TY - JOUR
T1 - The molecular taxonomy and evolution of the Guinea pig
AU - Li, W. H.
AU - Hide, W. A.
AU - Zharkikh, A.
AU - Ma, D. P.
AU - Graur, D.
N1 - Funding Information:
From the Center for Demographic and Population Genetics, University of Texas, P.O. Box 20334, Houston, TX 77225 (Li and Zharkikh), the Laboratory of Molecular Systematics, National Museum of Natural History, Smithsonian Institution, Washington, DC. (Hide), the Department of Biochemistry and Molecular Biology, Mississippi State University (Ma), and the Department of Zoology, George S. Wise Faculty of Life Sciences, Tel Aviv University, Ramat Aviv, Israel (Graur). This paper was delivered at a symposium titled "Molecular Genetic Approaches to Phylogeny Reconstruction" sponsored by the American Genetic Association in Tucson, Arizona, April 20-21,1991. We thank Lori Sad-ler for helping us in the data bank search. This study was supported by grants from N1H and the U.S.-lsrael Binational Science Foundation. Address reprint requests to Dr. Li.
PY - 1992
Y1 - 1992
N2 - On the basis of 18 protein sequences totaling 2,413 aligned amino acid sites, it is suggested that the Guinea pigs and the myomorphs (rat-like rodents) are not monophyletic. Rather, the evolutionary lineage leading to the Guinea pig seems to have branched off prior to the divergence among myomorphs, lagomorphs, primates, chiropterans, artiodactyls, and carnivores. It is suggested therefore that the Caviomorpha (guinea pig-like rodents) and possibly the Hystricomorpha (porcupine-like rodents) should be elevated in taxonomic rank and conferred an ordinal status distinct from the Rodentia. This suggestion calls for a reevaluation of the morphological evolution of Guinea pigs and further molecular studies on the possibility of paraphyly of the order Rodentia. If the monophyly of rodents holds, it must be concluded that the pattern of molecular evolution in many Guinea pig genes has been extremely unusual and that the causes for this pattern should be sought. It is also suggested that claims of large differences in the rate of molecular evolution between Guinea pigs and myomorphs may have been exaggerated in many cases as a result of an erroneous phylogenetic position for the Guinea pig. The average rate of amino acid replacement in the Guinea pig seems to be comparable to that in the rat and the mouse. However, the data indicate that myomorph and caviomorph genes evolve, on average, about two times faster than their human counterparts. Finally, our analysis provides evidence against the hypothesis that the gundi (an African rodent) represents the most ancient rodent lineage.
AB - On the basis of 18 protein sequences totaling 2,413 aligned amino acid sites, it is suggested that the Guinea pigs and the myomorphs (rat-like rodents) are not monophyletic. Rather, the evolutionary lineage leading to the Guinea pig seems to have branched off prior to the divergence among myomorphs, lagomorphs, primates, chiropterans, artiodactyls, and carnivores. It is suggested therefore that the Caviomorpha (guinea pig-like rodents) and possibly the Hystricomorpha (porcupine-like rodents) should be elevated in taxonomic rank and conferred an ordinal status distinct from the Rodentia. This suggestion calls for a reevaluation of the morphological evolution of Guinea pigs and further molecular studies on the possibility of paraphyly of the order Rodentia. If the monophyly of rodents holds, it must be concluded that the pattern of molecular evolution in many Guinea pig genes has been extremely unusual and that the causes for this pattern should be sought. It is also suggested that claims of large differences in the rate of molecular evolution between Guinea pigs and myomorphs may have been exaggerated in many cases as a result of an erroneous phylogenetic position for the Guinea pig. The average rate of amino acid replacement in the Guinea pig seems to be comparable to that in the rat and the mouse. However, the data indicate that myomorph and caviomorph genes evolve, on average, about two times faster than their human counterparts. Finally, our analysis provides evidence against the hypothesis that the gundi (an African rodent) represents the most ancient rodent lineage.
UR - https://www.scopus.com/pages/publications/0027103147
U2 - 10.1093/oxfordjournals.jhered.a111188
DO - 10.1093/oxfordjournals.jhered.a111188
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AN - SCOPUS:0027103147
SN - 0022-1503
VL - 83
SP - 174
EP - 181
JO - Journal of Heredity
JF - Journal of Heredity
IS - 3
ER -