Effects of starvation on energy density of juvenile chum salmon (Oncorhynchus keta) captured in marine waters of Southeastern Alaska
We conducted laboratory starvation experiments on juvenilechum salmon (Oncorhynchus keta) captured in the neritic marine waters of northern Southeast Alaska in June and July 2003. Temporal changes in fish energy density (whole body energy content [WBEC], cal/g dry weight), percent moisture content, wet weight (g), length (mm), and size-related condition residuals were measured in the laboratory and were then compared to long-term field data. Laboratorywater temperatures and salinities averaged 9°C and 32 psu in both months. Trends in response variables were similar for both experimental groups, although sampling intervalswere limited in July because fewer fish were available (n= 54) than in June (n=101). Overall, for June (45-d experimental period, 9 intervals), WBEC, wet weight, and condition residuals decreased and percent moisture content increased, whereas fork length did not change. For July(20-d experimental period, 5 intervals), WBEC and condition residuals decreased, percent moisture content and fork length increased, and wet weight did not change. WBEC, percent moisture content, and condition residuals fell outside the norm of longterm data ranges within 10–15 daysof starvation, and may be more useful than fork length and wet weight for detecting fish condition responses tosuboptimal environments.
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Online Access: | http://hdl.handle.net/1834/25408 |
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dig-aquadocs-1834-254082021-06-26T06:39:13Z Effects of starvation on energy density of juvenile chum salmon (Oncorhynchus keta) captured in marine waters of Southeastern Alaska Ferguson , Emily A. Sturdevant, Molly V. Orsi, Joseph A. Biology Ecology Fisheries We conducted laboratory starvation experiments on juvenilechum salmon (Oncorhynchus keta) captured in the neritic marine waters of northern Southeast Alaska in June and July 2003. Temporal changes in fish energy density (whole body energy content [WBEC], cal/g dry weight), percent moisture content, wet weight (g), length (mm), and size-related condition residuals were measured in the laboratory and were then compared to long-term field data. Laboratorywater temperatures and salinities averaged 9°C and 32 psu in both months. Trends in response variables were similar for both experimental groups, although sampling intervalswere limited in July because fewer fish were available (n= 54) than in June (n=101). Overall, for June (45-d experimental period, 9 intervals), WBEC, wet weight, and condition residuals decreased and percent moisture content increased, whereas fork length did not change. For July(20-d experimental period, 5 intervals), WBEC and condition residuals decreased, percent moisture content and fork length increased, and wet weight did not change. WBEC, percent moisture content, and condition residuals fell outside the norm of longterm data ranges within 10–15 daysof starvation, and may be more useful than fork length and wet weight for detecting fish condition responses tosuboptimal environments. 2021-06-24T16:20:09Z 2021-06-24T16:20:09Z 2010 article TRUE 0090-0656 http://hdl.handle.net/1834/25408 en http://fishbull.noaa.gov/1082/fergusson.pdf application/pdf application/pdf 218-225 http://aquaticcommons.org/id/eprint/8759 403 2012-06-11 18:32:32 8759 United States National Marine Fisheries Service |
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Biology Ecology Fisheries Biology Ecology Fisheries Ferguson , Emily A. Sturdevant, Molly V. Orsi, Joseph A. Effects of starvation on energy density of juvenile chum salmon (Oncorhynchus keta) captured in marine waters of Southeastern Alaska |
description |
We conducted laboratory starvation experiments on juvenilechum salmon (Oncorhynchus keta) captured in the neritic marine waters of northern Southeast Alaska in June and July 2003. Temporal changes in fish energy density (whole body energy content [WBEC], cal/g dry weight), percent moisture content, wet weight (g), length (mm), and size-related condition residuals were measured in the laboratory and were then compared to long-term field data. Laboratorywater temperatures and salinities averaged 9°C and 32 psu in both months. Trends in response variables were similar for both experimental groups, although sampling intervalswere limited in July because fewer fish were available (n= 54) than in June (n=101). Overall, for June (45-d experimental period, 9 intervals), WBEC, wet weight, and condition residuals decreased and percent moisture content increased, whereas fork length did not change. For July(20-d experimental period, 5 intervals), WBEC and condition residuals decreased, percent moisture content and fork length increased, and wet weight did not change. WBEC, percent moisture content, and condition residuals fell outside the norm of longterm data ranges within 10–15 daysof starvation, and may be more useful than fork length and wet weight for detecting fish condition responses tosuboptimal environments. |
format |
article |
topic_facet |
Biology Ecology Fisheries |
author |
Ferguson , Emily A. Sturdevant, Molly V. Orsi, Joseph A. |
author_facet |
Ferguson , Emily A. Sturdevant, Molly V. Orsi, Joseph A. |
author_sort |
Ferguson , Emily A. |
title |
Effects of starvation on energy density of juvenile chum salmon (Oncorhynchus keta) captured in marine waters
of Southeastern Alaska |
title_short |
Effects of starvation on energy density of juvenile chum salmon (Oncorhynchus keta) captured in marine waters
of Southeastern Alaska |
title_full |
Effects of starvation on energy density of juvenile chum salmon (Oncorhynchus keta) captured in marine waters
of Southeastern Alaska |
title_fullStr |
Effects of starvation on energy density of juvenile chum salmon (Oncorhynchus keta) captured in marine waters
of Southeastern Alaska |
title_full_unstemmed |
Effects of starvation on energy density of juvenile chum salmon (Oncorhynchus keta) captured in marine waters
of Southeastern Alaska |
title_sort |
effects of starvation on energy density of juvenile chum salmon (oncorhynchus keta) captured in marine waters
of southeastern alaska |
publishDate |
2010 |
url |
http://hdl.handle.net/1834/25408 |
work_keys_str_mv |
AT fergusonemilya effectsofstarvationonenergydensityofjuvenilechumsalmononcorhynchusketacapturedinmarinewatersofsoutheasternalaska AT sturdevantmollyv effectsofstarvationonenergydensityofjuvenilechumsalmononcorhynchusketacapturedinmarinewatersofsoutheasternalaska AT orsijosepha effectsofstarvationonenergydensityofjuvenilechumsalmononcorhynchusketacapturedinmarinewatersofsoutheasternalaska |
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