Environmental enrichment improves behaviors rather than the growth and physiology of rock bream Oplegnathus fasciatus

Author:

Li Zhe123ORCID,Zhou Shanshan123,He Jingjing4,Ying Jie5,Xu Kaida123

Affiliation:

1. Zhejiang Marine Fisheries Research Institute Zhoushan China

2. Scientific Observation and Experimental Station of Fishery Resources of Key Fishing Grounds Ministry of Agriculture and Rural Affairs of the People's Republic of China Zhoushan China

3. Key Laboratory of Sustainable Utilization of Technology Research for Fishery Resources of Zhejiang Province Zhoushan China

4. Marine and Fisheries Institute Zhejiang Ocean University Zhoushan China

5. Yuanjie aquatic seeding farm Zhoushan China

Abstract

AbstractEnvironmental enrichment has the potential to improve the welfare and post‐release survival of hatchery fish stocked for conservation purposes. However, the effectiveness of environmental enrichment is partly dependent on the fish species, life stage, and specific enrichment structure used. To enhance the effectiveness of environmental enrichment, it is crucial to focus on characteristic differences in enrichment structures, such as type and level. This study investigated how differences in enrichment type and level affected physiological and behavioral aspects of the welfare of pre‐release juvenile rock bream Oplegnathus fasciatus by evaluating growth performance, basal and stressed cortisol levels, antioxidant enzyme activities, and exploratory behaviors regarding anxiety and flexibility. Fish were reared for 4 weeks in different enrichment treatments: barren, low‐level cover structure, high‐level cover structure, low‐level interference structure (LI), and high‐level interference structure (HI). The results revealed that fish reared with the LI treatment showed less anxiety and greater flexibility with respect to exploratory behaviors, without oxidative damage being detected. Despite exhibiting less anxiety as well, fish reared in the HI treatment had oxidative damage, indicated by lower superoxide dismutase activity, compared to those in the barren treatment. In addition, none of these enrichment structures enhanced growth performance or mitigate chronic and acute stress responses. Overall, the low‐level interference structure may be more favorable in promoting the behavioral welfare of the fish. Application of this type and level of enrichment may increase the survival of the hatchery fish after release, which is critical to stocking success.

Funder

Key Research and Development Program of Zhejiang Province

National Key Research and Development Program of China

Publisher

Wiley

Subject

Aquatic Science,Ecology, Evolution, Behavior and Systematics

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