Figure 1. Measurements of small mammal.
Figure. 2. Differences in mean body mass and head-body length of Siberian flying squirrel between Korea (n=51), Hokkaido (n=22, Ohdachi et al. 2015) and Finland (n=72, Selonen et al. 2016).
Table 1. Description of morphometric variables and sexual dimorphism index of Siberian flying squirrel between males and females.
References
- Amadon, D. 1975. Why are female birds of prey larger than males? Raptor Research 9: 1-11.
- Amori, G., Aloise, G. and Luiselli, L. 2014. Modern analyses on an historical data set: skull morphology of Italian red squirrel populations. Zookeys 368: 79-89. https://doi.org/10.3897/zookeys.368.4691
- Andersson, M. 1994. Sexual selection. Princeton University Press. New Jersey, U.S.A. pp. 624.
- Barnett, A. and Dutton, J. 1995. Expedition field techniques small mammals (excluding bats). Expedition Advisory Center. London, U.K. pp. 126.
- Bergmann, C. 1847. Ueder die Verhalltnisse der Warmeokonomie der Thiere zu ihrer Grosse. Gottinger studien 3: 595-780.
- Carole, T., Michel, G.J., Guy, V.L., Mark, H. and Nicolas, M. 2006. How does environmental variation influence body mass, body size, and body condition? roe deer as a case study. Ecography 29: 301-308. https://doi.org/10.1111/j.2006.0906-7590.04394.x
- Clutton-Brock, T.H. 2007. Sexual selection in males and females. Science 318: 1882-1885. https://doi.org/10.1126/science.1133311
- Cox, R.M., Skelly, S.I. and John-Alder, H.B. 2003. A comparative test of adaptive hypotheses for sexual size dimorphism in lizards. Evolution 57: 1653-1669. https://doi.org/10.1111/j.0014-3820.2003.tb00371.x
- Don, B.A.C. 1983. Home range characteristics and correlates in tree squirrels. Mammal Review 13: 123-32. https://doi.org/10.1111/j.1365-2907.1983.tb00273.x
- Fokidis, H.B., Risch, T.S. and Glenn, T.C. 2007. Reproductive and resource benefits to large female body size in a mammal exhibiting female-biased sexual size dimorphism. Animal Behavior 73: 479-488. https://doi.org/10.1016/j.anbehav.2006.08.010
- Goodman, S.M., Maminirina, C.P., Bradman, H.M., Christidis, L. and Appleton, B.R. 2009. Patterns of morphological and genetic variation in the endemic Malagasy bat Miniopterus gleni (Chiroptera: Miniopteridae), with the description of a new species, M. griffithsi. Journal of Zoological Systematics and Evolutionary Research 48: 75-86. https://doi.org/10.1111/j.1439-0469.2009.00524.x
- Hayssen, V. 2008. Patterns of body and tail length and body mass in Sciuridae. Journal of Mammalogy 89: 852-873. https://doi.org/10.1644/07-MAMM-A-217.1
- Humphries, M.M. and Boutin, S. 1996. Reproductive demands and mass gains: a paradox in female red squirrels (Tamiasciurus hudsonicus). Journal of Animal Ecology 65: 332-338. https://doi.org/10.2307/5879
- Kemp, T.S. 2005. The origin and evolution of mammals. Oxford University Press, Oxford, U.K. pp. 344.
- Lowery, G.H. 1974. The mammals of Louisiana and its adjacent waters. Louisiana State University Press, Baton Rouge, U.S.A. pp. 565.
- Lucas, A.W., Vermeulen, M., Dongen, S.V., Bertolino, S., Molinari, A., Tosi, G. and Matthysen, E. 2007. Effect of spatio-temporal variation in food supply on red squirrel Sciurus vulgaris body size and body mass and its consequences for some fitness components. Ecography 30: 51-65. https://doi.org/10.1111/j.0906-7590.2007.04646.x
- Nandini, R. 2011. Evolution of sexual size dimorphism in squirrels. (Ph.D Dissertation). Alabama. Auburn University.
- NIBR (National Institute of Biological Resources). 2012. Red data book of endangered mammals in Korea. National Institute of Biological Resources. Incheon, Republic of Korea. pp. 111.
- Ohdachi, S.D., Ishibashi, Y., Iwasa, M.A., Fukui, D. and Saitoh, T. 2015. The Wild Mammals of Japan. 2nd Ed. Shoukadoh Book Sellers. Kyoto, Japan. pp. 511.
- Robins, J.H. 2006. Morphological aspects of geographic variation in new world flying squirrels (Genus: Glaucomys). (Ph.D dissertation). Dekalb. Northern Illinois University.
- Rocha, R.G., Ferreira, E., Costa, B., Martins, I., Leite, Y.L., Costa, L. P. and Fonseca, C. 2011. Small mammals of the mid-Araguaia River in central Brazil, with the description of a new species of climbing rat. Zootaxa 2789: 1-34. https://doi.org/10.11646/zootaxa.2789.1.1
- Shine, R. 1989. Ecological causes for the evolution of sexual dimorphism: a review of the evidence. Quarterly Review of Biology 64: 419-461. https://doi.org/10.1086/416458
- Selonen, V., Painter, J.N., Rantala, S. and Hanski, I.K. 2013. Mating system and reproductive success in the Siberian flying squirrel. Journal of Mammalogy 94: 1266-1273. https://doi.org/10.1644/13-MAMM-A-129
- Selonen, V., Wistbacka, R. and Andrea, S. 2016. Sex-specific patterns in body mass and mating system in the Siberian flying squirrel. BMC Zoology 1: 1-9. https://doi.org/10.1186/s40850-016-0003-9
- Smith, R. 1999. Statistics of sexual size dimorphism. Journal of Human Evolution 36: 423-459. https://doi.org/10.1006/jhev.1998.0281
- Thorington, R.W., Koprowski, J.L., Steele, M.A. and Whatton, J.F. 2012. Squirrels of the world. Johns Hopkins Press. Maryland, U.S.A. pp. 472.
- Toïgo, C., Gailard, J., Van Laere, M. Hewison, G. and Morellet, N. 2006. How does environmental variation influence body mass, body size, and body condition? roe deer as a case study. Ecography 29: 301-308. https://doi.org/10.1111/j.2006.0906-7590.04394.x
- Wilson, D.E., Cole, F.R., Nichols, J.D., Rudran, R. and Foster, M.S. 1996. Measuring and monitoring biological diversity (standard methods for mammals). Smithsonian Institution Press, Washington D.C., U.S.A. pp. 440.
- Winson, D.E., Lacher, T.E. and Mittermeier, R.A. 2016. Handbook of the mammals of the World. Vol 6. Lagomorphs and Rodents I. Lynx Edicions. Barcelona, Spain. pp. 987.