologically dominant—Cymodocea rotundata,
Thalassia hemprichii, and Halodule uninervis. Of these, C. rotundata is the most dominant, with a total cover of 34.5%, the
highest Frequency (85.3%), and the highest relative Frequency (26.9%). Meanwhile, the study site exhibits moderate
and relatively balanced diversity and distribution of seagrass species, as indicated by a calculated Shannon-Wiener Diversity
index (H' = 1.52) and evenness (J' = 0.78). The observed zonation pattern suggests that the area is favorable for habitat
colonization. These findings provide a baseline for monitoring, protecting, conserving, and managing seagrass dynamics, as well
as for sustainable biodiversity and the enrichment of Malay’s coastal ecosystem.
References:
- Abubakar, F. Z. B., & Echem, R. T. (2018). Distribution and abundance of seagrass in Bongao, Tawi-Tawi. World Journal of Pharmaceutical and Life Sciences, 4(7), 17–21.
- Alcala, A. C., Ingles, J. A., & Bucol, A. A. (2008). Review of the biodiversity of southern Philippine seas. The Philippine Scientist, 45(0), 1–61. https://doi.org/10.3860/psci.v45i0.991
- Bijak, A. L., Reynolds, L. K., & Smyth, A. R. (2023). Seagrass meadow stability and composition influence carbon storage. Landscape Ecology, 38(12), 4419–4437. https://doi.org/10.1007/s10980-023-01700-3
- Bujang, J. S., Zakaria, M. H., & Short, F. T. (2016). Seagrass in Malaysia: Issues and challenges ahead. In The Wetland Book (pp. 1–9). https://doi.org/10.1007/978-94-007-6173-5_268-1
- Cabaço, S., & Santos, R. (2007). Effects of burial and erosion on the seagrass Zostera noltii. Journal of Experimental Marine Biology and Ecology, 340(2), 204–212. https://doi.org/10.1016/j.jembe.2006.09.003
- Capin, N. C., Pototan, B. L., Delima, A. G. D., & Novero, A. U. (2021). Distribution and abundance of seagrasses in the southwest coast of Davao Oriental, Philippines. Philippine Journal of Science, 150(S1), 383–394. https://doi.org/10.56899/150.S1.28
- Cayetano, C. B., Patiluna, M. L. E., & Jontila, J. B. S. (2025). Diversity and community structure of seagrass at Arrecife Island, Honda Bay, Palawan, Philippines. Davao Research Journal, 16(1), 108–125. https://doi.org/10.59120/drj.v16i1.320
- Christianen, M. J., Smulders, F. O., Vonk, J. A., Becking, L. E., Bouma, T. J., Engel, S. M., … & Bakker, E. S. (2023). Seagrass ecosystem multifunctionality under the rise of a flagship marine megaherbivore. Global Change Biology, 29(1), 215–230. https://doi.org/10.1111/gcb.16464
- Chua, J. (2020, August 12). New seagrass species found in Boracay island. Manila Bulletin. https://mb.com.ph/2020/8/12/new-seagrass-species-found-in-boracay-island
- Cui, L., Jiang, Z., Huang, X., Wu, Y., Liu, S., Chen, Q., … & He, J. (2021). Carbon transfer processes of food web and trophic pathways in a tropical eutrophic seagrass meadow. Frontiers in Marine Science, 8, 725282. https://doi.org/10.3389/fmars.2021.725282
- DA-BFAR – Region V. (n.d.). Field guide on seagrass [Brochure]. Bureau of Fisheries and Aquatic Resources – Regional Office V (BFAR 5), FishCOral Project. https://share.google/Swi7flAjQAHffW0up
- Duarte, C. M. (2000). Marine biodiversity and the role of seagrass meadows. Biodiversity and Conservation, 9(8), 1125–1138. https://doi.org/10.1017/S0376892902000127
- Duarte, C. M. (2002). The future of seagrass meadows. Environmental Conservation, 29(2), 192–206. https://doi.org/10.1017/S0376892902000127
- Exeter, O. M., Htut, T., Kerry, C. R., Kyi, M. M., Mizrahi, M. I., Turner, R. A., … & Bicknell, A. W. (2021). Shining light on data-poor coastal fisheries. Frontiers in Marine Science, 7, 625766. https://doi.org/10.3389/fmars.2020.625766
- Fortes, M. D. (2013). A review: Biodiversity, distribution and conservation of Philippine seagrasses. Philippine Journal of Science, 142(1), 9.
- Fortes, M. D. (2015). Seagrass ecosystem conservation in the ASEAN region. In M. D. Fortes et al. (Eds.), Seagrass ecosystems of the world (pp. 57–70). Springer. https://doi.org/10.1515/bot-2018-0008
- Fortes, M. D., Ooi, J. L. S., Tan, Y. M., Prathep, A., Bujang, J. S., & Yaakub, S. M. (2018). Seagrass in Southeast Asia: A review of status and knowledge gaps, and a road map for conservation. Botanica Marina, 61(3), 269–288. https://doi.org/10.1515/bot-2018-0008
- Ganzon-Fortes, E. T. (2011). Assessment of seagrass-seaweed community using the line transect-quadrat method. In Seagrasses: Resource status and trends in Indonesia, Japan, Malaysia, Thailand and Vietnam (pp. 153–162). Japan Society for the Promotion of Science (JSPS) and Atmospheric and Ocean Research Institute (AORI), The University of Tokyo, Seizando-Shoten Publishing Co., Ltd.
- Genito, G. E., Nabuab, F. M., Acabado, C. S., Albasin, B. S., & Beldia II, P. D. (2010). Baseline assessment of seagrass communities of Lubang and Looc islands, Occidental Mindoro, Philippines. Publications of the Seto Marine Biological Laboratory. Special Publication Series, 10, 53–64.
- Hughes, A. R., & Stachowicz, J. J. (2004). Genetic diversity enhances the resistance of a seagrass ecosystem to disturbance. Proceedings of the National Academy of Sciences, 101(24), 8998–9002. https://doi.org/10.1073/pnas.0402642101
- Jumawan, J., Bitalas, M., Ramos, J. J., Garcia, A. R., Landero, R., Cordero, J., … & Cataluna, R. (2015). Seagrass diversity and structure along the coastal area in Paligue, Hagonoy Davao del Sur, Philippines. AES Bioflux Society, 7(3), 351–356.
- Karrouch, L., Chahlaoui, A., & Essahale, A. (2017). Anthropogenic impacts on the distribution and biodiversity of benthic macroinvertebrates and water quality of the Boufekrane River, Meknes, Morocco. Journal of Geoscience and Environment Protection, 5, 173–195. https://doi.org/10.4236/gep.2017.57014
- Kelkar, N., Arthur, R., Marbà, N., & Alcoverro, T. (2013). Greener pastures? High density feeding aggregations of green turtles precipitate species shifts in seagrass meadows. Journal of Ecology, 101(5), 1158–1168. https://doi.org/10.1111/1365-2745.12122
- Kwan, V., Shantti, P., Lum, E. Y. Y., Ow, Y. X., & Huang, D. (2023). Diversity and phylogeny of seagrasses in Singapore. Aquatic Botany, 187, 103648. https://doi.org/10.1016/j.aquabot.2023.103648
- Lamit, N., & Tanaka, Y. (2019). Species-specific distribution of intertidal seagrasses along environmental gradients in a tropical estuary (Brunei Bay, Borneo). Regional Studies in Marine Science, 29, 100671. https://doi.org/10.1016/j.rsma.2019.100671
- Mascariñas, H. J. C., & Otadoy, J. B. (2022). Seagrass diversity and distribution in Maribojoc Bay, Bohol, Philippines. American Journal of Environment and Climate, 1(1), 12–19. https://doi.org/10.54536/ajec.v1i1.217
- McKenzie, L. J. (2003). Guidelines for the rapid assessment of seagrass habitats in the western Pacific. Guidelines for the rapid assessment and mapping of tropical seagrass habitats (QFS, NFC, Cairns), 1–24.
- McKenzie, L. J., Yoshida, R. L., Grech, A., & Coles, R. (2014). Composite of coastal seagrass meadows in Queensland, Australia—November 1984 to June 2010. https://doi.org/10.1594/PANGAEA.826368
- McKenzie, L. J., Nordlund, L. M., Jones, B. L., Cullen-Unsworth, L. C., Roelfsema, C., & Unsworth, R. K. (2020). The global distribution of seagrass meadows. Environmental Research Letters, 15, 074041.
- Meñez, E. G., & Phillips, R. C. (1983). Seagrasses from the Philippines.
- Melendres, A. R. Jr. (2025). Baseline report of the identified seagrass beds and its relative abundance in Carmen, Cebu, Philippines. Journal of Biodiversity and Environmental Sciences (JBES), 26(5), 43–56.
- Molina, J. R. H., & Bersaldo, M. J. I. (2024). Diversity, cover, shoot density, and distribution of seagrasses in the coastal areas of Gingoog City, Misamis Oriental, Philippines. Davao Research Journal (DRJ), 15(2), 20–30. https://doi.org/10.59120/drj.v15iNo.2.167
- Morris, E., Caruso, T., Buscot, F., Fischer, M., Hancock, C., Maier, T., & Rillig, M. (2014). Choosing and using diversity indices: Insights for ecological applications from the German biodiversity exploratories. Ecology and Evolution, 4(18), 3514–3524. https://doi.org/10.1002/ece3.1155
- Odum, E. P. (1971). Fundamentals of ecology. W.B. Saunders Company.
- Piñeiro-Juncal, N., Serrano, O., Mateo, M. Á., Diaz-Almela, E., Leiva-Dueñas, C., & Martinez-Cortizas, A. (2022). Review of the physical and chemical properties of seagrass soils. Geoderma, 428, 116219. https://doi.org/10.1016/j.geoderma.2022.116219
- Rodil, I. F., Lohrer, A. M., Attard, K. M., Thrush, S. F., & Norkko, A. (2022). Positive contribution of macrofaunal biodiversity to secondary production and seagrass carbon metabolism. Ecology, 103(4), e3648. https://doi.org/10.1002/ecy.3648
- Rollon, R. N., Cayabyab, N. M., & Fortes, M. D. (2001). Vegetative dynamics and sexual reproduction of monospecific Thalassia hemprichii meadows in the Kalayaan Island Group. Aquatic Botany, 71(3), 239–246. https://doi.org/10.1016/S0304-3770(01)00178-4
- Saito, Y., & Atobe, S. (1970). Phytosociological study of intertidal marine algae. I. Usujiri Benten-Jima, Hokkaido. Bulletin of the Faculty of Fisheries, Hokkaido University, 21, 37–69.
- Short, F. T., Polidoro, B., Livingstone, S. R., Carpenter, K. E., Bandeira, S., Bujang, J. S., … & Zieman, J. C. (2011). Extinction risk assessment of the world’s seagrass species. Biological Conservation, 144(7), 1961–1971. https://doi.org/10.1016/j.biocon.2011.04.010
- Swadling, D. S., Taylor, S. L., & Gruber, R. K., et al. (2025). Sediment properties and seagrass density influence the morphological plasticity of seagrass Zostera muelleri more than elevated temperatures. Estuaries and Coasts, 48, 52. https://doi.org/10.1007/s12237-025-01485-5
- Toro, L. M. M. (2023). Nested biogeochemical interactions in seagrass ecosystems (Doctoral dissertation, Open University, United Kingdom). https://doi.org/10.21954/ou.ro.00016bce
- Vinson, N. S., Ante, S. C., Roxas, R. J. F. S., Salvio, S. M. C., Rabe, S. L. C., Torres, M. A. J., & Requieron, E. A. (2016). Correlation between water quality and seagrass distribution along intertidal zone in Sarangani Province, Philippines. Journal of Biodiversity and Environmental Sciences, 30, 30–35.
- Ward, D., Melbourne-Thomas, J., Pecl, G. T., Evans, K., Green, M., McCormack, P. C., … & Layton, C. (2022). Safeguarding marine life: Conservation of biodiversity and ecosystems. Reviews in Fish Biology and Fisheries, 32(1), 65–100. https://doi.org/10.1007/s11160-022-09700-3
- Zulfikar, A., Boer, M., Adrianto, L., & Puspasari, R. (2019). Confirmatory factor analysis of seagrass Thalassia hemprichii descriptors from coastal waters of Kepulauan Seribu Marine National Park. Aquaculture, Aquarium, Conservation and Legislation, 12(6), 2261–2272. https://doi.org/10.1088/1755-1315/420/1/012037
ISSN 2984-7125 (Online)
ISSN 2244-4432 (Print)