ArticleNature ecology & evolution2025
Adaptive tracking with antagonistic pleiotropy results in seemingly neutral molecular evolution.
Article in Nature ecology & evolution, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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12 citing papers in PubMed.
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- Genetic diversity of Cimex hemipterus and first report of Wolbachia supergroup T in Tehran, Iran: insights from COI and 16 S rRNA analysis.Scientific reports · 2026Article
- An analysis of the genomic architecture of the worldwide Irish Wolfhound dogs.Scientific reports · 2026Article
- Genetic divergence in Capsicum annuum L. under protected conditions based on new DUS descriptors.Scientific reports · 2026Article
- Allele frequency patterns of 78,122,254 SNPs illuminate diverse possible evolutionary trajectories of human populations.Scientific reports · 2026Article
- Spontaneous mutation rate and spectrum are modulated by organismal fitness.Science advances · 2026Article
- Oncogenic HPV types identified in Paleolithic and Chalcolithic human genome sequencing data from Ust'-Ishim and Ötzi.Scientific reports · 2026Article
- Genetic diversity and phylogeography of Chimaera monstrosa (Linnaeus, 1758) in the Mediterranean Sea: insights from COI mitochondrial DNA analysis.Scientific reports · 2026Article
- Rapid urbanization reduces genetic diversity and increases genetic differentiation of a lynx spider Oxyopes sertatus in central Taiwan.Scientific reports · 2026Article
- Repeatability of gene expression evolution in experimental environmental adaptation.Nature communications · 2026Article
- Adaptive tracking with antagonistic pleiotropy results in seemingly neutral molecular evolution.Nature ecology & evolution · 2025Article
- Deep mutational scans clarify the record of evolution.Nature ecology & evolution · 2025Article
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4 authors.
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Abstract
The neutral theory of molecular evolution, positing that most amino acid substitutions in protein evolution are neutral, is supported by vast comparative genomic data. However, here we report that the key premise of the theory-beneficial mutations are extremely scarce-is violated. Deep mutational scanning data from 12,267 amino acid-altering mutations in 24 prokaryotic and eukaryotic genes reveal that > 1% of these mutations are beneficial, predicting that > 99% of amino acid substitutions would be adaptive. This observation demands a new theory that is compatible with both the high beneficial mutation rate and the comparative genomic data considered consistent with the neutral theory. We propose such a theory named adaptive tracking with antagonistic pleiotropy. In this theory, virtually all beneficial mutations observed are environment specific. Frequent environmental changes and mutational antagonistic pleiotropy across environments render most of the beneficial mutations seen at one time deleterious soon after and hence rarely fixed. Consequently, despite the occurrence of adaptive tracking-continuous adaptation to a changing environment fuelled by beneficial mutations-neutral substitutions prevail. We show that this theory is supported by population genetics simulation, empirical observations and experimental evolution and has implications for the adaptedness of natural populations and the tempo and mode of evolution.
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