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Lytic cycle

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Honors Biology

Definition

The lytic cycle is a viral replication process where a virus infects a host cell, takes over its machinery, and ultimately causes the host cell to burst, releasing new virus particles. This cycle leads to the rapid production of viruses and results in cell death, which can have significant implications for the health of the host organism and the spread of the virus.

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5 Must Know Facts For Your Next Test

  1. The lytic cycle consists of several key stages: attachment, penetration, biosynthesis, assembly, and release.
  2. During attachment, the virus binds to specific receptors on the surface of the host cell, which is crucial for successful infection.
  3. Once inside, the virus hijacks the host's cellular machinery to produce viral components and replicate its genetic material.
  4. The assembly phase involves packaging the newly created viral components into complete virions before they are released.
  5. The release stage results in cell lysis (bursting), allowing newly formed viruses to escape and infect adjacent cells.

Review Questions

  • What are the main stages of the lytic cycle and how do they contribute to viral replication?
    • The main stages of the lytic cycle include attachment, penetration, biosynthesis, assembly, and release. During attachment, the virus binds to host cell receptors. In penetration, the viral genetic material enters the host cell. Biosynthesis involves using the host's machinery to create viral components. Assembly packages these components into new virions. Finally, during release, the host cell bursts, allowing new viruses to infect other cells. Each stage is essential for efficient viral replication and spread.
  • Compare and contrast the lytic cycle with the lysogenic cycle in terms of their effects on the host cell.
    • The lytic cycle leads to immediate destruction of the host cell through lysis, releasing new viruses and causing rapid infection. In contrast, the lysogenic cycle allows the virus to integrate its DNA into the host's genome without causing immediate harm. This means that in the lysogenic cycle, the host cell can continue to replicate normally while carrying the viral DNA until it eventually enters the lytic cycle. The primary difference lies in their immediate impact on the host: one results in death while the other allows for coexistence.
  • Evaluate how understanding the lytic cycle can inform strategies for developing antiviral therapies.
    • Understanding the lytic cycle is crucial for developing antiviral therapies because it reveals how viruses replicate and spread within a host. By targeting specific stages of this cycle—such as inhibiting attachment or preventing viral assembly—therapies can effectively reduce viral loads and limit infection. Moreover, insights into how viruses induce cell lysis can lead to innovative approaches to protect healthy cells and bolster immune responses against infections. This knowledge ultimately supports more effective treatment strategies and helps in preventing outbreaks.

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