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Rapid Behavioural Adjustments to Unfavourable Light Conditions in European Starlings (Sturnus Vulgaris)

Published online by Cambridge University Press:  11 January 2023

S A Maddocks
Affiliation:
Centre for Behavioural Biology, School of Biological Sciences, University of Bristol, Bristol BS8 1UG, UK
ATD Bennett
Affiliation:
Centre for Behavioural Biology, School of Biological Sciences, University of Bristol, Bristol BS8 1UG, UK
IC Cuthill*
Affiliation:
Centre for Behavioural Biology, School of Biological Sciences, University of Bristol, Bristol BS8 1UG, UK
*
* Contact for correspondence and requests for reprints: i.cuthill@bristol.ac.uk

Abstract

Although it is known that many birds possess ultraviolet (UV)-sensitive vision, most commercially housed poultry species, as well as species held in zoos, laboratories, or bred for show, are maintained under lighting that is deficient in UV wavelengths compared with normal daylight. UV-sensitive vision has been shown to be important in both foraging and mate-choice decisions. UV-poor conditions, in which information in this waveband is eliminated, could, therefore, present an important welfare issue. Eight European starlings were given a series of preference tests (eight hours per trial, for six days), in which they could choose to feed in one of four channels. Four experimental trials were carried out, during which the channels were covered in either UV-transmitting (UV+) or UV-blocking (UV-) filters, to determine whether birds had an initial preference for feeding in UV-rich environments and whether there was any change in their preference over time. There was an initial preference for the UV+ environment, but this preference declined very rapidly with familiarity, and was absent by the final trial. These results imply that starlings can rapidly adjust their feeding behaviour if faced with unfamiliar light environments and that any initial behavioural changes attributable to UV-deficient environments may be short-lived. However, further work is necessary to establish whether these adjustments occur across a range of species and contexts before any welfare concerns can be ruled out.

Type
Short Communication
Copyright
© 2002 Universities Federation for Animal Welfare

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References

Bennett, A T D and Cuthill, I C 1994 Ultraviolet vision in birds: what is its function? Vision Research 34: 14711478CrossRefGoogle ScholarPubMed
Bennett, A T D, Cuthill, I C, Partridge, J C and Lunau, K 1997 Ultraviolet plumage colors predict mate preferences in starlings. Proceedings of the National Academy of Sciences USA 94: 86188621CrossRefGoogle ScholarPubMed
Bennett, A T D, Cuthill, I C, Partridge, J C and Maier, E J 1996 Ultraviolet vision and mate choice in zebra finches. Nature 380: 433435CrossRefGoogle Scholar
Cuthill, I C, Bennett, ATD, Partridge, J C and Maier, E J 1999 Plumage reflectance and the objective assessment of avian sexual dichromatism. American Naturalist 153: 183200Google ScholarPubMed
Cuthill, I C, Partridge, J C, Bennett, ATD, Church, S C, Hart, N S and Hunt, S 2000 Ultraviolet vision in birds. Advances in the Study of Behavior 29: 159214Google Scholar
D'Eath, R B 1998 Can video images imitate real stimuli in animal behaviour experiments? Biological Review 73: 267292CrossRefGoogle Scholar
Hart, N S, Partridge, J C and Cuthill, I C 1998 Visual pigments, oil droplets and cone photoreceptor distribution in the European starling (Sturnus vulgaris). Journal of Experimental Biology 201: 14331446CrossRefGoogle ScholarPubMed
Huber-Eicher, B and Wechsler, B 1997 Feather pecking in domestic chicks: its relation to dustbathing and foraging. Animal Behaviour 54: 757768CrossRefGoogle ScholarPubMed
Hunt, S, Cuthill, I C, Swaddle, J P and Bennett, ATD 1997 Ultraviolet vision and band-colour preferences in female zebra finches, Taeniopygia guttata. Animal Behaviour 54: 13831392CrossRefGoogle ScholarPubMed
Lewis, P, Perry, G, Sherwin, C and Moinard, C 2000 Effect of ultraviolet radiation on the performance of intact male turkeys. Poultry Science 79: 850855CrossRefGoogle ScholarPubMed
Lewis, P D and Morris, T R 1998 Responses of domestic poultry to various light sources. World's Poultry Science Journal 54: 725CrossRefGoogle Scholar
Manser, C E 1996 Effects of lighting on the welfare of domestic poultry: a review. Animal Welfare 5: 341360Google Scholar
Minitab Inc. 1998 Minitab User's Guide (Release 12). Minitab Inc.: State College, PA, USAGoogle Scholar
Moinard, C and Sherwin, C M 1999 Turkeys prefer fluorescent light with supplementary ultraviolet radiation. Applied Animal Behaviour Science 64: 261 -267CrossRefGoogle Scholar
Prayitno, D, Phillips, C J C and Omed, H 1993 The initial and long-term preferences of broilers for red, blue and green light after being reared in red, green, blue or white light. Animal Production 56: 438Google Scholar
Prescott, N and Wathes, C 1999 Reflective properties of domestic fowl (Gallus g. domesticus), the fabric of their housing and the characteristics of the light environment in environmentally controlled poultry houses. British Poultry Science 40: 185193CrossRefGoogle Scholar
Sherwin, C M 1998 Light intensity preferences of domestic male turkeys. Applied Animal Behaviour Science 58: 121130CrossRefGoogle Scholar
Sherwin, C M and Devereux, C L 1999 Preliminary investigations of ultraviolet-induced markings on domestic turkey chicks and a possible role in injurious pecking. British Poultry Science 40: 429433CrossRefGoogle Scholar
Sherwin, C M, Lewis, P D and Perry, G C 1999 Effects of environmental enrichment, fluorescent and intermittent lighting on injurious pecking amongst male turkey poults. British Poultry Science 40: 592598CrossRefGoogle ScholarPubMed