In molecular cloning, a vector is any particle (e.g., plasmids, cosmids, Lambda phages) used as a vehicle to artificially carry a foreign nucleic sequence – usually DNA – into another cell, where it can be replicated and/or expressed. A vector containing foreign DNA is termed recombinant DNA. The four major types of vectors are plasmids, viral vectors, cosmids, and artificial chromosomes. Of these, the most commonly used vectors are plasmids. Common to all engineered vectors are an origin of replication, a multicloning site, and a selectable marker. The vector itself generally carries a DNA sequence that consists of an insert (in this case the transgene) and a larger sequence that serves as the "backbone" of the vector. The purpose of a vector which transfers genetic information to another cell is typically to isolate, multiply, or express the insert in the target cell. All vectors may be used for cloning and are therefore cloning vectors, but there are also vectors designed specially for cloning, while others may be designed specifically for other purposes, such as transcription and protein expression. Vectors designed specifically for the expression of the transgene in the target cell are called expression vectors, and generally have a promoter sequence that drives expression of the transgene. Simpler vectors called transcription vectors are only capable of being transcribed but not translated: they can be replicated in a target cell but not expressed, unlike expression vectors. Transcription vectors are used to amplify their insert. The manipulation of DNA is normally conducted on E. coli vectors, which contain elements necessary for their maintenance in E. coli. However, vectors may also have elements that allow them to be maintained in another organism such as yeast, plant or mammalian cells, and these vectors are called shuttle vectors. Such vectors have bacterial or viral elements which may be transferred to the non-bacterial host organism, however other vectors termed intragenic vectors have also been developed to avoid the transfer of any genetic material from an alien species.

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Polylinker
vignette|428x428px|Un pUC19 vecteur de clonage montrant le site de clonage multiple de séquence avec l'enzyme de restriction des sites. Un site de clonage multiple (MCS ou SCM), également appelé un polylinker, est un court segment de l'ADN , qui contient de nombreux (jusqu'à ~20) sites de restriction - une caractéristique standard de l'ingénierie des plasmides. Les sites de restriction au sein d'un SCM sont généralement uniques, c'est-à-dire qu'ils ne sont présents qu'une fois à l'intérieur d'un plasmide.
Molecular cloning
Molecular cloning is a set of experimental methods in molecular biology that are used to assemble recombinant DNA molecules and to direct their replication within host organisms. The use of the word cloning refers to the fact that the method involves the replication of one molecule to produce a population of cells with identical DNA molecules. Molecular cloning generally uses DNA sequences from two different organisms: the species that is the source of the DNA to be cloned, and the species that will serve as the living host for replication of the recombinant DNA.
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Les chromosomes artificiels de levure (YAC, en anglais : yeast artificial chromosomes) sont très utilisés dans les techniques de biologie moléculaire et le sont, parfois, en génétique. Ils contiennent au moins une origine de réplication (ou ARS pour autonomously replicating sequence), un centromère et des télomères provenant de la levure Saccharomyces cerevisiae. De plus ils contiennent habituellement des gènes permettant leur sélection dans une population de levures.
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