Sperm motilitySperm motility describes the ability of sperm to move properly through the female reproductive tract (internal fertilization) or through water (external fertilization) to reach the egg. Sperm motility can also be thought of as the quality, which is a factor in successful conception; sperm that do not "swim" properly will not reach the egg in order to fertilize it. Sperm motility in mammals also facilitates the passage of the sperm through the cumulus oophorus (a layer of cells) and the zona pellucida (a layer of extracellular matrix), which surround the mammalian oocyte.
Fertility testingFertility testing is the process by which fertility is assessed, both generally and also to find the "fertile window" in the menstrual cycle. General health affects fertility, and STI testing is an important related field. Healthy women are fertile from puberty until menopause, although fertility is typically much reduced towards the extremes of this period. The onset of puberty is typically identified by menarche and the presence of secondary sexual characteristics such as breast development, the appearance of pubic hair and changes to body fat distribution.
Clinical metagenomic sequencingClinical metagenomic next-generation sequencing (mNGS) is the comprehensive analysis of microbial and host genetic material (DNA or RNA) in clinical samples from patients by next-generation sequencing. It uses the techniques of metagenomics to identify and characterize the genome of bacteria, fungi, parasites, and viruses without the need for a prior knowledge of a specific pathogen directly from clinical specimens.
Fertility and intelligenceThe relationship between fertility and intelligence has been investigated in many demographic studies. There is evidence that, on a population level, measures of intelligence such as educational attainment and literacy are negatively correlated with fertility rate in some contexts. However, genetic studies have shown no evidence for dysgenic effects in human populations. Theories about dysgenic and eugenic effects in human populations have historically been associated with scientific racism.
ZygosityZygosity (the noun, zygote, is from the Greek "yoked," from "yoke") (zaɪˈɡɒsɪti) is the degree to which both copies of a chromosome or gene have the same genetic sequence. In other words, it is the degree of similarity of the alleles in an organism. Most eukaryotes have two matching sets of chromosomes; that is, they are diploid. Diploid organisms have the same loci on each of their two sets of homologous chromosomes except that the sequences at these loci may differ between the two chromosomes in a matching pair and that a few chromosomes may be mismatched as part of a chromosomal sex-determination system.
FertilitéPour le sens commun, la fertilité désigne à la fin du la capacité des personnes, des animaux ou des plantes à produire une descendance viable et abondante. Le terme était généralement appliqué aux femmes, ou aux femelles des animaux, mais s'appliquent de plus en plus aux sujets mâles, au fur et à mesure des progrès dans la vision des mécanismes de la reproduction et de la meilleure connaissance du rôle de l'homme ou du mâle. Un couple dit fertile est un couple qui a commencé une grossesse après moins d'un an de rapports sexuels non protégés pendant la période fertile.
Income and fertilityIncome and fertility is the association between monetary gain on one hand, and the tendency to produce offspring on the other. There is generally an inverse correlation between income and the total fertility rate within and between nations. The higher the degree of education and GDP per capita of a human population, subpopulation or social stratum, the fewer children are born in any developed country. In a 1974 United Nations population conference in Bucharest, Karan Singh, a former minister of population in India, illustrated this trend by stating "Development is the best contraceptive.
Exome sequencingExome sequencing, also known as whole exome sequencing (WES), is a genomic technique for sequencing all of the protein-coding regions of genes in a genome (known as the exome). It consists of two steps: the first step is to select only the subset of DNA that encodes proteins. These regions are known as exons—humans have about 180,000 exons, constituting about 1% of the human genome, or approximately 30 million base pairs. The second step is to sequence the exonic DNA using any high-throughput DNA sequencing technology.
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.
Expression génétiqueL'expression des gènes, encore appelée expression génique ou expression génétique, désigne l'ensemble des processus biochimiques par lesquels l'information héréditaire stockée dans un gène est lue pour aboutir à la fabrication de molécules qui auront un rôle actif dans le fonctionnement cellulaire, comme les protéines ou les ARN. Même si toutes les cellules d'un organisme partagent le même génome, certains gènes ne sont exprimés que dans certaines cellules, à certaines périodes de la vie de l'organisme ou sous certaines conditions.