Spatial and tidal profiles of seawater properties, and their relation to coral cover of selected reefs in Iligan City, Lanao Del Norte, Philippines

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Research Paper 08/09/2025
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Spatial and tidal profiles of seawater properties, and their relation to coral cover of selected reefs in Iligan City, Lanao Del Norte, Philippines

Angelo A. Responte, Jonalyn B. Galorio, Mary Dorothy Anne Y. Seno, Immanuel N. Galorio, Frence Eliza E. Elecho
Int. J. Biosci. 27(3), 52-61, September 2025.
Copyright Statement: Copyright 2025; The Author(s).
License: CC BY-NC 4.0

Abstract

A hydrographic investigation was conducted in coral reefs along the coast of Iligan bay to evaluate the influence of tides to the spatial distribution of water parameters and determine the relation of the water parameters to the coral cover in the area. Water samples were collected at 0m, 5m and 8m using 1.5L Niskin bottle and water parameters were immediately measured using calibrated handheld meters on board. Coral assessment was done using Photo-transect technique and estimation of hard coral cover was done using Coral Point Count with Excel Extensions (CPCe). Salinity increased with depth and values were higher at high tide. The observed suboptimal salinity may account for the poor cover of hard corals. Temperature was highest at the surface and decreases with depth in both tides. Reef1 had the coldest waters in both tides, warmest at the farthest reefs 3 and 4 from the estuary. Dissolved oxygen decreases with depth in both tides and higher during high tide. At low tide, pH was highest at surface; at high tide pH highest at 5m. At low tide pH was highest at reef1, and lowest at reef4.  During high tide pH was uniform at 8.1 in all four reefs. Temperature, pH and dissolved oxygen were within the ideal range for optimum growth and coral reef development. Therefore, the observed poor coral cover was not associated with the status of these parameters.

Araoye PA. 2009. The seasonal variation of pH and dissolved oxygen (DO₂) concentration in Asa lake Ilorin, Nigeria. International Journal of Physical Sciences 4(5), 271–274.

Bakus GJ. 1973. Effects of salinity on coral reef organisms. In: Barnes DJ (ed.), Perspectives on coral reefs, 174–177. Australian Institute of Marine Science. Retrieved from https://aslopubs.onlinelibrary.wiley.com/doi/pdf/10.4319/lo.1984.29.6.1348b

Bozorg-Haddad O, Delpasand M, Loáiciga AH. 2021. Water quality, hygiene, and health. In: Economical, political, and social issues in water resources, 217–257.

Brachert TC, Reuter M, Kroeger KF, Lough JM. 2006. Growth rates of late Miocene corals from Crete (Greece). PANGAEA. https://doi.org/10.1594/PANGAEA.745312

Cahyarini SY. 2011. Population growth, inter-annual variations in sea surface temperature and their influence on the linear growth of Porites coral in the Seribu Islands. Jurnal Lingkungan dan Bencana Geologi 2(1), 39–48. Retrieved from https://jlbg.geologi.esdm.go.id/index.php/jlbg/article/view/15

Castrillón-Cifuentes AL, Zapata FA, Giraldo A, Wild C. 2023. Spatiotemporal variability of oxygen concentration in coral reefs of Gorgona Island (Eastern Tropical Pacific) and its effect on the coral Pocillopora capitata. PeerJ 11, e14586. DOI: 10.7717/peerj.14586

Chevillot X, Drouineau H, Lambert P, Carassou L, Sautour B, Lobry J. 2017. Toward a phenological mismatch in estuarine pelagic food web? PLOS ONE 12(3), e0173752. DOI: 10.1371/journal.pone.0173752

Claireaux G, Chabot D. 2016. Responses by fishes to environmental hypoxia: Integration through Fry’s concept of aerobic metabolic scope. Journal of Fish Biology 88(1), 232–251. DOI: 10.1111/jfb.12833

Clausen CD, Roth AA. 1975. Effect of temperature and temperature adaptation on calcification rate in the hermatypic coral Pocillopora damicornis. Marine Biology 33(1), 85–91. DOI: 10.1007/BF00390951

Corvianawatie C, Abrar M. 2018. Suitability of oceanographic conditions in supporting coral reef ecosystems in Pari Island waters. National Marine Journal 13(3), 155–161.

Davis KL, McMahon A, Kelaher BP, Shaw E, Santos IR. 2021. Global coral reef ecosystems exhibit declining calcification and increasing primary productivity. Communications Earth & Environment 2(1), 105. DOI: 10.1038/s43247-021-00168-w

DENR. 1990. Department of Environment and Natural Resources Administrative Order No. 34 S. 1990. Revised water usage and classification/water quality criteria amending section nos. 68 and 69, chapter III of the 1978 NPCC rules and regulations.

DENR. 2016. Department of Environment and Natural Resources Administrative Order No. 2016-08. Water quality guidelines and general effluent standards of 2016.

Díaz RJ, Rosenberg R. 2011. Introduction to environmental and economic consequences of hypoxia. International Journal of Water Resources Development 27(1), 71–82. DOI: 10.1080/07900627.2011.553372

Dijkstra JA, Buckman KL, Ward D, Evans DW, Dionne M, Chen CY. 2013. Experimental and natural warming elevates mercury concentrations in estuarine fish. PLOS ONE 8(3), e58401. DOI: 10.1371/journal.pone.0058401

Ding DS, Patel AK, Singhania RR, Chen CW, Dong CD. 2022. Effects of temperature and salinity on growth, metabolism, and digestive enzyme synthesis of Goniopora columna. Biology 11(3), 436. DOI: 10.3390/biology11030436

Dodds LA, Roberts JM, Taylor AC, Marubini F. 2007. Metabolic tolerance of the cold-water coral Lophelia pertusa (Scleractinia) to temperature and dissolved oxygen change. Journal of Experimental Marine Biology and Ecology 349(2), 205–214. DOI: 10.1016/j.jembe.2007.05.013

Eddy TD, Cheung WWL, Bruno JF. 2018. Historical baselines of coral cover on tropical reefs as estimated by expert opinion. PeerJ 6, e4308. DOI: 10.7717/peerj.4308

Efe SI, Ogban FE, Horsfall MJ, Akporhonor EE. 2005. Seasonal variations of physicochemical characteristics in water resources quality in Western Niger Delta region, Nigeria. Journal of Applied Sciences and Environmental Management 9(1), 191–195. DOI: 10.4314/jasem.v9i1.17282

Ferrier-Pagès C, Gattuso JP, Dallot S, Jaubert J. 2000. Effect of nutrient enrichment on growth and photosynthesis of the zooxanthellate coral Stylophora pistillata. Coral Reefs 19(2), 103–113. DOI: 10.1007/s003380050276

Gomez ED, Alcala AC, San Diego AC. 1981. Status of Philippine coral reefs. In: Proceedings of the Fourth International Coral Reef Symposium 1, 275–282.

Gomez ED, Aliño PM, Licuanan WRY, Yap HT. 1994b. Status report on coral reefs of the Philippines 1994. In: Sudara S, Wilkinson CR, Chou LM (eds.), Proceedings of the 3rd ASEAN-Australia Symposium on Living Coastal Resources, Volume 1: Status reviews, 720 pp. Australian Institute of Marine Science, Townsville.

Gomez ED, Aliño PM, Yap HT, Licuanan WY. 1994a. A review of the status of Philippine reefs. Marine Pollution Bulletin 29, 62–68.

Guilcher A. 1988. Coral reef geomorphology. John Wiley & Sons Ltd. Retrieved from https://www.bookswagon.com/book/coral-reef-geomorphology-andre-guilcher/9780471917557

Gupta I, Dhage S, Kumar R. 2009. Study of variations in water quality of Mumbai coast through multivariate analysis techniques. Indian Journal of Marine Sciences 38(2), 170–177. Retrieved from https://www.researchgate.net/publication/228355030_Study_of_Variations_in_Water_Quality_of_Mumbai_Coast_Through_Multivariate_Analysis_Techniques

Havens K. 2015. Climate change and the occurrence of harmful microorganisms in Florida’s ocean and coastal waters: SGEF216/SG136, 6/2015. EDIS 2015(5), 6–6. DOI: 10.32473/edis-sg136-2015

Hill J, Wilkinson C. 2004. Methods for ecological monitoring of coral reefs. Australian Institute of Marine Science. Retrieved from https://www.aims.gov.au/docs/project-net/monitoring/manual/index.html

Isdianto A, Muzaky Luthfi O, Moira VS. 2020. The relation of water chemical quality to coral reef ecosystems in Damas. Journal of Marine and Coastal Science 9(3), 113–126. doi.org/10.20473/jmcs.v9i3.22294

James R, Smith D, Taylor H. 1992. Sea surface temperatures and coral reef development. Marine Ecology Progress Series 89(3), 123–130. doi.org/10.3354/meps089123

Jørgensen BB. 1980. Seasonal oxygen depletion in the bottom waters of a Danish fjord and its effect on the benthic community. Oikos 34(1), 68–76. DOI: 10.2307/3544429

Kibria G, Nugegoda D, Rose G, Haroon AKY. 2021. Climate change impacts on pollutants mobilization and interactive effects of climate change and pollutants on toxicity and bioaccumulation of pollutants in estuarine and marine biota and linkage to seafood security. Marine Pollution Bulletin 167, 112364. DOI: 10.1016/j.marpolbul.2021.112364

Kohler KE, Gill SM. 2005. Coral Point Count with Excel extensions (CPCe): A Visual Basic program for the determination of coral and substrate coverage using random point count methodology. Computers & Geosciences 31(9), 1259–1269. DOI: 10.1016/j.cageo.2005.03.012

Leidonald R, Muhtadi A, Lesmana I, Harahap ZA, Rahmadya A. 2019. Profiles of temperature, salinity, dissolved oxygen, and pH in tidal lakes. IOP Conference Series: Earth and Environmental Science 260(1), 012075. DOI: 10.1088/1755-1315/260/1/012075

Licuanan WY, Robles R, Dygico M, Songco A, van Woesik R. 2017. Coral benchmarks in the center of biodiversity. Marine Pollution Bulletin 114(2), 1135–1140. DOI: 10.1016/j.marpolbul.2016.10.017

Lough JM, Cantin NE. 2014. Perspectives on massive coral growth rates in a changing ocean. Biological Bulletin 226(2), 187–202. DOI: 10.1086/BBLv226n2p187

Lough JM, Cooper TF. 2011. Growth of Western Australian corals in the Anthropocene. Science 335(6068), 593–596. DOI: 10.1126/science.1214570

Luthfi OM, Agung RM, Sontodipoero MR, Isdianto A, Setyohadi D, Jauhari A, Januarsa IN. 2017. Skeleton microstructure of Porites lutea in Kondang Merak, Malang, East Java. AIP Conference Proceedings 1908(1), 030009. DOI: 10.1063/1.5012709

Luthfi OM, Rijatmoko S, Isdianto A, Asadi MA, Setyohadi D, Jauhari A, Lubis AA, Soegianto A. 2019. Study of concentrations of heavy metals cadmium trapped in Porites lutea skeleton in Kondang Merak, East Java, Indonesia. Pollution Research 38, S1–S6. DOI: 10.15294/biosaintifika.v11i2.19991

Mackenzie FT, Agegian CR. 1989. Biomineralization and tentative links to plate tectonics. In: Crick RE (ed.), Origin, evolution, and modern aspects of biomineralization in plants and animals, 11–27. Plenum Press. DOI: 10.1007/978-1-4757-6114-6_2

Madeira D, Narciso L, Cabral HN, Vinagre C. 2012. Thermal tolerance and potential impacts of climate change on coastal and estuarine organisms. Journal of Sea Research 70, 32–41. DOI: 10.1016/j.seares.2012.03.002

Nelson HR, Altieri AH. 2019. Oxygen: The universal currency on coral reefs. Coral Reefs. Springer Verlag. DOI: 10.1007/s00338-019-01765-0

Osborne K, Oxley WG. 1997. Sampling benthic communities using video transects. In: English S, Wilkinson C, Baker V (eds.). Survey manual for tropical marine resources. 2nd edition. Australian Institute of Marine Sciences, pp. 363–376.

Pejman AH, Nabi Bidhendi GR, Karbassi AR, Mehrdadi N, Esmaeili Bidhendi M. 2009. Evaluation of spatial and seasonal variations in surface water quality using multivariate statistical techniques. International Journal of Environmental Science & Technology 6(3), 467–476. DOI: 10.1007/BF03326088

Rajabson MHS, Rachmayani R, Sarasvati PN. 2023. Suitability of oceanographic conditions in supporting coral reef ecosystems on Mengiat Beach, Nusa Dua Bali. Applied Environmental Science 1(1), 12–18. DOI: 10.61511/aes.v1i1.2023.60

Sinaga ELR. 2016. Profil suhu dan oksigen terlarut secara vertikal selama 24 jam di Danau Kelapa Gading Kabupaten Asahan Sumatera Utara. Doctoral dissertation, Universitas Sumatera Utara. DOI: 10.20884/1.oa.2016.12.2.107

Tabugo SR, Manzanares DL, Malawani AD. 2016. Coral reef assessment and monitoring made easy using Coral Point Count with Excel extensions (CPCe) software in Calangahan, Lugait, Misamis Oriental, Philippines.

Vacelet E. 1984. Microbiology in coral reefs. Oceanis 10, 85–97.

Wang G, Yu Z, Zhen Y, Mi T, Shi Y, Wang J, Sun S. 2014. Molecular characterisation, evolution and expression of hypoxia-inducible factor in Aurelia sp.1. PLoS ONE 9(6), e100057. doi.org/10.1371/journal.pone.0100057

Ye H, Guo S, Li F, Li G. 2013. Water quality evaluation in tidal river reaches of Liaohe River Estuary, China using a revised QUAL2K model. Chinese Geographical Science 23, 600–610. DOI: 10.1007/s11769-013-0586-9

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