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Bird Fruit Preferences Match the Frequency of Fruit Colours in Tropical Asia

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Journal Sci Rep
Specialty Science
Date 2014 Jul 18
PMID 25033283
Citations 18
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Abstract

While many factors explain the colour of fleshy fruits, it is thought that black and red fruits are common in part because frugivorous birds prefer these colours. We examined this still controversial hypothesis at a tropical Asian field site, using artificial fruits, fresh fruits, four wild-caught resident frugivorous bird species, and hand-raised naïve birds from three of the same species. We demonstrate that all birds favored red artificial fruits more than yellow, blue, black and green, although the artificial black colour was found subsequently to be similar to the artificial blue colour in its spectral reflectance. Wild-caught birds preferred both black and red fleshy natural fruits, whereas hand-raised naïve birds preferred black to red natural fleshy fruits and to those of other colours. All birds avoided artificial and naturally ripe green fruits. The inter-individual variation in colour choice was low and the preferences were constant over time, supporting the hypothesis that bird colour preferences are a contributing factor driving fruit colour evolution in tropical Asia.

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References
1.
Valido A, Schaefer H, Jordano P . Colour, design and reward: phenotypic integration of fleshy fruit displays. J Evol Biol. 2011; 24(4):751-60. DOI: 10.1111/j.1420-9101.2010.02206.x. View

2.
Burns K, Cazetta E, Galetti M, Valido A, Schaefer H . Geographic patterns in fruit colour diversity: do leaves constrain the colour of fleshy fruits?. Oecologia. 2008; 159(2):337-43. DOI: 10.1007/s00442-008-1227-3. View

3.
Larrinaga A . Inter-specific and intra-specific variability in fruit color preference in two species of Turdus. Integr Zool. 2011; 6(3):244-58. DOI: 10.1111/j.1749-4877.2011.00249.x. View

4.
Duan Q, Quan R . [Natural fruit colour selection by frugivorous birds in Xishuangbanna]. Dongwuxue Yanjiu. 2012; 33(5):427-32. DOI: 10.3724/SP.J.1141.2012.05427. View

5.
Stournaras K, Lo E, Bohning-Gaese K, Cazetta E, Dehling D, Schleuning M . How colorful are fruits? Limited color diversity in fleshy fruits on local and global scales. New Phytol. 2013; 198(2):617-629. DOI: 10.1111/nph.12157. View