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.
Mutation génétiquethumb|Un exemple de mutation homéotique : une drosophile Antennapedia Une est une modification rare, accidentelle ou provoquée, de l'information génétique (séquence d’ADN ou d’ARN) dans le génome. Selon la partie du génome touchée, les conséquences d'une mutation peuvent varier. Une mutation est dite héréditaire si la séquence génétique mutée est transmise à la génération suivante (voir mutations germinales). Elle est l’un des éléments de la biodiversité et l’un des nombreux facteurs pouvant éventuellement participer dans l'évolution de l'espèce.
Rétinite pigmentaireLes rétinites pigmentaires sont un ensemble de maladies génétiques de l'œil. Le nom de retinitis pigmentosa aurait été proposé en 1855 par le Néerlandais Franz Donders. Cet ensemble est génétiquement hétérogène et implique les photorécepteurs (cônes et bâtonnets) et l'épithélium pigmentaire rétinien. Elles se manifestent d'abord par une perte de la vision nocturne suivie d'un rétrécissement du champ visuel. La perte de la vision centrale est tardive.
Séquençage de l'ADNcadre|Résultat du séquençage par la méthode de Sanger. L'ordre de chaque bande indique la position d'un nucléotide A,T,C ou G Le séquençage de l'ADN consiste à déterminer l'ordre d'enchaînement des nucléotides pour un fragment d’ADN donné. La séquence d’ADN contient l’information nécessaire aux êtres vivants pour survivre et se reproduire. Déterminer cette séquence est donc utile aussi bien pour les recherches visant à savoir comment vivent les organismes que pour des sujets appliqués.
Molecular diagnosticsMolecular diagnostics is a collection of techniques used to analyze biological markers in the genome and proteome, and how their cells express their genes as proteins, applying molecular biology to medical testing. In medicine the technique is used to diagnose and monitor disease, detect risk, and decide which therapies will work best for individual patients, and in agricultural biosecurity similarly to monitor crop- and livestock disease, estimate risk, and decide what quarantine measures must be taken.
Massive parallel sequencingMassive parallel sequencing or massively parallel sequencing is any of several high-throughput approaches to DNA sequencing using the concept of massively parallel processing; it is also called next-generation sequencing (NGS) or second-generation sequencing. Some of these technologies emerged between 1993 and 1998 and have been commercially available since 2005. These technologies use miniaturized and parallelized platforms for sequencing of 1 million to 43 billion short reads (50 to 400 bases each) per instrument run.
Mutation ponctuelle500px|aucun|droite Une mutation ponctuelle est un changement de la structure du gène, affectant un à plusieurs nucléotides (entre un et dix). Il existe quatre types de mutations ponctuelles : mutation par substitution : remplacement d’un (ou plusieurs) nucléotides par un autre (ou plusieurs autres) ; mutation par insertion : ajout d’un ou plusieurs nucléotides ; mutation par délétion : perte d'un ou plusieurs nucléotides.
Third-generation sequencingThird-generation sequencing (also known as long-read sequencing) is a class of DNA sequencing methods currently under active development. Third generation sequencing technologies have the capability to produce substantially longer reads than second generation sequencing, also known as next-generation sequencing. Such an advantage has critical implications for both genome science and the study of biology in general. However, third generation sequencing data have much higher error rates than previous technologies, which can complicate downstream genome assembly and analysis of the resulting data.
Sanger sequencingSanger sequencing is a method of DNA sequencing that involves electrophoresis and is based on the random incorporation of chain-terminating dideoxynucleotides by DNA polymerase during in vitro DNA replication. After first being developed by Frederick Sanger and colleagues in 1977, it became the most widely used sequencing method for approximately 40 years. It was first commercialized by Applied Biosystems in 1986. More recently, higher volume Sanger sequencing has been replaced by next generation sequencing methods, especially for large-scale, automated genome analyses.
Cone dystrophyA cone dystrophy is an inherited ocular disorder characterized by the loss of cone cells, the photoreceptors responsible for both central and color vision. The most common symptoms of cone dystrophy are vision loss (age of onset ranging from the late teens to the sixties), sensitivity to bright lights, and poor color vision. Therefore, patients see better at dusk. Visual acuity usually deteriorates gradually, but it can deteriorate rapidly to 20/200; later, in more severe cases, it drops to "counting fingers" vision.