15N signatures do not reflect body condition in arctic ground squirrels

Studies using stable-isotope analysis documented an enrichment in d15N values in nutritionally stressed animals. Investigators suggested that changes in d15N values measured in urine, hair, and blood may be a good indicator of lean-tissue losses. During our investigations into the effects of populat...

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Main Authors: Ben-David, M., McColl, C., Boonstra, Rudy, Karels, T.J.
Format: Article in Journal/Newspaper
Language:English
Published: National Research Council Canada 1999
Subjects:
Online Access:http://hdl.handle.net/1807/495
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spelling ftunivtoronto:oai:localhost:1807/495 2023-05-15T15:00:47+02:00 15N signatures do not reflect body condition in arctic ground squirrels Ben-David, M. McColl, C. Boonstra, Rudy Karels, T.J. 1999 71785 bytes application/pdf http://hdl.handle.net/1807/495 en_CA eng National Research Council Canada Can. Zool. 77(9): 1373-1378 (1999) http://hdl.handle.net/1807/495 Article 1999 ftunivtoronto 2020-06-17T11:06:23Z Studies using stable-isotope analysis documented an enrichment in d15N values in nutritionally stressed animals. Investigators suggested that changes in d15N values measured in urine, hair, and blood may be a good indicator of lean-tissue losses. During our investigations into the effects of population density on body condition and reproduction of female Arctic ground squirrels (Spermophilus parryii plesius) near Kluane Lake, Yukon, Canada, we examined the relations between body condition and d15N values. Data obtained from 20 livetrapped female ground squirrels suggested that reproductive females from a population with moderate density and low food availability experienced a reduction in body condition, as indicated by mass loss and changes in blood urea nitrogen (BUN) and glucose concentrations. In contrast, those from a population that failed to reproduce successfully and had high density and low food availability experienced no nutritional stress. Similarly, those females from a high-density population with high food availability (i.e., supplemented food) that reproduced successfully suffered no noticeable nutritional stress. In contrast to our prediction, d15N values did not show a decline with increasing body mass, and animals in poor and excellent body condition had similar d15N values. In addition, female ground squirrels from the same group with access to similar types of food (natural or supplemented) and with similar body masses, BUN, and blood glucose concentrations showed a difference of up to 1.8‰ in d15N values. Thus, our results suggest that the ecological process (i.e., diet selection) may have obscured the physiological one (i.e., recycling of nitrogen). Therefore, we recommend that field ecologists studying animal diets using stable-isotope analysis use alternative techniques when attempting to evaluate the body condition of their subjects. Article in Journal/Newspaper Arctic Yukon University of Toronto: Research Repository T-Space Arctic Canada Kluane Lake ENVELOPE(-138.773,-138.773,61.261,61.261) Yukon
institution Open Polar
collection University of Toronto: Research Repository T-Space
op_collection_id ftunivtoronto
language English
description Studies using stable-isotope analysis documented an enrichment in d15N values in nutritionally stressed animals. Investigators suggested that changes in d15N values measured in urine, hair, and blood may be a good indicator of lean-tissue losses. During our investigations into the effects of population density on body condition and reproduction of female Arctic ground squirrels (Spermophilus parryii plesius) near Kluane Lake, Yukon, Canada, we examined the relations between body condition and d15N values. Data obtained from 20 livetrapped female ground squirrels suggested that reproductive females from a population with moderate density and low food availability experienced a reduction in body condition, as indicated by mass loss and changes in blood urea nitrogen (BUN) and glucose concentrations. In contrast, those from a population that failed to reproduce successfully and had high density and low food availability experienced no nutritional stress. Similarly, those females from a high-density population with high food availability (i.e., supplemented food) that reproduced successfully suffered no noticeable nutritional stress. In contrast to our prediction, d15N values did not show a decline with increasing body mass, and animals in poor and excellent body condition had similar d15N values. In addition, female ground squirrels from the same group with access to similar types of food (natural or supplemented) and with similar body masses, BUN, and blood glucose concentrations showed a difference of up to 1.8‰ in d15N values. Thus, our results suggest that the ecological process (i.e., diet selection) may have obscured the physiological one (i.e., recycling of nitrogen). Therefore, we recommend that field ecologists studying animal diets using stable-isotope analysis use alternative techniques when attempting to evaluate the body condition of their subjects.
format Article in Journal/Newspaper
author Ben-David, M.
McColl, C.
Boonstra, Rudy
Karels, T.J.
spellingShingle Ben-David, M.
McColl, C.
Boonstra, Rudy
Karels, T.J.
15N signatures do not reflect body condition in arctic ground squirrels
author_facet Ben-David, M.
McColl, C.
Boonstra, Rudy
Karels, T.J.
author_sort Ben-David, M.
title 15N signatures do not reflect body condition in arctic ground squirrels
title_short 15N signatures do not reflect body condition in arctic ground squirrels
title_full 15N signatures do not reflect body condition in arctic ground squirrels
title_fullStr 15N signatures do not reflect body condition in arctic ground squirrels
title_full_unstemmed 15N signatures do not reflect body condition in arctic ground squirrels
title_sort 15n signatures do not reflect body condition in arctic ground squirrels
publisher National Research Council Canada
publishDate 1999
url http://hdl.handle.net/1807/495
long_lat ENVELOPE(-138.773,-138.773,61.261,61.261)
geographic Arctic
Canada
Kluane Lake
Yukon
geographic_facet Arctic
Canada
Kluane Lake
Yukon
genre Arctic
Yukon
genre_facet Arctic
Yukon
op_relation Can. Zool. 77(9): 1373-1378 (1999)
http://hdl.handle.net/1807/495
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