Which of the following is not a way transposons can benefit the host?
A. Some transposons contain antibiotic resistance genes.
B. Some transposon sequences (Alu) are used as target sites for RNA editing.
C. The antibody diversity mechanism has evolved from ancient cellular invasion by transposons.
D. Movement of transposons can disrupt genes that control the cell cycle, giving the host cell a growth advantage over neighboring cells.
E. If genes captured by transposons are duplicated, one copy may evolve and acquire new functions.
D
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
Which of the following was supported by the Yellowstone National Park experiment that involved wolves?
a. Restoring a keystone species can improve an area’s biodiversity. b. Removing a predatory keystone species improves an area’s biodiversity. c. The captive breeding of keystone species quickly restores biodiversity in an area. d. Predatory keystone species are primarily responsible for an area’s limited biodiversity.
Synchronous hermaphroditism is when an animal changes from one sex to another
Indicate whether the statement is true or false
The ability of alpine pennycress to decontaminate
soil may be transferable to other plants because basically this ability is due to a. the structure of its chloroplasts. b. the structure of its membranes. c. the structure of its central vacuole. d. the structure of its plastids. e. a gene.