13. Which of the following is correct with regards to temperature and genomes? A. The higher the optimal growth temperature of a species, the lower the percentage of GC in its genome B. The higher the optimal growth temperature of a species, the higher the percentage of GC in its genome C. The GC content is independent of the optimal growth temperature D. At higher temperature, shorter genomes are more stable than longer genomes E. At lower temperature, shorter genomes are more stable than longer genomes
Genetic Recombination
Recombination is crucial to this process because it allows genes to be reassorted into diverse combinations. Genetic recombination is the process of combining genetic components from two different origins into a single unit. In prokaryotes, genetic recombination takes place by the unilateral transfer of deoxyribonucleic acid. It includes transduction, transformation, and conjugation. The genetic exchange occurring between homologous deoxyribonucleic acid sequences (DNA) from two different sources is termed general recombination. For this to happen, an identical sequence of the two recombining molecules is required. The process of genetic exchange which occurs in eukaryotes during sexual reproduction such as meiosis is an example of this type of genetic recombination.
Microbial Genetics
Genes are the functional units of heredity. They transfer characteristic information from parents to the offspring.
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