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The phage can attach to the surface of a bacterium using the proteins on its 'feet' (tail fibers), and inject its genetic material (either DNA or RNA). This genetic material uses the host cell's ribosomes to replicate, and synthesize proteins for the capsid and tail of the phage. New phages are
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demonstrated how the DNA of viruses is injected into the bacterial cells, while most of the viral proteins remain outside. The injected DNA molecules cause the bacterial cells to produce more viral DNA and proteins. These discoveries supported that DNA, rather than proteins, is the hereditary
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They were named Type 1 (T1), Type 2 (T2), etc., for easy reference; however, due to structural similarities between the T2, T4, and T6 bacteriophages, these are now commonly referred to as
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The first phages that were studied in detail included seven that commonly infect
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cell into a T2-producing factory that releases phages when the cell ruptures.
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assembled within the cell until the cellular membrane
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59:. Unsourced material may be challenged and removed.
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299:. Its genome consists of linear double-stranded
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365:Virology, Molecular Biology and Pathogenesis
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388:Prescott LM, Harley JP, Klein DA (2008).
119:Learn how and when to remove this message
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25:Electron micrograph of T2 bacteriophage
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68:"Enterobacteria phage T2"
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266:Enterobacteria phage T2
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253:Escherichia virus T4
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51:Please help
46:verification
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473:Wikispecies
344:Lytic cycle
312:Experiments
204:Uroviricota
516:Myoviridae
510:Categories
350:References
323:material.
296:Myoviridae
109:April 2010
79:newspapers
247:Species:
187:Kingdom:
526:T-phages
464:Q2718887
458:Wikidata
328:E. coli.
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415:Biology
308:E. coli
284:E. coli
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340:lyses
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166:Virus
100:JSTOR
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394:ISBN
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301:DNA
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