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Connections and clustering of Paralytic Shellfish Toxin events among coastal embayments in an archipelago partly mediated by advection

dc.citation.journaltitleHarmful Algae
dc.contributor.authorPunongbayan, Andalus T.
dc.contributor.authorWang, Ysabel D.
dc.contributor.authorVillanoy, Cesar L.
dc.contributor.authorYñiguez, Aletta T.
dc.coverage.spatialPhilippines
dc.coverage.spatialSamar
dc.date.accessioned2025-05-21T13:11:47Z
dc.date.issued2022-01
dc.description.abstractThe potential for advection to influence harmful algal bloom (HAB) spread in adjacent embayments and islands has not been investigated in the Philippines as previous studies have focused on HAB dynamics within specific embayments. Advection of HABs may be relevant in the Samar-Leyte region where adjacent sites are subject to recurrent blooms of <i>Pyrodinium bahamense</i>. We used different analyses to extract the potential role of advection in blooms in the region. First, we used Bayesian and information theoretic approaches applied to historical data on shellfish bans to quantify spatial dependencies in HAB occurrences between sites. Then, to determine whether such dependencies are related to circulation patterns in the region, we analyzed connectivity using a hydrodynamic model coupled with a conservative tracer-based HAB model. The Bayesian network showed that in 7 out of 11 sites, the probability of a shellfish ban depended on the state of an adjacent site. Site pairs with direct dependence relations also shared relatively high similarity in HAB occurrences over time. In the modelled network, bans tend to occur sequentially, spreading from a few sites with relatively high probabilities for ban events. A subset of sites (sources) were found to be informative of future HAB event probabilities in other sites (destinations) over time lags that are generally longer the farther the destination. Modelled surface advection showed high connectivity strengths between sources and destinations associated with circulation features, e.g., an anticyclonic current in Leyte, wind-driven coastal current in western Samar, and tidally-driven flow in the shallow embayments in southwest Samar. High connectivities were correlated with direct dependence relations in the Bayesian network. Connectivity explained up to about 1/3 of the variance in statistical dependencies between ban signals. Our results show that Paralytic Shellfish Toxin events within this region can be due to advection of blooms originating from nearby areas rather than localized cyst dynamics within an embayment. Particular sites were also identified as potential indicator sites within spatial clusters for monitoring since they are typically where blooms originate and spread from.
dc.identifier.citationPunongbayan, A. T., Wang, Y. D., Villanoy, C. L., & Yñiguez, A. T. (2022). Connections and clustering of Paralytic Shellfish Toxin events among coastal embayments in an archipelago partly mediated by advection. <i>Harmful Algae</i>, <i>111</i>, Article 102147.
dc.identifier.doi10.1016/j.hal.2021.102147
dc.identifier.issn1568-9883
dc.identifier.urihttps://hdl.handle.net/20.500.14697/501
dc.language.isoen
dc.publisherElsevier
dc.subjectShellfish
dc.subject.agrovocparalytic shellfish poisoning
dc.subject.agrovocadvection
dc.subject.agrovocalgal blooms
dc.subject.agrovoctoxins
dc.subject.agrovocblooms
dc.subject.agrovocshellfish
dc.subject.agrovocBayesian theory
dc.subject.lcshParalytic shellfish poisoning
dc.subject.lcshAlgal blooms
dc.subject.lcshToxins
dc.subject.lcshShellfish
dc.subject.odcChallenge 2: Protect and restore ecosystems and biodiversity
dc.subject.odcChallenge 7: Expand the Global Ocean Observing System
dc.subject.sdgSDG 14 - Life below water
dc.subject.sdgSDG 12 - Responsible consumption and production
dc.titleConnections and clustering of Paralytic Shellfish Toxin events among coastal embayments in an archipelago partly mediated by advection
dc.typeArticle
local.subjectharmful algal bloom (HAB)
local.subject.scientificnamePyrodinium bahamense
oaire.citation.startPage102147
oaire.citation.volume111

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