Exam 24: Speciation
Exam 1: Biology and the Tree of Life37 Questions
Exam 2: Water and Carbon: the Chemical Basis of Life59 Questions
Exam 3: Protein Structure and Function59 Questions
Exam 4: Nucleic Acids and the Rna World43 Questions
Exam 5: An Introduction to Carbohydrates44 Questions
Exam 53: Ecosystems and Global Ecology57 Questions
Exam 6: Lipids, Membranes, and the First Cells59 Questions
Exam 7: Inside the Cell60 Questions
Exam 8: Energy and Enzymes: an Introduction to Metabolism60 Questions
Exam 9: Cellular Respiration and Fermentation61 Questions
Exam 10: Photosynthesis58 Questions
Exam 11: Cellcell Interactions52 Questions
Exam 12: The Cell Cycle59 Questions
Exam 13: Meiosis63 Questions
Exam 14: Mendel and the Gene60 Questions
Exam 15: Dna and the Gene: Synthesis and Repair51 Questions
Exam 16: How Genes Work48 Questions
Exam 17: Transcription, Rna Processing, and Translation58 Questions
Exam 18: Control of Gene Expression in Bacteria29 Questions
Exam 19: Control of Gene Expression in Eukaryotes56 Questions
Exam 20: The Molecular Revolution: Biotechnology and Beyond70 Questions
Exam 21: Genes, Development, and Evolution38 Questions
Exam 22: Evolution by Natural Selection38 Questions
Exam 23: Evolutionary Processes37 Questions
Exam 24: Speciation56 Questions
Exam 25: Phylogenies and the History of Life63 Questions
Exam 26: Bacteria and Archaea38 Questions
Exam 27: Protists37 Questions
Exam 28: Green Algae and Land Plants59 Questions
Exam 29: Fungi47 Questions
Exam 30: An Introduction to Animals48 Questions
Exam 31: Protostome Animals54 Questions
Exam 32: Deuterostome Animals60 Questions
Exam 33: Viruses44 Questions
Exam 34: Plant Form and Function46 Questions
Exam 35: Water and Sugar Transport in Plants47 Questions
Exam 36: Plant Nutrition54 Questions
Exam 37: Plant Sensory Systems, Signals, and Responses48 Questions
Exam 38: Plant Reproduction and Development51 Questions
Exam 39: Animal Form and Function53 Questions
Exam 40: Water and Electrolyte Balance in Animals60 Questions
Exam 41: Animal Nutrition94 Questions
Exam 42: Gas Exchange and Circulation93 Questions
Exam 43: Animal Nervous Systems100 Questions
Exam 44: Animal Sensory Systems50 Questions
Exam 45: Animal Movement40 Questions
Exam 46: Chemical Signals in Animals59 Questions
Exam 47: Animal Reproduction and Development104 Questions
Exam 48: The Immune System in Animals77 Questions
Exam 49: An Introduction to Ecology40 Questions
Exam 50: Behavioral Ecology40 Questions
Exam 51: Population Ecology57 Questions
Exam 52: Community Ecology55 Questions
Exam 54: Biodiversity and Conservation Biology43 Questions
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Plant species A has a diploid number of 12. Plant species B has a diploid number of 16. A new species, C, arises as an allopolyploid from A and B. The diploid number for species C would probably be ________.
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(Multiple Choice)
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Correct Answer:
D
Use the following information to answer the question below.
About 3 million years ago, the Isthmus of Panama (a narrow strip of land connecting North and South America) formed, dividing marine organisms into Pacific and Caribbean populations. Researchers have examined species of snapping shrimp on both sides of the isthmus. Based on the morphological species concept, there appeared to be seven pairs of species, with one species of each pair in the Pacific and the other in the Caribbean. The different species pairs live at somewhat different depths in the ocean. Using mitochondrial DNA sequences, the researchers estimated phylogenies and found that each of these species pairs, separated by the isthmus were indeed each other's closest relatives. The researchers investigated mating in the lab and found that many species pairs were not very interested in courting with each other, and any that did mate almost never produced fertile offspring. (N. Knowlton, L. A. Weigt, L. A. Solorzano, D. K. Mills, and E. Bermingham. 1993. Divergence in proteins, mitochondrial DNA, and reproductive incompatibility across the Isthmus of Panama. Science 260:1629-32.)
Refer to the paragraph about the formation of the Isthmus of Panama. The sister populations on opposite sides of the isthmus are true species under which species concept?
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(Multiple Choice)
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Correct Answer:
E
Which of the following could be a vicariance event?
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(Multiple Choice)
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Correct Answer:
A
Use the following information to answer the question(s) below.
Two populations of birds with somewhat different coloration live on opposite sides of a peninsula. The habitat between the populations is not suitable for these birds. When birds from the two populations are brought together, they produce young whose appearance is intermediate between the two parents. These offspring will breed with each other or with birds from either parent population, and all offspring of these pairings appear intermediate to various degrees.
-What keeps the two populations separate?
(Multiple Choice)
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The largest unit within which gene flow can readily occur is ________.
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Three populations of crickets look very similar, but the males have courtship songs that sound different. What function would this difference in song likely serve if the populations came in contact?
(Multiple Choice)
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Two species of tree frogs that live sympatrically in the northeastern United States differ in ploidy: Hyla chrysoscelis is diploid, and Hyla versicolor is tetraploid. The frogs are identical in appearance, but their mating calls, which females use to find mates, differ. Which likely evolved first?
(Multiple Choice)
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The peppered moth provides a well-known example of natural selection. The light-colored form of the moth was predominant in England before the Industrial Revolution. In the mid-nineteenth century, a dark-colored form appeared. The difference is produced by a dominant allele of one gene. The dark- and light-colored forms readily interbreed with each other. By about 1900, approximately 90 percent of the moths around industrial areas were dark colored, whereas light-colored moths were still abundant elsewhere. Apparently, birds could readily find the light moths against the soot-darkened background in industrial areas and, therefore, were eating more light moths. Recently, use of cleaner fuels has greatly reduced soot in the landscape, and the dark-colored moths have been disappearing. Should the two forms of moths be considered separate species?
(Multiple Choice)
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Which of the following statements about species, as defined by the biological species concept, is (are) correct?
I. Biological species are defined by reproductive isolation.
II. Biological species are the model used for grouping extinct forms of life.
III. All members of a species can potentially interbreed.
(Multiple Choice)
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What does the biological species concept use as the primary criterion for determining species boundaries?
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How are two different species most likely to evolve from one ancestral species?
(Multiple Choice)
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Rocky Mountain juniper (Juniperus scopulorum) and one-seeded juniper (J. monosperma) have overlapping ranges. Pollen grains (which contain sperm nuclei) from one species are unable to germinate and make pollen tubes to bring the sperm nuclei to the female ovules (which contain egg cells) of the other species. These two juniper species are kept separate by ________.
(Multiple Choice)
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In a hypothetical situation, a certain species of flea feeds only on pronghorn antelopes. In the western United States, pronghorns and cattle often associate with one another in the same open rangeland. Some of these fleas develop a strong preference for cattle blood and mate only with other fleas that prefer cattle blood. The host mammal can be considered as the fleas' habitat. If this situation persists, and new species evolve, this would be an example of ________.
(Multiple Choice)
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Two researchers experimentally formed tetraploid frogs by fertilizing diploid eggs from Rana porosa brevipoda with diploid sperm from Rana nigromaculata. When they mated these tetraploid frogs with each other, most of the offspring that survived to maturity were tetraploid, with chromosome sets of both diploid parent species. Based on these results, if this type of tetraploid formed in the wild, what would be the result? (Y. Kondo and A. Kashiwagi. 2004. Experimentally induced autotetraploidy and allotetraploidy in two Japanese pond frogs. Journal of Herpetology 38(3):381-92.)
(Multiple Choice)
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Use the following description to answer the question(s) below.
On the volcanic, equatorial West African island of Sao Tomé, two species of fruit fly exist. Drosophila yakuba inhabits the island's lowlands, and is also found on the African mainland, located about 200 miles away. The very closely related species Drosophila santomea is found at higher elevations and only on Sao Tomé. The two species can hybridize, though male hybrids are sterile. A hybrid zone exists at middle elevations, where hybrids are greatly outnumbered by D. santomea. Studies of the two species' nuclear genomes reveal that D. yakuba on the island is more closely related to mainland D. yakuba than to D. santomea (2n = 4 in both species). Sao Tomé rose from the Atlantic Ocean about 14 million years ago.
-Which of the following reduces gene flow between the gene pools of the two species on Sao Tomé, despite the existence of hybrids?
(Multiple Choice)
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There is an island in the middle of a large river that houses a large population of ants. Damming of the river causes the island to flood and only the highest points of the island are now above water. The ants cannot swim, so are now in multiple isolated populations. Which of the following best describes this event?
(Multiple Choice)
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The common edible frog of Europe is a hybrid between two species, Rana lessonae and Rana ridibunda. The hybrids were first described in 1758 and have a wide distribution, from France across central Europe to Russia. Both male and female hybrids exist, but when the hybrids mate with other hybrids or with adults of either species, they are rarely successful in producing offspring. What can you infer from this information?
(Multiple Choice)
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In hybrid zones where reinforcement is occurring, you should see a decline in ________.
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Which of these habitats is likely to harbor the most recently diverged species?
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