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  2. Bacteriophage - Wikipedia

    en.wikipedia.org/wiki/Bacteriophage

    With lytic phages such as the T4 phage, bacterial cells are broken open (lysed) and destroyed after immediate replication of the virion. As soon as the cell is destroyed, the phage progeny can find new hosts to infect. [13] Lytic phages are more suitable for phage therapy. Some lytic phages undergo a phenomenon known as lysis inhibition, where ...

  3. Phage therapy - Wikipedia

    en.wikipedia.org/wiki/Phage_therapy

    Bacteriophages are bacterial viruses, evolved to infect bacterial cells. To do that, phages must use characteristic structures at cell surfaces (receptors), and to propagate they need appropriate molecular tools inside the cells. Bacteria are prokaryotes, and their cells differ substantially from eukaryotes, including humans or animals. [114]

  4. Phageome - Wikipedia

    en.wikipedia.org/wiki/Phageome

    A bacteriophage, or phage for short, is a virus that can infect bacteria and archaea, and can replicate inside of them. Phages make up the majority of most viromes and are currently understood as being the most abundant organism. [5] Oftentimes scientists will look only at a phageome instead of a virome while conducting research.

  5. Phage display - Wikipedia

    en.wikipedia.org/wiki/Phage_display

    Phage display cycle. 1) fusion proteins for a viral coat protein + the gene to be evolved (typically an antibody fragment) are expressed in bacteriophage. 2) the library of phage are washed over an immobilised target. 3) the remaining high-affinity binders are used to infect bacteria. 4) the genes encoding the high-affinity binders are isolated.

  6. Filamentous bacteriophage - Wikipedia

    en.wikipedia.org/wiki/Filamentous_bacteriophage

    Phages fd, f1, M13 and other related phages are Ff phages, for F specific (they infect Escherichia coli carrying the F-episome) filamentous phages, using the concept of vernacular name. [45] Filamentous bacteriophage engineered to display immunogenic peptides are useful in immunology and wider biological applications.

  7. T7 phage - Wikipedia

    en.wikipedia.org/wiki/T7_phage

    T7 has a life cycle of 17 min at 37˚C, i.e. the time from infection to the lysis of the host cell when new phages are released. Due to the short latent period, most physiological studies are conducted at 30˚C where infected cells lyse after 30 min. However, high-fitness strains of T7 have been isolated with a latent period of only ~11 min at ...

  8. Lambda phage - Wikipedia

    en.wikipedia.org/wiki/Lambda_phage

    Lambda phage is a non-contractile tailed phage, meaning during an infection event it cannot 'force' its DNA through a bacterial cell membrane. It must instead use an existing pathway to invade the host cell, having evolved the tip of its tail to interact with a specific pore to allow entry of its DNA to the hosts.

  9. Lysogenic cycle - Wikipedia

    en.wikipedia.org/wiki/Lysogenic_cycle

    Phages that replicate only via the lytic cycle are known as virulent phages while phages that replicate using both lytic and lysogenic cycles are known as temperate phages. [1] In the lysogenic cycle, the phage DNA first integrates into the bacterial chromosome to produce the prophage.