The Use of Geometric Morphometrics in Studying Butterfly Wings in an Evolutionary Ecological Context
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Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-540-95853-6_12
Reference85 articles.
1. Abouheif, E. & Wray, G.A. 2002. Evolution of the gene network underlying wing polyphenism in ants. Science 297: 249–252.
2. Azevedo, R.B.R., James, A.C., McCabe, J. & Partridge, L. 1998. Latitudinal variation of wing: thorax size ratio and wing-aspect ratio in Drosophila melanogaster. Evolution 52: 1353–1362.
3. Berwaerts, K. & Van Dyck, H. 2004. Take-off performance under optimal and suboptimal thermal conditions in the butterfly Pararge aegeria. Oecologia 141: 536–545.
4. Betts, C.R. & Wootton, R.J. 1988. Wing shape and flight behaviour in butterflies (Lepidoptera: papilionoidea and hesperioidea): a preliminary analysis. Journal of Experimental Biology 138: 271–288.
5. Birdsall, K., Zimmerman, E., Teeter, K. & Gibson, G. 2000. Genetic variation for the positioning of wing veins in Drosophila melanogaster. Evolution & Development 2: 16–24.
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