Biology, Pages 334-346Neil Campbell and Jane Reece's BIOLOGY remains unsurpassed as the most successful majors biology textbook in the world. This text has invited more than 4 million students into the study of this dynamic and essential discipline. |
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Page 12
... acid that makes up its genome . In either case , the genome is usually organized as a single linear or circular molecule of nucleic acid . The smallest viruses have only four genes , while the largest have several hundred . Capsids and ...
... acid that makes up its genome . In either case , the genome is usually organized as a single linear or circular molecule of nucleic acid . The smallest viruses have only four genes , while the largest have several hundred . Capsids and ...
Page 19
... viral genome can commandeer its host , reprogramming the cell to copy the viral nucleic acid and manufacture viral proteins . The host provides the nucleotides for making viral nucleic acids , as well as enzymes , ribosomes , tRNAs 19.
... viral genome can commandeer its host , reprogramming the cell to copy the viral nucleic acid and manufacture viral proteins . The host provides the nucleotides for making viral nucleic acids , as well as enzymes , ribosomes , tRNAs 19.
Page 20
Neil A. Campbell, Jane B. Reece. acids , as well as enzymes , ribosomes , tRNAs , amino acids , ATP , and other components needed for making the viral proteins dictated by viral genes . Most DNA viruses use the DNA polymerases of the ...
Neil A. Campbell, Jane B. Reece. acids , as well as enzymes , ribosomes , tRNAs , amino acids , ATP , and other components needed for making the viral proteins dictated by viral genes . Most DNA viruses use the DNA polymerases of the ...
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animal viruses bacterial cell bacterial chromosome bacteriophage bacterium bind to specific capsid cause disease cellular enzymes circular coli cell Cycles of Phages DNA molecule double-stranded emerging viruses enter the host enveloped viruses eukaryotes existing viruses Figure genetic recombination glycoproteins herpesvirus host cell host range host species human disease immune system kill the host lysogenic cycle lytic cycle mechanisms membranous envelope microbes model systems mosaic virus TMV mRNA mutation natural selection favors nucleic acid obligate intracellular parasites particles phage DNA plant to plant plant viruses plasmids plasmodesmata polymerase prions prokaryotic prophage genes protein coat provirus restriction enzymes retrovirus reverse transcriptase RNA viruses Scientists simplest spread stranded RNA symptoms syndrome synthesis temperate phage template tobacco mosaic virus transcribed transposons type of virus vaccines vertical transmission viral diseases viral DNA viral envelope viral genome viral infection viral nucleic acid viral proteins viral reproductive cycle viroids virulent phage viruses and bacteria viruses cause