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Question
the model shows the bird flu and human influenza infecting an intermediate host to produce a new influenza strain. what process is involved in producing an influenza strain with a new phenotype? a related viruses can recombine in a common host to express proteins with greater virulence. b influenza viruses incorporate host cell dna into their capsid to express host cell proteins. c viruses that infect intermediate hosts have higher rates of mutations, which produces new phenotypes. d the new viral strain incorporated rna molecules from the bird flu and proteins from the human influenza virus to create new dna molecules.
To determine the correct answer, we analyze each option:
- Option A: When related viruses (bird flu and human influenza) infect a common intermediate host, they can recombine their genetic material. This recombination can lead to the expression of new proteins (and thus a new phenotype) with potentially greater virulence, which matches the model of producing a new influenza strain.
- Option B: Influenza viruses are RNA viruses and do not incorporate host cell DNA into their capsid to express host cell proteins. Their replication involves RNA - related processes, so this option is incorrect.
- Option C: The model shows a recombination event between two different viruses, not a higher mutation rate in viruses infecting intermediate hosts. So this option does not explain the production of the new strain in the given model.
- Option D: Influenza viruses are RNA - based, and the process of creating a new strain here is recombination of viral RNA, not incorporating RNA from one virus and proteins from another to create new DNA molecules (influenza is an RNA virus, not a DNA - creating one in this context).
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A. Related viruses can recombine in a common host to express proteins with greater virulence.