An investigation of links between metabolic rate and feed efficiency in European sea bass Dicentrarchus labrax

Author:

Rodde Charles1234,de Verdal Hugues12,Vandeputte Marc45,Allal François4,Nati Julie4,Besson Mathieu46,Blasco Felipe R7,Benzie John A H38,McKenzie David J4

Affiliation:

1. CIRAD, UMR ISEM, 34398 Montpellier, France

2. ISEM, Université de Montpellier, CNRS, EPHE, IRD, 34095 Montpellier, France

3. Worldfish, Jalan Batu Maung, Bayan Lepas, 11960 Penang, Malaysia

4. MARBEC, Université de Montpellier, CNRS, Ifremer, IRD, 34250 Palavas-les-Flots, France

5. Université Paris-Saclay, INRAE, AgroParisTech, GABI, 78350 Jouy-en-Josas, France

6. SYSAAF Section Aquacole, Campus de Beaulieu, 35000 Rennes, France

7. Laboratório de Zoofisiologia e Bioquímica Comparativa, Departamento de Ciências Fisiológicas, Universidade Federal de São Carlos, São Paulo 13565-905, Brasil

8. School of Biological, Earth and Environmental Sciences, University College Cork, Cork T12 K8AF, Ireland

Abstract

Abstract Feed efficiency (FE) is the amount of body weight gain for a given feed intake. Improving FE through selective breeding is key for sustainable finfish aquaculture but its evaluation at individual level is technically challenging. We therefore investigated whether individual routine metabolic rate (RMR) was a predictor of individual FE in the European sea bass Dicentrarchus labrax, a major species in European mariculture. The European sea bass has three genetically distinct populations across its geographical range, namely Atlantic (AT), West Mediterranean (WM), and East Mediterranean (EM). We compared FE and RMR of fish from these three populations at 18 or 24 °C. We held 200 fish (62 AT, 66 WM, and 72 EM) in individual aquaria and fed them from ad libitum down to fasting. FI was assessed for an ad libitum feeding rate and for a fixed restricted ration (1% of metabolic body weight·day−1, with metabolic body weight = body weight0.8). After being refed 12 wk in a common tank, individual RMR was measured over 36 h by intermittent flow respirometry. There was a significant effect of temperature whereby fish at 18 °C had greater mean FE (P < 0.05) and lower RMR (P < 0.001). There was also a significant effect of population, where AT fish had lower FE (P < 0.05) and greater RMR (P < 0.001) than WM and EM, at both temperatures. Despite these differences in temperature and population means, individual FE and RMR were not significantly correlated (P > 0.05). Therefore, although the results provide evidence of an association between metabolic rate and FE, RMR was not a predictor of individual FE, for reasons that require further investigation.

Funder

CIRAD

CGIAR Research Program on Fish Agrifood Systems

International Fund for Agricultural Development

Publisher

Oxford University Press (OUP)

Subject

Genetics,Animal Science and Zoology,General Medicine,Food Science

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