Access the full text.
Sign up today, get DeepDyve free for 14 days.
S. Seino, G. Bell, W. Li (1992)
Sequences of primate insulin genes support the hypothesis of a slower rate of molecular evolution in humans and apes than in monkeys.Molecular biology and evolution, 9 2
David Hwang (2004)
Inaugural Article: Bayesian Markov chain Monte Carlo sequence analysis reveals varying neutral substitution patterns in mammalian evolutionProceedings of the National Academy of Sciences of the United States of America
V. Bryson, H. Vogel (1965)
Evolving Genes and Proteins.Science, 147 3653
Eric Fontanillas, J. Welch, Jessica Thomas, L. Bromham (2007)
The influence of body size and net diversification rate on molecular evolution during the radiation of animal phylaBMC Evolutionary Biology, 7
M. Steiper, Nathan Young (2008)
Timing primate evolution: Lessons from the discordance between molecular and paleontological estimatesEvolutionary Anthropology: Issues, 17
James Gillooly, A. Allen, G. West, James Brown (2005)
The rate of DNA evolution: effects of body size and temperature on the molecular clock.Proceedings of the National Academy of Sciences of the United States of America, 102 1
S. Yokoyama, T. Gojobori (2005)
Molecular evolution and phylogeny of the human AIDS viruses LAV, HTLV-III, and ARVJournal of Molecular Evolution, 24
Effrey, T. L., Horne, irohisa, Ishino (2002)
Divergence Time and Evolutionary Rate Estimation with Multilocus Data
M. Cummings (2004)
PAUP* [Phylogenetic Analysis Using Parsimony (and Other Methods)]Dictionary of Bioinformatics and Computational Biology
Wen-Hsiung Li, M. Tanimura (1987)
The molecular clock runs more slowly in man than in apes and monkeysNature, 326
Wenhao Li, D. Ellsworth, J. Krushkal, B. Chang, D. Hewett‐Emmett (1996)
Rates of nucleotide substitution in primates and rodents and the generation-time effect hypothesis.Molecular phylogenetics and evolution, 5 1
L. Bromham (2002)
Molecular clocks in reptiles: life history influences rate of molecular evolution.Molecular biology and evolution, 19 3
J. Thorne, H. Kishino, I. Painter (1998)
Estimating the rate of evolution of the rate of molecular evolution.Molecular biology and evolution, 15 12
Wen-Hsiung Li, M. Tanimura, P. Sharp (2007)
An evaluation of the molecular clock hypothesis using mammalian DNA sequencesJournal of Molecular Evolution, 25
A. Yoder, Ziheng Yang (2000)
Estimation of primate speciation dates using local molecular clocks.Molecular biology and evolution, 17 7
Richard Smith, W. Jungers (1997)
Body mass in comparative primatology.Journal of human evolution, 32 6
B. Koop, M. Goodman, P. Xu, K. Chan, J. Slightom (1986)
Primate η-globin DNA sequences and man's place among the great apesNature, 319
S. Yi, D. Ellsworth, Wen-Hsiung Li (2002)
Slow molecular clocks in Old World monkeys, apes, and humans.Molecular biology and evolution, 19 12
J. Slowinski, B. Arbogast (1999)
Is the rate of molecular evolution inversely related to body size?Systematic biology, 48 2
J. Masters, M. Boniotto, S. Crovella, C. Roos, L. Pozzi, M. Delpero (2007)
Phylogenetic relationships among the Lorisoidea as indicated by craniodental morphology and mitochondrial sequence dataAmerican Journal of Primatology, 69
C. Soligo (2006)
Correlates of body mass evolution in primates.American journal of physical anthropology, 130 3
L. Bromham (2003)
Molecular Clocks and Explosive RadiationsJournal of Molecular Evolution, 57
David Soria-Hernanz, Omar Fiz-Palacios, J. Braverman, M. Hamilton (2008)
Reconsidering the generation time hypothesis based on nuclear ribosomal ITS sequence comparisons in annual and perennial angiospermsBMC Evolutionary Biology, 8
L. Bromham, A. Rambaut, P. Harvey (1996)
Determinants of rate variation in mammalian DNA sequence evolutionJournal of Molecular Evolution, 43
Ziheng Yang (2006)
Computational Molecular Evolution
Navin Elango, James Thomas, S. Yi (2006)
Variable molecular clocks in hominoidsProceedings of the National Academy of Sciences of the United States of America, 103
S. Hedges, Sudhir Kumar (2009)
The timetree of life
Ziheng Yang (1997)
PAML: a program package for phylogenetic analysis by maximum likelihoodComputer applications in the biosciences : CABIOS, 13 5
L. Shimmin, B. Chang, Wen-Hsiung Li (1993)
Male-driven evolution of DNA sequencesNature, 362
K. Tamura, J. Dudley, M. Nei, Sudhir Kumar (2007)
MEGA4: Molecular Evolutionary Genetics Analysis (MEGA) software version 4.0.Molecular biology and evolution, 24 8
J. Welch, O. Bininda‐Emonds, L. Bromham (2008)
Correlates of substitution rate variation in mammalian protein-coding sequencesBMC Evolutionary Biology, 8
C. Laird, B. Mcconaughy, B. Mccarthy (1969)
Rate of Fixation of Nucleotide Substitutions in EvolutionNature, 224
Seong-Ho Kim, Navin Elango, C. Warden, Eric Vigoda, S. Yi (2006)
Heterogeneous Genomic Molecular Clocks in PrimatesPLoS Genetics, 2
A. Drummond, S. Ho, M. Phillips, A. Rambaut (2006)
Relaxed Phylogenetics and Dating with ConfidencePLoS Biology, 4
A. Rambaut, L. Bromham (1998)
Estimating divergence dates from molecular sequences.Molecular biology and evolution, 15 4
M. Sanderson (2002)
Estimating absolute rates of molecular evolution and divergence times: a penalized likelihood approach.Molecular biology and evolution, 19 1
W. Bailey, D. Fitch, D. Tagle, J. Czelusniak, J. Slightom, M. Goodman (1991)
Molecular evolution of the psi eta-globin gene locus: gibbon phylogeny and the hominoid slowdown.Molecular biology and evolution, 8 2
D. Posada, K. Crandall (1998)
MODELTEST: testing the model of DNA substitutionBioinformatics, 14 9
R. Lanfear, Jessica Thomas, J. Welch, T. Brey, L. Bromham (2007)
Metabolic rate does not calibrate the molecular clockProceedings of the National Academy of Sciences, 104
A. Mooers, P. Harvey (1994)
Metabolic rate, generation time, and the rate of molecular evolution in birds.Molecular phylogenetics and evolution, 3 4
Jessica Thomas, J. Welch, M. Woolfit, L. Bromham (2006)
There is no universal molecular clock for invertebrates, but rate variation does not scale with body size.Proceedings of the National Academy of Sciences of the United States of America, 103 19
M. Goodman (1961)
The role of immunochemical differences in the phyletic development of human behavior.Human biology, 33
J. Thompson, D. Higgins, T. Gibson (1994)
CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice.Nucleic acids research, 22 22
J. Felsenstein (2005)
Evolutionary trees from DNA sequences: A maximum likelihood approachJournal of Molecular Evolution, 17
L. Bromham, R. Leys (2005)
Sociality and the rate of molecular evolution.Molecular biology and evolution, 22 6
D. Swofford, D. Swofford, D. Swofford (2002)
PAUP*: Phylogenetic analysis using parsimony (*and other methods), Version 4.0b10
X. Gu, Wen-Hsiung Li (1992)
Higher rates of amino acid substitution in rodents than in humans.Molecular phylogenetics and evolution, 1 3
B. Nabholz, J. Mauffrey, Eric Bazin, N. Galtier, S. Glémin (2008)
Determination of Mitochondrial Genetic Diversity in MammalsGenetics, 178
J. Horvath, D. Weisrock, Stephanie Embry, Isabella Fiorentino, J. Balhoff, P. Kappeler, G. Wray, H. Willard, A. Yoder (2008)
Development and application of a phylogenomic toolkit: resolving the evolutionary history of Madagascar's lemurs.Genome research, 18 3
B. Nabholz, S. Glémin, N. Galtier (2007)
Strong variations of mitochondrial mutation rate across mammals--the longevity hypothesis.Molecular biology and evolution, 25 1
C. Wu, W. Li (1985)
Evidence for higher rates of nucleotide substitution in rodents than in man.Proceedings of the National Academy of Sciences of the United States of America, 82 6
(2001)
in Management of Lorises in Captivity
P. Kappeler, Michael Pereira (2003)
Primate life histories and socioecology
Andrew Martin, S. Palumbi (1993)
Body size, metabolic rate, generation time, and the molecular clock.Proceedings of the National Academy of Sciences of the United States of America, 90
M. Steiper, Nathan Young, Tika Sukarna (2004)
Genomic data support the hominoid slowdown and an Early Oligocene estimate for the hominoid-cercopithecoid divergence.Proceedings of the National Academy of Sciences of the United States of America, 101 49
Proceedings of the National Academy of Sciences – Unpaywall
Published: Oct 20, 2009
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.