Evidence for speciation by reinforcementReinforcement is a process within speciation where natural selection increases the reproductive isolation between two populations of species by reducing the production of hybrids. Evidence for speciation by reinforcement has been gathered since the 1990s, and along with data from comparative studies and laboratory experiments, has overcome many of the objections to the theory. Differences in behavior or biology that inhibit formation of hybrid zygotes are termed prezygotic isolation.
Evolutionary developmental psychologyEvolutionary developmental psychology (EDP) is a research paradigm that applies the basic principles of evolution by natural selection, to understand the development of human behavior and cognition. It involves the study of both the genetic and environmental mechanisms that underlie the development of social and cognitive competencies, as well as the epigenetic (gene-environment interactions) processes that adapt these competencies to local conditions.
Effective population sizeThe effective population size (Ne) is a number that, in some simplified scenarios, corresponds to the number of breeding individuals in the population. More generally, Ne is the number of individuals that an idealised population would need to have in order for some specified quantity of interest (typically change of genetic diversity or inbreeding rates) to be the same as in the real population. Idealised populations are based on unrealistic but convenient simplifications such as random mating, simultaneous birth of each new generation, constant population size, and equal numbers of children per parent.
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.
Genetic architectureGenetic architecture is the underlying genetic basis of a phenotypic trait and its variational properties. Phenotypic variation for quantitative traits is, at the most basic level, the result of the segregation of alleles at quantitative trait loci (QTL). Environmental factors and other external influences can also play a role in phenotypic variation. Genetic architecture is a broad term that can be described for any given individual based on information regarding gene and allele number, the distribution of allelic and mutational effects, and patterns of pleiotropy, dominance, and epistasis.
Psychologie évolutionnisteLa psychologie évolutionniste, évolutive ou évolutionnaire, parfois nommée évopsy ou évo-psy, est un courant de la psychologie cognitive et de la psychosociologie dont l'objectif est d'expliquer les mécanismes de la pensée et les comportements humains à partir de la théorie de l'évolution biologique. Elle est parfois assimilée à la sociobiologie, ou considérée comme un courant qui a pris la succession de la sociobiologie aujourd'hui discréditée.
Démécologiethumb|350px|Groupes familiaux d'éléphants, au sein d'une population régionale thumb|350px|Un groupe de « populations » constitue une métapopulation. Les populations d'animaux, plantes, champignons, microbes... contribuent au fonctionnement des écosystèmes, qui eux-mêmes forment des biomes et la biosphère ou symbiosphère (expression de Joël de Rosnay est le niveau planétaire d'intégration de toutes les échelles du Vivant (du gène à la somme des biomes (sans laquelle l'oxygène et donc la couche d'ozone n'existeraient pas) ; Le gène est représenté à part, car non vivant en tant que tel, mais support d'information et base du vivant.
Idealised populationIn population genetics an idealised population is one that can be described using a number of simplifying assumptions. Models of idealised populations are either used to make a general point, or they are fit to data on real populations for which the assumptions may not hold true. For example, coalescent theory is used to fit data to models of idealised populations. The most common idealized population in population genetics is described in the Wright-Fisher model after Sewall Wright and Ronald Fisher (1922, 1930) and (1931).
Théorie du coalescentvignette|Théorie coalescente En génétique, la théorie du coalescent est un modèle rétrospectif de génétique des populations. Son objectif est de suivre l'évolution de tous les allèles d'un gène donné de tous les individus d'une population, jusqu'à une seule copie ancestrale, appelée ancêtre commun le plus récent. Les relations d'hérédité entre les allèles sont représentées sous la forme d'un arbre similaire à un arbre phylogénétique.
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.