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Growth efficiency and temperature in scallops: A comparative analysis of species adapted to different temperatures

Growth efficiency and temperature in scallops: A comparative analysis of species adapted to different temperatures
Growth efficiency and temperature in scallops: A comparative analysis of species adapted to different temperatures
1. Data were collected on metabolic activity and growth in pectinid bivalves from published studies. The resulting database comprised three types of data sets: (i) synoptic data (13 populations, 7 species), where both individual growth performance and metabolism are known, (ii) 'metabolism only' data (82 populations, 13 species), and (iii) 'growth only' data (198 populations, 26 species). 2. In pectinid bivalves belonging to different species and living under different environmental conditions metabolic activity (standard metabolic rate, SMRAvg, Q10 = 2·97) is more closely related to temperature than individual growth (overall growth performance, OGP index P, Q10 = 1·12). 3. The synthesis of the two corresponding Arrhenius equations shows that the relationship between the SMRAvg-to-OGP ratio and temperature follows the Arrhenius model, too, with Q10 = 2·26. 4. SMRAvg-to-OGP is an inverse proxy for growth efficiency, hence growth efficiency decreases with rising temperature across a wide range of pectinid populations and species. Thus, there is strong empirical evidence that elevated temperature constrains growth efficiency in scallops and that adaptation does not fully compensate for this effect.
0269-8463
641-647
Heilmayer, O.
cbad0ced-292f-41ad-a42f-7ff810750457
Brey, T.
721b07df-2ec0-49dd-8780-18bcb7ca28c4
Pörtner, H.O.
daa733fe-8ae4-4bdd-8296-2c2f631a742c
Heilmayer, O.
cbad0ced-292f-41ad-a42f-7ff810750457
Brey, T.
721b07df-2ec0-49dd-8780-18bcb7ca28c4
Pörtner, H.O.
daa733fe-8ae4-4bdd-8296-2c2f631a742c

Heilmayer, O., Brey, T. and Pörtner, H.O. (2004) Growth efficiency and temperature in scallops: A comparative analysis of species adapted to different temperatures. Functional Ecology, 18 (5), 641-647. (doi:10.1111/j.0269-8463.2004.00905.x).

Record type: Article

Abstract

1. Data were collected on metabolic activity and growth in pectinid bivalves from published studies. The resulting database comprised three types of data sets: (i) synoptic data (13 populations, 7 species), where both individual growth performance and metabolism are known, (ii) 'metabolism only' data (82 populations, 13 species), and (iii) 'growth only' data (198 populations, 26 species). 2. In pectinid bivalves belonging to different species and living under different environmental conditions metabolic activity (standard metabolic rate, SMRAvg, Q10 = 2·97) is more closely related to temperature than individual growth (overall growth performance, OGP index P, Q10 = 1·12). 3. The synthesis of the two corresponding Arrhenius equations shows that the relationship between the SMRAvg-to-OGP ratio and temperature follows the Arrhenius model, too, with Q10 = 2·26. 4. SMRAvg-to-OGP is an inverse proxy for growth efficiency, hence growth efficiency decreases with rising temperature across a wide range of pectinid populations and species. Thus, there is strong empirical evidence that elevated temperature constrains growth efficiency in scallops and that adaptation does not fully compensate for this effect.

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Published date: 2004

Identifiers

Local EPrints ID: 46961
URI: http://eprints.soton.ac.uk/id/eprint/46961
ISSN: 0269-8463
PURE UUID: 12a76989-67af-4aaa-ad52-e682e7b6d26d

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Date deposited: 26 Jul 2007
Last modified: 15 Mar 2024 09:29

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Contributors

Author: O. Heilmayer
Author: T. Brey
Author: H.O. Pörtner

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