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Influence of body size and environmental conditions on parasite assemblages of the black-spotted croaker () (Teleostei: Sciaenidae) in northern Australia. | LitMetric

AI Article Synopsis

  • The study investigates how environmental changes impact the presence and abundance of parasites in black-spotted croaker fish in Northern Territory, Australia, using hierarchical modelling of species communities (HMSC).
  • It finds that the size of the fish significantly influences the diversity and number of parasites they host, highlighting potential future implications as fishing and climate change affect fish body sizes.
  • Additionally, water temperature and salinity were identified as key environmental factors affecting parasite populations, suggesting that climate change will likely alter parasite-host dynamics in marine ecosystems over time.

Article Abstract

The functioning and richness of marine systems (and biological interactions such as parasitism) are continuously influenced by a changing environment. Using hierarchical modelling of species communities (HMSC), the presence and abundance of multiple parasite species of the black-spotted croaker, (Sciaenidae), was modelled against environmental measures reflecting seasonal change. were collected in three seasons across 2019–2021 from four locations within the waters of the Northern Territory, Australia. The length of proved to have a strong positive effect on the abundance of parasite taxa and overall parasitic assemblage of the sciaenid host. This finding introduces potential implications for parasitism in the future as fish body size responds to fishing pressure and climate changes. Of the various environmental factors measured during the tropical seasons of northern Australia, water temperature and salinity changes were shown as potential causal factors for the variance in parasite presence and abundance, with changes most influential on external parasitic organisms. As environmental factors like ocean temperature and salinity directly affect parasite–host relationships, this study suggests that parasite assemblages and the ecological functions that they perform are likely to change considerably over the coming decades in response to climate change and its proceeding effects.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11578883PMC
http://dx.doi.org/10.1017/S0031182024001008DOI Listing

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