2016Unpublished venueRequires access

CAN SOME ANIMALS ADAPT BETTER TO CAPTIVITY THAN OTHERS

Marina Salas, Xavier Manteca

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Abstract

There are significant differences among species in their ability to adapt to captivity. Some species breed well in captivity and usually show no apparent signs of poor welfare, while other highly similar species sometimes live only a short time, breed little or not at all and often show abnormal behaviours. Marine mammals provide several examples of these differences. Thus, the life expectancy of bottlenose dolphins (Tursiops truncatus) in captivity is similar to that of their conspecifics in the wild, and the rate of reproduction of this species may be even higher in captivity than in the wild. By contrast, other species of toothed cetaceans such as Fraser’s dolphin (Lagenodelphis hosei) and Dall’s porpoise (Phocoenoides dalli) are extraordinarily difficult to keep in captivity. Among pinnipeds, walruses (Odobenus rosmarus) breed poorly and have a low life expectancy in captivity, and frequently show oral stereotypes. At the other extreme, gray seals (Halichoerus grypus) breed well in captivity and have a life expectancy equivalent to that of their counterparts in the wild. These differences among species are important because they allow us to anticipate problems and predict which animals are more susceptible to the potential negative effects of captivity. Moreover, understanding the mechanisms that explain these differences would be very useful in the design of strategies to improve the welfare of wild animals in captivity. Despite its importance, the study of differences in the ability

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What this paper is about

There are significant differences among species in their ability to adapt to captivity. Some species breed well in captivity and usually show no apparent signs of poor welfare, while other highly similar species sometimes live only a short time, breed little or not at all and often show abnormal behaviours. Marine mammals provide several examples of these differences. Thus, the life expectancy of bottlenose dolphins (Tursiops truncatus) in captivity is similar to that of their conspecifics in the wild, and the rate of reproduction of this species may be even higher in captivity than in the wild. By contrast, other species of toothed cetaceans such as Fraser’s dolphin (Lagenodelphis hosei) and Dall’s porpoise (Phocoenoides dalli) are extraordinarily difficult to keep in captivity. Among pinnipeds, walruses (Odobenus rosmarus) breed poorly and have a low life expectancy in captivity, and frequently show oral stereotypes. At the other extreme, gray seals (Halichoerus grypus) breed well in captivity and have a life expectancy equivalent to that of their counterparts in the wild. These differences among species are important because they allow us to anticipate problems and predict which animals are more susceptible to the potential negative effects of captivity. Moreover, understanding the mechanisms that explain these differences would be very useful in the design of strategies to improve the welfare of wild animals in captivity. Despite its importance, the study of differences in the ability

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Available abstract

There are significant differences among species in their ability to adapt to captivity. Some species breed well in captivity and usually show no apparent signs of poor welfare, while other highly similar species sometimes live only a short time, breed little or not at all and often show abnormal behaviours. Marine mammals provide several examples of these differences. Thus, the life expectancy of bottlenose dolphins (Tursiops truncatus) in captivity is similar to that of their conspecifics in the wild, and the rate of reproduction of this species may be even higher in captivity than in the wild. By contrast, other species of toothed cetaceans such as Fraser’s dolphin (Lagenodelphis hosei) and Dall’s porpoise (Phocoenoides dalli) are extraordinarily difficult to keep in captivity. Among pinnipeds, walruses (Odobenus rosmarus) breed poorly and have a low life expectancy in captivity, and frequently show oral stereotypes. At the other extreme, gray seals (Halichoerus grypus) breed well in captivity and have a life expectancy equivalent to that of their counterparts in the wild. These differences among species are important because they allow us to anticipate problems and predict which animals are more susceptible to the potential negative effects of captivity. Moreover, understanding the mechanisms that explain these differences would be very useful in the design of strategies to improve the welfare of wild animals in captivity. Despite its importance, the study of differences in the ability

Key concepts: Captivity, Biology, Breed, Zoology, Life expectancy, Ecology, Demography, Population

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