Results 271 to 280 of about 711,460 (319)

Molecular Evolution of the Ovgp1 Gene in the Subfamily Murinae. [PDF]

open access: yesAnimals (Basel)
Balastegui-Alarcón M   +5 more
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Molecular Evolution of Aphthoviruses

Virus Genes, 1995
Aphthoviruses are an important group of animal pathogens. A combination of genetic and structural studies has revealed one of the main principles governing their evolution: severe limitations to variation imposed by functional and structural constraints, in conjunction with high mutation and recombination rates operating during genome replication ...
Domingo, Esteban   +7 more
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The Molecular Evolution of Trypanosomes

Parasitology Today, 1999
The absence of a fossil record has meant that the evolution of protozoa has remained largely a matter for speculation. Recent advances in molecular biology and phylogenetic analysis, however, are allowing the 'history written in the genes' to be interpreted. Here, Jamie Stevens and Wendy Gibson review progress in reconstruction of trypanosome phylogeny
Stevens, JR, Gibson, WC
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Molecular Evolution of Adenoviruses

2003
New advances in the field of genetic characterization of adenoviruses originating from different animal species are summarized. Variations seen in the host range and specificity, pathogenicity, genomic arrangement or gene complement are much wider than expected based on previous studies of human adenoviruses.
M, Benkö, B, Harrach
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On the rate of molecular evolution

Journal of Molecular Evolution, 1971
There are at least two outstanding features that characterize the rate of evolution at the molecular level as compared with that at the phenotypic level. They are; (1) remarkable uniformity for each molecule, and (2) very high overall rate when extrapolated to the whole DNA content.
M, Kimura, T, Ota
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Molecular evolution and optimization

Antonie van Leeuwenhoek, 1997
Microbial populations (and life) not only evolve, they optimize. The transition from a random, unorganized, lifeless Earth to the present situation, where the Earth is virtually covered with nucleic acids and diverse and complex species, required numerous molecular changes and the integration of metabolic pathways over billions of years.
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Molecular Evolution of Catalysis

Journal of Theoretical Biology, 2000
In this paper, we consider the evolutionary dynamics of catalytically active species with a distinct genotype-phenotype relationship. Folding landscapes of RNA molecules serve as a paradigm for this relationship with essential neutral properties. The landscape itself is partitioned by phenotypes (realized as RNA secondary structures). To each genotype (
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Disciplining molecular evolution

Trends in Ecology & Evolution, 1998
Molecular Evolution by W-H. Li Sinauer, 1997. £32.95 hbk (xv+487 pages) ISBN 0 87893 463 4.
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