International audienceThe use of nucleotide and amino acid sequences allows improved understanding of the timing of evolutionary events of life on earth. Molecular estimates of divergence times are, however, controversial and are generally much more ancient than suggested by the fossil record. The limited number of genes and species explored and pervasive variations in evolutionary rates are the most likely sources of such discrepancies. Here we compared concatenated amino acid sequences of 129 proteins from 36 eukaryotes to determine the divergence times of several major clades, including animals, fungi, plants, and various protists. Due to significant variations in their evolutionary rates, and to handle the uncertainty of the fossil reco...
Molecular dates consistently place the divergence of major metazoan lineages in the Precambrian, lea...
National audienceTo reconstruct the timing of the diversification of life on Earth, biologists combi...
Accurately dating when the first bilaterally symmetrical animals arose is crucial to our understandi...
The use of nucleotide and amino acid sequences allows improved understanding of the timing of evolut...
International audienceThe use of nucleotide and amino acid sequences allows improved understanding o...
The use of nucleotide and amino acid sequences allows improved understanding of the timing of evolut...
Our understanding of the phylogenetic relationships among eukaryotic lineages has im-proved dramatic...
Although macroscopic plants, animals, and fungi are the most familiar eukaryotes, the bulk of eukary...
SummaryThe timing of divergences among metazoan lineages is integral to understanding the processes ...
The comparison of DNA and protein sequences of extant species might be informative for reconstructin...
The time of origin of the animal phyla is controversial. Abundant fossils from the major animal phyl...
Molecular clocks have the potential to shed light on the timing of early metazoan divergences, but d...
Molecular clocks have the potential to shed light on the timing of early metazoan divergences, but ...
Molecular dates consistently place the divergence of major metazoan lineages in the Precambrian, lea...
National audienceTo reconstruct the timing of the diversification of life on Earth, biologists combi...
Accurately dating when the first bilaterally symmetrical animals arose is crucial to our understandi...
The use of nucleotide and amino acid sequences allows improved understanding of the timing of evolut...
International audienceThe use of nucleotide and amino acid sequences allows improved understanding o...
The use of nucleotide and amino acid sequences allows improved understanding of the timing of evolut...
Our understanding of the phylogenetic relationships among eukaryotic lineages has im-proved dramatic...
Although macroscopic plants, animals, and fungi are the most familiar eukaryotes, the bulk of eukary...
SummaryThe timing of divergences among metazoan lineages is integral to understanding the processes ...
The comparison of DNA and protein sequences of extant species might be informative for reconstructin...
The time of origin of the animal phyla is controversial. Abundant fossils from the major animal phyl...
Molecular clocks have the potential to shed light on the timing of early metazoan divergences, but d...
Molecular clocks have the potential to shed light on the timing of early metazoan divergences, but ...
Molecular dates consistently place the divergence of major metazoan lineages in the Precambrian, lea...
National audienceTo reconstruct the timing of the diversification of life on Earth, biologists combi...
Accurately dating when the first bilaterally symmetrical animals arose is crucial to our understandi...