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Long-term effects of a toxic algal bloom on subtidal soft-sediment macroinvertebrate communities in Wellington Harbour, New Zealand

Long-term effects of a toxic algal bloom on subtidal soft-sediment macroinvertebrate communities in Wellington Harbour, New Zealand
Long-term effects of a toxic algal bloom on subtidal soft-sediment macroinvertebrate communities in Wellington Harbour, New Zealand
The long-term effects (>1 year) of a naturally occurring toxic plankton bloom (Karenia brevisulcata) on subtidal benthic macroinvertebrate communities were investigated in Wellington Harbour, a semi-enclosed temperate embayment in New Zealand. For 3 years communities were sampled at three different sites in the harbour. Analyses revealed that community recovery following the bloom was site-specific. Multivariate analyses indicated that at one site community composition was approaching recovery not, vert, similar3 years post-bloom. At the second site, a sequential recovery process was indicated, whereas at the third site the community composition oscillated from year to year, but did not show any signs of a sequential recovery process. The nature of the hydrodynamic regime was identified as a major factor influencing the observed recovery processes. Communities exposed to an active hydrodynamic regime were less affected by the bloom and differed little in their composition pre- and post-bloom, as they were naturally in a perpetual state of recovery as indicated by a dominance of r-selected species. The community at the hydrodynamically less active site was more affected by the bloom and exhibited temporal differences in composition consistent with successional models. Complete recovery to a pre-disturbance climax community dominated by K-selected species is likely to take 4–5 years, if not interrupted by other disturbances. Given the increased occurrence of harmful algal blooms worldwide, more monitoring and manipulative studies are needed to further evaluate the effects of such disturbances on macrobenthic communities.
0272-7714
589-604
Kröger, Kerstin
f8ba2cae-5237-4d16-af3c-e566236ef4aa
Gardner, Jonathan P.A.
b1e304d9-4c79-4c2a-9166-dac3682dd05d
Rowden, Ashley A.
b70b6061-f562-4346-bbab-13ddba40cde2
Wear, Robert G.
5f87da00-c875-4079-a9ff-541346cf84da
Kröger, Kerstin
f8ba2cae-5237-4d16-af3c-e566236ef4aa
Gardner, Jonathan P.A.
b1e304d9-4c79-4c2a-9166-dac3682dd05d
Rowden, Ashley A.
b70b6061-f562-4346-bbab-13ddba40cde2
Wear, Robert G.
5f87da00-c875-4079-a9ff-541346cf84da

Kröger, Kerstin, Gardner, Jonathan P.A., Rowden, Ashley A. and Wear, Robert G. (2006) Long-term effects of a toxic algal bloom on subtidal soft-sediment macroinvertebrate communities in Wellington Harbour, New Zealand. Estuarine, Coastal and Shelf Science, 67 (4), 589-604. (doi:10.1016/j.ecss.2005.12.010).

Record type: Article

Abstract

The long-term effects (>1 year) of a naturally occurring toxic plankton bloom (Karenia brevisulcata) on subtidal benthic macroinvertebrate communities were investigated in Wellington Harbour, a semi-enclosed temperate embayment in New Zealand. For 3 years communities were sampled at three different sites in the harbour. Analyses revealed that community recovery following the bloom was site-specific. Multivariate analyses indicated that at one site community composition was approaching recovery not, vert, similar3 years post-bloom. At the second site, a sequential recovery process was indicated, whereas at the third site the community composition oscillated from year to year, but did not show any signs of a sequential recovery process. The nature of the hydrodynamic regime was identified as a major factor influencing the observed recovery processes. Communities exposed to an active hydrodynamic regime were less affected by the bloom and differed little in their composition pre- and post-bloom, as they were naturally in a perpetual state of recovery as indicated by a dominance of r-selected species. The community at the hydrodynamically less active site was more affected by the bloom and exhibited temporal differences in composition consistent with successional models. Complete recovery to a pre-disturbance climax community dominated by K-selected species is likely to take 4–5 years, if not interrupted by other disturbances. Given the increased occurrence of harmful algal blooms worldwide, more monitoring and manipulative studies are needed to further evaluate the effects of such disturbances on macrobenthic communities.

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Published date: May 2006

Identifiers

Local EPrints ID: 166271
URI: http://eprints.soton.ac.uk/id/eprint/166271
ISSN: 0272-7714
PURE UUID: 818a3860-387d-4cf6-bdeb-c689750a16a4

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Date deposited: 26 Oct 2010 12:55
Last modified: 14 Mar 2024 02:13

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Contributors

Author: Kerstin Kröger
Author: Jonathan P.A. Gardner
Author: Ashley A. Rowden
Author: Robert G. Wear

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