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Published in: Anatomical Science International 3/2009

01-09-2009 | Original Article

Microstructure of the feather in Japanese Jungle Crows (Corvus macrorhynchos) with distinguishing gender differences

Authors: Eunok Lee, Masato Aoyama, Shoei Sugita

Published in: Anatomical Science International | Issue 3/2009

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Abstract

Assessing gender difference in Japanese Jungle Crows (Corvus macrorhynchos) is difficult by gross observation because both sexes have black plumage colors. Careful observation of the plumage, however, reveals that it is actually iridescent glossy purple and dark-green in color, and that these colors are more marked in adult males than in females. In birds, such iridescent structural colors are generally produced in the feather barbules, where light is scattered constructively by laminar arrays consisting of alternating layers of materials with different refractive indices, namely keratin, melanin and air. We have investigated differences in the microstructure of the feathers of male and female Jungle Crows by means of scanning and transmission electron microscopy. Male birds had more barbs than females, and the length of the prongs was shorter in males than in females. The density of the melanin granules in the cross-section of barbules was higher in males than in females. Moreover, only in males did the melanin granules show an ordered arrangement beneath a keratin cortex layer at the edges of barbules. These results demonstrate that there are microstructural differences in the feathers of male and female Jungle Crows and suggest that the Jungle Crows’ feathers may have iridescent coloring that differs according to gender.
Literature
go back to reference Badyaev AV, Hill GE (2000) Evolution of sexual dichromatism: contribution of carotenoid versus melanin-based coloration. Biol J Linn Soc 69:153–172CrossRef Badyaev AV, Hill GE (2000) Evolution of sexual dichromatism: contribution of carotenoid versus melanin-based coloration. Biol J Linn Soc 69:153–172CrossRef
go back to reference Doucet SM, Shawkey MD, Hill GE, Montgomerie R (2006) Iridescent plumage in satin bowerbirds: structure, mechanisms and nonstructural predictors of individual variation in colour. J Exp Biol 209:380–390PubMedCrossRef Doucet SM, Shawkey MD, Hill GE, Montgomerie R (2006) Iridescent plumage in satin bowerbirds: structure, mechanisms and nonstructural predictors of individual variation in colour. J Exp Biol 209:380–390PubMedCrossRef
go back to reference Dove CJ (1997) Quantification of microscopic feather characters used in the identification of North American plovers. Condor 99:47–57CrossRef Dove CJ (1997) Quantification of microscopic feather characters used in the identification of North American plovers. Condor 99:47–57CrossRef
go back to reference Durrer H (1962) Schillerfarben beim pfau (Pavo cristatus L.). Verh Naturf Ges Basel 73:204–224 Durrer H (1962) Schillerfarben beim pfau (Pavo cristatus L.). Verh Naturf Ges Basel 73:204–224
go back to reference Greenewalt CH, Brandt W, Friel DD (1960) Iridescent colors of hummingbird feathers. J Opt Soc Am 50:1005–1013CrossRef Greenewalt CH, Brandt W, Friel DD (1960) Iridescent colors of hummingbird feathers. J Opt Soc Am 50:1005–1013CrossRef
go back to reference Hill GE, McGraw KJ (2006) Bird coloration, vol 1: mechanisms and measurements. Harvard University Press, Boston Hill GE, McGraw KJ (2006) Bird coloration, vol 1: mechanisms and measurements. Harvard University Press, Boston
go back to reference Li Y, Lu Z, Yin H, Yu X, Liu X, Zi J (2005) Structural origin of the brown color of barbules in male peacock tail feathers. Phys Rev E 72:010902-1-4 Li Y, Lu Z, Yin H, Yu X, Liu X, Zi J (2005) Structural origin of the brown color of barbules in male peacock tail feathers. Phys Rev E 72:010902-1-4
go back to reference Lucas AM, Stettenheim PR (1972) Avian anatomy-interument. US Department of Agriculture, Washington, D.C. Lucas AM, Stettenheim PR (1972) Avian anatomy-interument. US Department of Agriculture, Washington, D.C.
go back to reference Owens IPF, Hartley IR (1998) Sexual dimorphism in birds: why are there so many different forms of dimorphism? Proc R Soc Lond B 265:397–407CrossRef Owens IPF, Hartley IR (1998) Sexual dimorphism in birds: why are there so many different forms of dimorphism? Proc R Soc Lond B 265:397–407CrossRef
go back to reference Prum RO (2006) Anatomy, physical, and evolution of structural colors. In: Hill GE, McGraw KJ (eds) Bird coloration, vol 1: mechanisms and measurements. Harvard University Press, Boston, pp 295–353 Prum RO (2006) Anatomy, physical, and evolution of structural colors. In: Hill GE, McGraw KJ (eds) Bird coloration, vol 1: mechanisms and measurements. Harvard University Press, Boston, pp 295–353
go back to reference Prum RO, Williamson S (2002) Reaction-diffusion models of within-feather pigmentation patterning. Proc R Soc Lond B 269:781–792CrossRef Prum RO, Williamson S (2002) Reaction-diffusion models of within-feather pigmentation patterning. Proc R Soc Lond B 269:781–792CrossRef
go back to reference Shawkey MD, Estes AM, Siefferman LM, Hill GE (2003) Nanostructure predicts intraspecific variation in ultraviolet-blue plumage colour. Proc R Soc Lond 270:1455–1460CrossRef Shawkey MD, Estes AM, Siefferman LM, Hill GE (2003) Nanostructure predicts intraspecific variation in ultraviolet-blue plumage colour. Proc R Soc Lond 270:1455–1460CrossRef
go back to reference Shawkey MD, Hauber ME, Estep L, Hill GE (2006) Evolutionary transitions and mechanisms of matte and iridescent plumage coloration in grackles and allies (Icteridae). J R Soc Interface 3:777–786PubMedCrossRef Shawkey MD, Hauber ME, Estep L, Hill GE (2006) Evolutionary transitions and mechanisms of matte and iridescent plumage coloration in grackles and allies (Icteridae). J R Soc Interface 3:777–786PubMedCrossRef
go back to reference Vigneron JP, Colomer JF, Rassart M, Ingram A, Lousse V (2006) Structural origin of the colored reflections from the black-billed magpie feathers. Phys Rev E 73:021914-1-7 Vigneron JP, Colomer JF, Rassart M, Ingram A, Lousse V (2006) Structural origin of the colored reflections from the black-billed magpie feathers. Phys Rev E 73:021914-1-7
go back to reference Yin H, Shi L, Sha J, Li Y, Qin Y, Dongs B, Meyer S, Liu X, Zhao L, Zi J (2006) Iridescence in the feathers of domestic pigeons. Phys Rev E 74, 051916-1-5 Yin H, Shi L, Sha J, Li Y, Qin Y, Dongs B, Meyer S, Liu X, Zhao L, Zi J (2006) Iridescence in the feathers of domestic pigeons. Phys Rev E 74, 051916-1-5
go back to reference Yoshioka S, Kinoshita S (2002) Effect of macroscopic structure in iridescent color of the peacock feathers. Forma 17:169–181 Yoshioka S, Kinoshita S (2002) Effect of macroscopic structure in iridescent color of the peacock feathers. Forma 17:169–181
go back to reference Yu M, Yue Z, Wu P, Wu DA, Mayer JA, Medina M, Widesitz RB, Jiang TX, Chuong CM (2004) The developmental biology of feather follicles. Int J Dev Biol 48:181–191PubMedCrossRef Yu M, Yue Z, Wu P, Wu DA, Mayer JA, Medina M, Widesitz RB, Jiang TX, Chuong CM (2004) The developmental biology of feather follicles. Int J Dev Biol 48:181–191PubMedCrossRef
Metadata
Title
Microstructure of the feather in Japanese Jungle Crows (Corvus macrorhynchos) with distinguishing gender differences
Authors
Eunok Lee
Masato Aoyama
Shoei Sugita
Publication date
01-09-2009
Publisher
Springer Japan
Published in
Anatomical Science International / Issue 3/2009
Print ISSN: 1447-6959
Electronic ISSN: 1447-073X
DOI
https://doi.org/10.1007/s12565-009-0022-5

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