Disruptive selectionDisruptive selection, also called diversifying selection, describes changes in population genetics in which extreme values for a trait are favored over intermediate values. In this case, the variance of the trait increases and the population is divided into two distinct groups. In this more individuals acquire peripheral character value at both ends of the distribution curve. Natural selection is known to be one of the most important biological processes behind evolution.
Taux de mutationEn génétique le taux de mutation désigne la quantité de changement de l'information génétique au cours du temps. réplication de l'ADN, le complexe d'enzymes chargé de sa copie, l'ADN polymérase, laisse passer un certain nombre d'erreurs. À une grande échelle de temps, l'information génétique évolue en fonction de ces changements. Notamment, l'information codant l'ADN polymérase elle-même évolue en conséquence, ce qui rend ce taux de mutation variable entre les espèces et sur plusieurs centaines de milliers d'années.
Évolution moléculaireL'évolution moléculaire ou évolution du génome correspond à l'ensemble des modifications d ́un génome au cours de générations successives au sein d'une population. C'est le moteur de l'évolution des espèces. L ́étude de l ́évolution moléculaire des génomes tente d'expliquer les changements biologiques au niveau moléculaire et cellulaire. Ceci met en jeu plusieurs disciplines telles que la biologie moléculaire, la génétique, la génomique et la bio-informatique.
MutationnismeLe Mutationnisme est une théorie de biologie évolutive, qui existait avant les travaux de Charles Darwin, et survit pendant plusieurs décennies comme alternative à sa théorie de l'évolution, dans une phase de l'histoire de la biologie connue sous le nom d'éclipse du darwinisme. Le mutationnisme prévoit que l'évolution n'est pas continue, elle se fait par sauts importants, qui peuvent, en une seule génération, donner naissance à de nouveaux traits ou même à de nouvelles espèces.
Adaptation and Natural SelectionAdaptation and Natural Selection: A Critique of Some Current Evolutionary Thought is a 1966 book by the American evolutionary biologist George C. Williams. Williams, in what is now considered a classic by evolutionary biologists, outlines a gene-centered view of evolution, disputes notions of evolutionary progress, and criticizes contemporary models of group selection, including the theories of Alfred Emerson, A. H. Sturtevant, and to a smaller extent, the work of V. C. Wynne-Edwards.
Population structure (genetics)Population structure (also called genetic structure and population stratification) is the presence of a systematic difference in allele frequencies between subpopulations. In a randomly mating (or panmictic) population, allele frequencies are expected to be roughly similar between groups. However, mating tends to be non-random to some degree, causing structure to arise. For example, a barrier like a river can separate two groups of the same species and make it difficult for potential mates to cross; if a mutation occurs, over many generations it can spread and become common in one subpopulation while being completely absent in the other.
Theistic evolutionTheistic evolution (also known as theistic evolutionism or God-guided evolution) is a view that God acts and creates through laws of nature. It posits that the concept of God is compatible with the findings of modern science, including evolution. Theistic evolution is not in itself a scientific theory, but includes a range of views about how science relates to religious beliefs and the extent to which God intervenes. It rejects the strict creationist doctrines of special creation, but can include beliefs such as creation of the human soul.
Weak selectionWeak selection in evolutionary biology is when individuals with different phenotypes possess similar fitness, i.e. one phenotype is weakly preferred over the other. Weak selection, therefore, is an evolutionary theory to explain the maintenance of multiple phenotypes in a stable population. Weak selection can only be used to explain the maintenance of mutations in a Moran process. A Moran process is one in which birth and death are paired events, and therefore population size remains constant.
Frameshift mutationA frameshift mutation (also called a framing error or a reading frame shift) is a genetic mutation caused by indels (insertions or deletions) of a number of nucleotides in a DNA sequence that is not divisible by three. Due to the triplet nature of gene expression by codons, the insertion or deletion can change the reading frame (the grouping of the codons), resulting in a completely different translation from the original. The earlier in the sequence the deletion or insertion occurs, the more altered the protein.
Critiques des théories de l'évolutionEn tant que théorie scientifique, la théorie darwinienne de l'évolution des espèces par sélection naturelle fait l'objet de diverses critiques. L'idée d'évolution biologique est souvent rejetée car elle s'oppose à une vision spirituelle de l'homme, en le présentant comme le simple résultat du hasard, obéissant uniquement à des lois mécaniques et matérielles, et non le résultat d'un dessein où l'homme pourrait trouver du sens, en particulier par des croyants qui refusent l'idée d'évolution par fidélité à certains textes sacrés comme la Torah, la Bible ou le Coran.
Background selectionBackground selection describes the loss of genetic diversity at a non-deleterious locus due to negative selection against linked deleterious alleles. It is one form of linked selection, where the maintenance or removal of an allele from a population is dependent upon the alleles in its linkage group. The name emphasizes the fact that the genetic background, or genomic environment, of a neutral mutation has a significant impact on whether it will be preserved (genetic hitchhiking) or purged (background selection) from a population.
Mutation non-sensIn genetics, a nonsense mutation is a point mutation in a sequence of DNA that results in a premature stop codon, or a nonsense codon in the transcribed mRNA, and in leading to a truncated, incomplete, and nonfunctional protein product. Nonsense mutation is not always harmful, the functional effect of a nonsense mutation depends on many aspects, such as the location of the stop codon within the coding DNA. For example, the effect of a nonsense mutation depends on the proximity of the nonsense mutation to the original stop codon, and the degree to which functional subdomains of the protein are affected.