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  • 03 SEAFDEC/AQD External Publications
  • Journal Articles, Conference Papers and Book Chapters by SEAFDEC Staff
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  • 03 SEAFDEC/AQD External Publications
  • Journal Articles, Conference Papers and Book Chapters by SEAFDEC Staff
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Temporal variation in the incidence of seaweed health problems affecting farmed Kappaphycus striatus in relation to environmental conditions in shallow waters

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日付
2024-04-18
著者
Faisan, Jr., Joseph ORCID
Sibonga, Rema ORCID
Mateo, Jonalyn ORCID
Luhan, Maria Rovilla ORCID
Ferriols, Victor Marco Emmanuel ORCID
Balinas, Vicente T.
Brakel, Janina ORCID
Bass, David
Ross, Stuart
Stentiford, Grant D.
Brodie, Juliet ORCID
Ward, Georgia M.
Hurtado, Anicia Q.
Page views
738
ASFA keyword
temporal variations ASFA
seaweeds ASFA
seaweed culture ASFA
diseases ASFA
pest control ASFA
disease control ASFA
Algae ASFA
AGROVOC keyword
Rhodophyta AGROVOC
pests AGROVOC
Taxonomic term
Rhodophyta GBIF
Kappaphycus striatus GBIF
Metadata
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A fixed off-bottom Kappaphycus striatus var. sacol farm was monitored for 12 months (June 2019 to May 2020) and the monthly incidence of disease and pests was recorded. Meteorological information in situ, from the nearest synoptic station and online data were collected to determine the relationships between temporal environmental changes and the incidence of seaweed health problems. The results showed that “ice-ice” disease (IID) was observed in dry months (i.e., from February to April 2020) and was significantly influenced by increased irradiance, salinity, sea surface temperature, and wind speed (p=0.004‒0.030). Also, the IID incidence was positively affected by reduced precipitation, storm surface run-off, water current speed, and inorganic nutrient (nitrite and ammonia) levels (p=0.002‒0.019). In comparison, epiphytic filamentous algae (EFA) were observed in wet months (i.e., from September to December 2019), with incidence varying from low to very high (≤25–100%) as the culture progressed. EFA incidence was significantly influenced by reduced salinity and increased storm surface run-off and inorganic nutrient (nitrate and ammonia) levels (p=0.006‒0.040). An intense tropical cyclone struck the farming area in December 2019, resulting in partial die-offs of farmed seaweed. Such seaweed health problems are expected to become more prevalent in the coming years as weather disturbances brought about by changing weather patterns become more frequent and intense. Hence, mitigation and preventative approaches must be fully considered to sustain the industry’s growth while protecting the livelihoods of many coastal communities dependent on seaweed farming.
Keywords
Climate change Disease Pest Rhodophyta Seaweed farming Seaweed health problems
URI
http://hdl.handle.net/10862/6530
Suggested Citation
Faisan, J., Joseph, Sibonga, R., Mateo, J., Luhan, M. R., Ferriols, V. M. E., Balinas, V. T., Brakel, J., Bass, D., Ross, S., Stentiford, G. D., Brodie, J., Ward, G. M., & Hurtado, A. Q. (2024). Temporal variation in the incidence of seaweed health problems affecting farmed Kappaphycus striatus in relation to environmental conditions in shallow waters. Journal of Applied Phycology, 36(4), 2013-2028. https://doi.org/10.1007/s10811-024-03242-w 
DOI
10.1007/s10811-024-03242-w
Type
Article
ISSN
0921-8971; 1573-5176
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  • Journal Articles [1266]

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    Faisan, Joseph P., Jr. ORCID; Luhan, Maria Rovilla; Sibonga, Rema ORCID; Mateo, Jonalyn; Ferriols, Victor Marco Emmanuel; Brakel, Janina; Ward, Georgia M.; Ross, Stuart; Bass, David; Stentiford, Grant; Brodie, Juliet; Hurtado, Anicia Q. (Springer, 2021-05-04)
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    Seasonal growth, carrageenan properties, and resistance to disease and epiphytic pests between Kappaphycus alvarezii (Rhodophyta) var. tambalang (brown) tissue-cultured and farm-sourced seaweeds 

    Faisan, Jr., Joseph ORCID; Samson, Edcel Jed D.; Sollesta-Pitogo, Hananiah; Dayrit, Rheniel; Balinas, Vicente T.; de la Peña, Leobert D. (Springer, 2024-01-08)
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