Reference genomeA reference genome (also known as a reference assembly) is a digital nucleic acid sequence database, assembled by scientists as a representative example of the set of genes in one idealized individual organism of a species. As they are assembled from the sequencing of DNA from a number of individual donors, reference genomes do not accurately represent the set of genes of any single individual organism. Instead a reference provides a haploid mosaic of different DNA sequences from each donor.
Whole genome sequencingWhole genome sequencing (WGS), also known as full genome sequencing, complete genome sequencing, or entire genome sequencing, is the process of determining the entirety, or nearly the entirety, of the DNA sequence of an organism's genome at a single time. This entails sequencing all of an organism's chromosomal DNA as well as DNA contained in the mitochondria and, for plants, in the chloroplast. Whole genome sequencing has largely been used as a research tool, but was being introduced to clinics in 2014.
Human genomeThe human genome is a complete set of nucleic acid sequences for humans, encoded as DNA within the 23 chromosome pairs in cell nuclei and in a small DNA molecule found within individual mitochondria. These are usually treated separately as the nuclear genome and the mitochondrial genome. Human genomes include both protein-coding DNA sequences and various types of DNA that does not encode proteins. The latter is a diverse category that includes DNA coding for non-translated RNA, such as that for ribosomal RNA, transfer RNA, ribozymes, small nuclear RNAs, and several types of regulatory RNAs.
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.
Projet Génome humainvignette|Le génome humain est constitué de l'ensemble de l'information portée par nos 23 paires de chromosomes. Le (PGH, ou HGP pour l'anglais Human Genome Project) est un programme lancé fin 1988 dont la mission était d'établir le séquençage complet de l'ADN du génome humain. Son achèvement a été annoncé le . Le nouveau projet lancé dans la foulée en , ENCODE (Encyclopedia of DNA Elements), donne des résultats importants sur l'ADN non codant humain.
GénomeLe génome (//), ou plus rarement génôme, est l'ensemble du matériel génétique d'une espèce codé dans son acide désoxyribonucléique (ADN), à l'exception de certains virus dont le génome est constitué d'acide ribonucléique (ARN). Il contient en particulier tous les gènes codant des protéines ou correspondant à des ARN structurés. Il se décompose donc en séquences codantes (transcrites en ARN messagers et traduites en protéines) et non codantes (non transcrites, ou transcrites en ARN, mais non traduites).
PerchloroéthylèneLe perchloroéthylène ou tétrachloroéthylène est un composé chimique de formule Cl2C=CCl2. Ce solvant est parfois appelé « perchloréthylène », ou simplement « perchlo ». Ce composé organique volatil (COV) est surtout utilisé pour le nettoyage à sec de tissus et pour dégraisser des métaux. Il figure sur la liste des cancérogènes du groupe 2A du CIRC et peut causer des troubles neurologiques, rénaux et hépatiques. À température ambiante, ce liquide n'est ni inflammable ni explosif.
Bacterial genomeBacterial genomes are generally smaller and less variant in size among species when compared with genomes of eukaryotes. Bacterial genomes can range in size anywhere from about 130 kbp to over 14 Mbp. A study that included, but was not limited to, 478 bacterial genomes, concluded that as genome size increases, the number of genes increases at a disproportionately slower rate in eukaryotes than in non-eukaryotes. Thus, the proportion of non-coding DNA goes up with genome size more quickly in non-bacteria than in bacteria.
Sulfur-reducing bacteriaSulfur-reducing bacteria are microorganisms able to reduce elemental sulfur (S0) to hydrogen sulfide (H2S). These microbes use inorganic sulfur compounds as electron acceptors to sustain several activities such as respiration, conserving energy and growth, in absence of oxygen. The final product of these processes, sulfide, has a considerable influence on the chemistry of the environment and, in addition, is used as electron donor for a large variety of microbial metabolisms.
Taille du génomevignette|Arbre phylogénétique indiquant la taille des génomes chez les organismes des trois domaines du monde vivant: les bactéries Bacteria (en bleu), les archées Archaea (en vert) et les eucaryotes Eucarya (en rouge). La taille du génome correspond à la quantité d'ADN contenue dans une copie d'un génome. La taille d'un génome est également appelée valeur C.