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  2. Lytic cycle - Wikipedia

    en.wikipedia.org/wiki/Lytic_cycle

    The lytic cycle (/ ˈ l ɪ t ɪ k / LIT-ik) is one of the two cycles of viral reproduction (referring to bacterial viruses or bacteriophages), the other being the lysogenic cycle. The lytic cycle results in the destruction of the infected cell and its membrane. Bacteriophages that can only go through the lytic cycle are called virulent phages ...

  3. Bacteriophage - Wikipedia

    en.wikipedia.org/wiki/Bacteriophage

    At this point they initiate the reproductive cycle, resulting in lysis of the host cell. As the lysogenic cycle allows the host cell to continue to survive and reproduce, the virus is replicated in all offspring of the cell. An example of a bacteriophage known to follow the lysogenic cycle and the lytic cycle is the phage lambda of E. coli. [53]

  4. Escherichia virus T5 - Wikipedia

    en.wikipedia.org/wiki/Escherichia_virus_T5

    Escherichia virus T5, sometimes called Bacteriophage T5 is a caudal virus within the family Demerecviridae. This bacteriophage specifically infects E. coli bacterial cells and follows a lytic life cycle .

  5. Prophage - Wikipedia

    en.wikipedia.org/wiki/Prophage

    A prophage is a bacteriophage (often shortened to "phage") genome that is integrated into the circular bacterial chromosome or exists as an extrachromosomal plasmid within the bacterial cell. [1] Integration of prophages into the bacterial host is the characteristic step of the lysogenic cycle of temperate phages.

  6. Phage typing - Wikipedia

    en.wikipedia.org/wiki/Phage_typing

    Virulent phages enter the lytic cycle where they replicate and lyse the bacterial cell. [7] Virulent phages can differentiate between different species of bacteria based on their specific lytic action. [8] Lysis will only occur if the virulent phage adsorbs to the bacterial surface, configuring species specificity to phages. [5] Temperate ...

  7. Lambda phage - Wikipedia

    en.wikipedia.org/wiki/Lambda_phage

    The life cycle of lambda phages is controlled by cI and Cro proteins. The lambda phage will remain in the lysogenic state if cI proteins predominate, but will be transformed into the lytic cycle if cro proteins predominate. The cI dimer may bind to any of three operators, O R 1, O R 2, and O R 3, in the order O R 1 > O R 2 > O R 3.

  8. Temperateness (virology) - Wikipedia

    en.wikipedia.org/wiki/Temperateness_(virology)

    Temperate phages can switch between a lytic and lysogenic life cycle. Lytic is more drastic, killing the host whereas lysogenic impacts host cells genetically or physiologically. [4] [5] [6] Here is a chart on temperate phages that are lytic and lysogenic and how they're related. Lysogeny is characterized by the integration of the phage genome ...

  9. P1 phage - Wikipedia

    en.wikipedia.org/wiki/P1_phage

    P1 is a temperate bacteriophage that infects Escherichia coli and some other bacteria. When undergoing a lysogenic cycle the phage genome exists as a plasmid in the bacterium [1] unlike other phages (e.g. the lambda phage) that integrate into the host DNA.