Harmful effects of sediment-induced turbidity on juvenile fish in estuaries

Вредное воздействие вызванного наносами помутнения воды на молодь рыб в эстуариях
ML Lowe, MA Morrison, RB Taylor
2015-09-23

estuarine nursery habitatsforaging successgill deformationjuvenile snappersediment-induced turbidity
MEPS Marine Ecology Progress Series Contact the journal Facebook Twitter RSS Mailing List Subscribe to our mailing list via Mailchimp HomeLatest VolumeAbout the JournalEditorsTheme Sections MEPS 539:241-254 (2015) - DOI: https://doi.org/10.3354/meps11496 Harmful effects of sediment-induced turbidity on juvenile fish in estuaries M. L. Lowe1,2,*, M. A. Morrison1, R. B. Taylor2 1National Institute of Water and Atmospheric Research, Private Bag 99940, Auckland, New Zealand 2Leigh Marine Laboratory, Institute of Marine Science, University of Auckland, PO Box 349, Warkworth 0941, New Zealand *Corresponding author: meredith.lowe@niwa.co.nz ABSTRACT: Estuaries are important nursery habitats for juvenile fishes of many species, but are under increasing pressure from anthropogenic stressors. We examined the impacts of suspended sediments/turbidity on the foraging success and health of juvenile snapper Pagrus auratus F. Sparidae, which are abundant in many northern New Zealand estuaries and comprise a major coastal fishery as adults. In the laboratory, short-term exposure to turbidity (range <10 to 160 NTU) reduced foraging success of juvenile snapper, while month-long exposure caused higher rates of gill ventilation, gill deformation (epithelial hyperplasia, fusion of the lamellae), weight loss and mortality. In 7 northern New Zealand estuaries with varying catchment land uses, total suspended sediments were negatively correlated with capture rates of juvenile snapper and the condition of individuals, and positively correlated with rates of gill deformation and gill parasite loads. Fish diets changed from zooplankton to benthic prey as turbidity increased. Collectively, our results indicate that elevated turbidity levels have strong negative effects on the health and abundance of juvenile snapper. These turbidity impacts compound the negative effects of sediments on important biogenic fish nursery habitats such as subtidal seagrass beds, likely reducing subsequent recruitment into the fishable adult stock. Management of exploited fish species that have an estuarine life stage must consider the effects of both fishing and sediment runoff from the catchment. KEY WORDS: Foraging success · Condition · New Zealand snapper · Nursery habitat · Pagrus auratus · Sedimentation · Suspended sediments · Water quality Full text in pdf format PreviousNextCite this article as: Lowe ML, Morrison MA, Taylor RB (2015) Harmful effects of sediment-induced turbidity on juvenile fish in estuaries. Mar Ecol Prog Ser 539:241-254. https://doi.org/10.3354/meps11496 Export citation RSS - Facebook - Tweet - linkedIn Cited by Published in MEPS Vol. 539. Online publication date: November 12, 2015 Print ISSN: 0171-8630; Online ISSN: 1616-1599 Copyright © 2015 Inter-Research.
1
Across seven northern New Zealand estuaries, suspended sediments negatively correlated with juvenile snapper capture rates and body condition.
2
Elevated turbidity may reduce recruitment to adult fisheries by harming juvenile snapper and degrading biogenic nursery habitats such as subtidal seagrass beds.
3
Higher suspended sediment levels were associated with increased gill deformation and parasite loads, while diets shifted from zooplankton toward benthic prey.
4
Month-long turbidity exposure increased gill ventilation, caused gill deformation, weight loss, and mortality in juvenile snapper.
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Short-term exposure to turbidity below 10–160 NTU reduced juvenile snapper foraging success in laboratory experiments.

Juvenile snapper (Pagrus auratus) in northern New Zealand estuaries exposed to suspended sediments and turbidity

Effects of sediment-induced turbidity on foraging success, health, abundance, gill condition, parasite loads, diet, and habitat-related recruitment potential

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2015-09-23
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ML Lowe
MA Morrison
RB Taylor
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