Correlated rates of synonymous site evolution across plant genomes

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Correlated rates of synonymous site evolution across plant genomes.

Synonymous substitution rates have been shown to vary among evolutionary lineages of both nuclear and organellar genes across a broad range of taxonomic groups. In animals, rate heterogeneity does not appear to be correlated across nuclear and mitochondrial genes. In this paper, we contrast substitution rates in two plant groups and show that grasses evolve more rapidly than palms at synonymous...

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Base composition is highly variable among and within plant genomes, especially at third codon positions, ranging from GC-poor and homogeneous species to GC-rich and highly heterogeneous ones (particularly Monocots). Consequently, synonymous codon usage is biased in most species, even when base composition is relatively homogeneous. The causes of these variations are still under debate, with thr...

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Towards realistic codon models: among site variability and dependency of synonymous and non-synonymous rates

Codon evolutionary models are widely used to infer the selection forces acting on a protein. The non-synonymous to synonymous rate ratio (denoted by Ka/Ks) is used to infer specific positions that are under purifying or positive selection. Current evolutionary models usually assume that only the non-synonymous rates vary among sites while the synonymous substitution rates are constant. This ass...

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ژورنال

عنوان ژورنال: Molecular Biology and Evolution

سال: 1997

ISSN: 0737-4038,1537-1719

DOI: 10.1093/oxfordjournals.molbev.a025781