Evolution, biogeography, and patterns of diversification in passerine birds
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[1] A. Cibois,et al. AN ENDEMIC RADIATION OF MALAGASY SONGBIRDS IS REVEALED BY MITOCHONDRIAL DNA SEQUENCE DATA , 2001, Evolution; international journal of organic evolution.
[2] S. Olson,et al. Morphological similarities between the Menurae and the Rhinocryptidae, relict passerine birds of the southern hemisphere , 1982 .
[3] R. Raikow. Systematic and functional aspects of the locomotor system of the Scrub-birds, Atrichornis, and Lyrebirds, Menura (Passeriformes: Atrichornithidae and Menuridae) , 1985 .
[4] Jon E. Ahlquist,et al. Phylogeny and Classification of the Birds: A Study in Molecular Evolution , 1991 .
[5] R. Raikow. Monophyly of the Passeriformes: Test of a Phylogenetic Hypothesis , 1982 .
[6] B. Tiffney. Seed Size, Dispersal Syndromes, and the Rise of the Angiosperms: Evidence and Hypothesis , 1984 .
[7] J. G. Groth. Molecular phylogenetics of finches and sparrows: consequences of character state removal in cytochrome b sequences. , 1998, Molecular phylogenetics and evolution.
[8] R. Ward,et al. Complete mitochondrial genome sequences of two extinct moas clarify ratite evolution , 2001, Nature.
[9] W. Moore,et al. Comparative evolution of the mitochondrial cytochrome b gene and nuclear beta-fibrinogen intron 7 in woodpeckers. , 2000, Molecular biology and evolution.
[10] Sudhir Kumar,et al. Continental breakup and the ordinal diversification of birds and mammals , 1996, Nature.
[11] M. Armstrong,et al. Phylogenetic Utility of Avian Ovomucoid Intron G: A Comparison of Nuclear and Mitochondrial Phylogenies in Galliformes , 2001 .
[12] F. K. Barker,et al. A phylogenetic hypothesis for passerine birds: taxonomic and biogeographic implications of an analysis of nuclear DNA sequence data , 2002, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[13] W. J. Beecher. A Phylogeny of the Oscines , 1953 .
[14] J. Norman,et al. Molecular Perspectives on the Phylogenetic Affinities of Lyrebirds (Menuridae) and Treecreepers (Climacteridae) , 1996 .
[15] W. Boles. A preliminary analysis of the Passeriformes from Riversleigh, northwestern Queensland, Australia, with the description of a new species of lyrebird , 1995 .
[16] D Penny,et al. Mass Survival of Birds Across the Cretaceous- Tertiary Boundary: Molecular Evidence , 1997, Science.
[17] T. Paton,et al. Complete mitochondrial DNA genome sequences show that modern birds are not descended from transitional shorebirds , 2002, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[18] W. Boles. Fossil Songbirds (Passeriformes) from the Early Eocene of Australia , 1997 .
[19] M. Hasegawa,et al. Interordinal relationships of birds and other reptiles based on whole mitochondrial genomes. , 1999, Systematic biology.
[20] D. Mindell. Avian molecular evolution and systematics , 1997 .
[21] W. Bock,et al. Morphology of the Noisy Scrub-bird, Atrichornis clamosus (Passeriformes: Atrichornithidae): Systematic Relationships and Summary , 1985 .
[22] D. Mindell,et al. Rooting a phylogeny with homologous genes on opposite sex chromosomes (gametologs): a case study using avian CHD. , 2000, Molecular biology and evolution.
[23] R. Raikow. Appendicular myology and relationships of the New World nine-primaried oscines (Aves: Passeriformes) , 1978, Bulletin of Carnegie Museum of Natural History.
[24] J. Diamond,et al. The Birds of Northern Melanesia – Speciation, Ecology and Biogeography (Book Review) , 2001, Evolutionary Ecology.
[25] C. Mourer-Chauviré. Dynamics of the avifauna during the Paleogene and the Early Neogene of France. Settling of the recent fauna , 1995 .
[26] S. Lanyon,et al. NEW WORLD NINE-PRIMARIED OSCINE RELATIONSHIPS: CONSTRUCTING A MITOCHONDRIAL DNA FRAMEWORK , 2000 .
[27] Johansson,et al. Clades within the 'higher land birds', evaluated by nuclear DNA sequences , 2001 .
[28] A. Härlid,et al. The Complete Mitochondrial Genome of Rhea americana and Early Avian Divergences , 1998, Journal of Molecular Evolution.
[29] P. Ericson,et al. Systematic affinities of the lyrebirds (Passeriformes: Menura), with a novel classification of the major groups of passerine birds. , 2002, Molecular phylogenetics and evolution.
[30] D. Mindell,et al. Molecular phylogenetic analysis of Fringillidae, "New World nine-primaried oscines" (Aves: Passeriformes). , 2002, Molecular phylogenetics and evolution.
[31] A. Cibois,et al. Towards a molecular systematics of the genus Criniger, and a preliminary phylogeny of the bulbuls (Aves, Passeriformes, Pycnonotidae) , 2001 .
[32] M. Milinkovitch,et al. Amphibians as Indicators of Early Tertiary "Out-of-India" Dispersal of Vertebrates , 2001, Science.
[33] F. Grine,et al. Cosmopolitanism among Gondwanan Late Cretaceous mammals , 1997, Nature.
[34] P. L. Ames. The Unusual Syrinx Morphology of Australian Treecreepers Climacteris , 1987 .
[35] J. Fjeldså,et al. Systematic relationships and biogeography of the tracheophone suboscines (Aves: Passeriformes). , 2002, Molecular phylogenetics and evolution.
[36] E. M. Friis,et al. The Origins of Angiosperms and their Biological Consequences , 1988 .
[37] S. Lanyon,et al. A MOLECULAR PHYLOGENY OF THE BLACKBIRDS (ICTERIDAE): FIVE LINEAGES REVEALED BY CYTOCHROME-B SEQUENCE DATA , 1999 .
[38] A. Cibois,et al. Molecular systematics of the Malagasy babblers (Passeriformes: timaliidae) and warblers (Passeriformes: sylviidae), based on cytochrome b and 16S rRNA sequences. , 1999, Molecular phylogenetics and evolution.
[39] W. Moore,et al. A test of a mitochondrial gene-based phylogeny of woodpeckers (genus Picoides) using an independent nuclear gene, beta-fibrinogen intron 7. , 2002, Molecular phylogenetics and evolution.
[40] J. Ahlquist,et al. The Phylogeny and Classification of the Australo-Papuan Passerine Birds , 1985 .
[41] A. Baker,et al. Molecular evidence for phylogenetic relationships among buntings and American sparrows (Emberizidae) , 2001 .
[42] O. Eriksson,et al. Seed Size, Fruit Size, and Dispersal Systems in Angiosperms from the Early Cretaceous to the Late Tertiary , 2000, The American Naturalist.
[43] H. B. Tordoff. A systematic study of the avian family Fringillidae, based on the structure of the skull , 1954 .
[44] D. Mindell,et al. CHAPTER 8 – Phylogenetic Relationships among and within Select Avian Orders Based on Mitochondrial DNA , 1997 .
[45] R. DeConto,et al. Alternative global Cretaceous paleogeography , 1999 .
[46] J. Cracraft,et al. The Morphology of the Syrinx in Passerine Birds , 1972 .
[47] R. Raikow. Hindlimb Myology and Evolution of the Old World Suboscine Passerine Birds/Acanthisittidae, Pittidae, Philepittidae, Eurylaimidae , 1987 .
[48] A. Feduccia. Explosive Evolution in Tertiary Birds and Mammals , 1995, Science.
[49] S. Lanyon,et al. Molecular systematics of the grackles and allies, and the effect of additional sequence (CYT B and ND2) , 1999 .
[50] S. Olson. The Fossil Record of Birds , 1985 .
[51] P. Ericson,et al. Phylogeny of Passerida (Aves: Passeriformes) based on nuclear and mitochondrial sequence data. , 2003, Molecular phylogenetics and evolution.
[52] J. Ahlquist. Phylogeny and classification of birds , 1985 .
[53] A. Feduccia. The origin and evolution of birds , 1996 .
[54] J. Cracraft. Avian evolution, Gondwana biogeography and the Cretaceous–Tertiary mass extinction event , 2001, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[55] S. Hedges,et al. Calibration of avian molecular clocks. , 2001, Molecular biology and evolution.
[56] J. Diamond,et al. The birds of northern Melanesia , 2001 .
[57] T. Parsons,et al. BASAL PHYLOGENY OF THE TYRANNOIDEA BASED ON COMPARISONS OF CYTOCHROME b AND EXONS OF NUCLEAR c-myc AND RAG-1 GENES , 2002 .
[58] T. Parsons,et al. Phylogeny of major lineages of suboscines (Passeriformes) analysed by nuclear DNA sequence data , 2001 .
[59] G. Barrowclough,et al. Basal divergences in birds and the phylogenetic utility of the nuclear RAG-1 gene. , 1999, Molecular phylogenetics and evolution.
[60] A. Härlid,et al. Analyses of mitochondrial DNA nest ratite birds within the Neognathae: supporting a neotenous origin of ratite morphological characters , 1999, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[61] W. Bock. THE PNEUMATIC FOSSA OF THE HUMERUS IN THE PASSERES , 1962 .
[62] P. Ericson,et al. Molecular support for a sister group relationship between Pici and Galbulae (Piciformes sensu Wetmore 1960) , 2003 .
[63] S. Hedges,et al. The early history of modern birds inferred from DNA sequences of nuclear and mitochondrial ribosomal genes. , 2000, Molecular biology and evolution.
[64] C. G. Sibley. The Relationships of the Lyrebirds , 1974 .
[65] Dodson,et al. Predatory dinosaur remains from madagascar: implications for the cretaceous biogeography of gondwana , 1998, Science.
[66] Burt L. Monroe,et al. A Supplement To Distribution And Taxonomy Of Birds Of The World , 1952 .
[67] O. Richard,et al. PHYLOGENY, BIOGEOGRAPHY, AND EVOLUTION OF THE BROADBILLS (EURYLAIMIDAE) AND ASITIES (PHILEPITTIDAE) BASED ON MORPHOLOGY , 1993 .
[68] P. Ericson,et al. A Gondwanan origin of passerine birds supported by DNA sequences of the endemic New Zealand wrens , 2002, Proceedings of the Royal Society of London. Series B: Biological Sciences.