272
L. Bargelloni and G. Lecointre
3. Wells RMG (1987) Respiration of Antarctic fish from McMurdo Sound.
Comp Biochem Physiol88A: 417-424
4. Ruud JT (1954) Vertebrates without erythrocytes and blood pigment. Nature
173: 848-850
5. Eastman IT (1985) The evolution of neutrally buoyant notothenioid fishes:
their specialization and potential interactions in the Antarctic marine food
web. In: Siegfried WR, Condy PR, Laws RM (eds) Antarctic nutrient cycles
and food webs. Springer-Verlag, Berlin Heidelberg, pp 430-436
6. Harvey PH, Pagel MD (1991) The comparative method in evolutionary
biology. Oxford University Press, Oxford
7. Iwami T (1985) Osteology and relationships of the family Channichthyidae.
Memoirs of National Institute of Polar Research Ser E: 1-69
8. Hastings PA (1993) Relationships of the fishes of the perciform suborder
Notothenioidei. In: RG Miller (ed) A history and atlas of the fishes of the
Antarctic Ocean. Foresta Institute for Ocean and Mountain Studies, Carson
City, pp 99-107
9. Bargelloni L, Ritchie PA, Patarnello T, Battaglia B, Lambert DM, Meyer A
(1994) Molecular evolution at subzero temperature: mitochondrial and
nuclear phylogenies of fishes from Antarctica (suborder Notothenioidei), and
the evolution of antifreeze glycopeptides. Mol BioI Evol 11: 854-863
10. Lecointre G, Bonillo C, Ozouf-Costaz C, Hureau JC (1997) Molecular
phylogeny of the Antarctic fishes: paraphyly of the Bovichtidae and no
indication for the monophyly of the Notothenioidei (Teleostei). Polar
Biology 18: 193-208
11. Swofford DL (1993) Phylogenetic analysis using parsimony (PAUP). Illinois
Natural History Survey, Champaign
12. Felsenstein J (1985) Confidence limits on phylogenies: an approach using
the bootstrap. Evolution 39: 783-791
13. Wilson AC, Carlson SS, White TJ (1977) Biochemical evolution. Ann Rev
Biochem 46: 573-639
14. Kimura M (1980) A simple method for estimating evolutionary rate of base
substitutions through comparative studies of nucleotide sequences. J Mol
Evoll6: 111-120
15. Wu CI, Li WH (1985) Evidence for higher rates of nucleotide substitution in
rodents than in men. Proc Natl Acad Sci USA 82: 1741-1745
16. Ritchie PA, Lavoue S, Lecointre G (1997) Molecular phylogenetics and the
evolution of Antarctic notothenioid fishes. Comp Biochem Physiol
118A: 1009-1026
17. Balushkin A V (1992) Classification, phylogenetic, and origins of the
families of the suborder Notothenioidei (Perciformes). J Ichthyo132: 90-110
18. Felsenstein J (1978) Cases in which parsimony or compatibility methods will
be positively misleading. Syst Zool27: 401-410
19. Kim J (1996) General inconsistency conditions for maximum parsimony:
effects of branch lengths and increasing numbers of taxa. Syst BioI 45:363374
L. Bargelloni and G. Lecointre
3. Wells RMG (1987) Respiration of Antarctic fish from McMurdo Sound.
Comp Biochem Physiol88A: 417-424
4. Ruud JT (1954) Vertebrates without erythrocytes and blood pigment. Nature
173: 848-850
5. Eastman IT (1985) The evolution of neutrally buoyant notothenioid fishes:
their specialization and potential interactions in the Antarctic marine food
web. In: Siegfried WR, Condy PR, Laws RM (eds) Antarctic nutrient cycles
and food webs. Springer-Verlag, Berlin Heidelberg, pp 430-436
6. Harvey PH, Pagel MD (1991) The comparative method in evolutionary
biology. Oxford University Press, Oxford
7. Iwami T (1985) Osteology and relationships of the family Channichthyidae.
Memoirs of National Institute of Polar Research Ser E: 1-69
8. Hastings PA (1993) Relationships of the fishes of the perciform suborder
Notothenioidei. In: RG Miller (ed) A history and atlas of the fishes of the
Antarctic Ocean. Foresta Institute for Ocean and Mountain Studies, Carson
City, pp 99-107
9. Bargelloni L, Ritchie PA, Patarnello T, Battaglia B, Lambert DM, Meyer A
(1994) Molecular evolution at subzero temperature: mitochondrial and
nuclear phylogenies of fishes from Antarctica (suborder Notothenioidei), and
the evolution of antifreeze glycopeptides. Mol BioI Evol 11: 854-863
10. Lecointre G, Bonillo C, Ozouf-Costaz C, Hureau JC (1997) Molecular
phylogeny of the Antarctic fishes: paraphyly of the Bovichtidae and no
indication for the monophyly of the Notothenioidei (Teleostei). Polar
Biology 18: 193-208
11. Swofford DL (1993) Phylogenetic analysis using parsimony (PAUP). Illinois
Natural History Survey, Champaign
12. Felsenstein J (1985) Confidence limits on phylogenies: an approach using
the bootstrap. Evolution 39: 783-791
13. Wilson AC, Carlson SS, White TJ (1977) Biochemical evolution. Ann Rev
Biochem 46: 573-639
14. Kimura M (1980) A simple method for estimating evolutionary rate of base
substitutions through comparative studies of nucleotide sequences. J Mol
Evoll6: 111-120
15. Wu CI, Li WH (1985) Evidence for higher rates of nucleotide substitution in
rodents than in men. Proc Natl Acad Sci USA 82: 1741-1745
16. Ritchie PA, Lavoue S, Lecointre G (1997) Molecular phylogenetics and the
evolution of Antarctic notothenioid fishes. Comp Biochem Physiol
118A: 1009-1026
17. Balushkin A V (1992) Classification, phylogenetic, and origins of the
families of the suborder Notothenioidei (Perciformes). J Ichthyo132: 90-110
18. Felsenstein J (1978) Cases in which parsimony or compatibility methods will
be positively misleading. Syst Zool27: 401-410
19. Kim J (1996) General inconsistency conditions for maximum parsimony:
effects of branch lengths and increasing numbers of taxa. Syst BioI 45:363374
