Reading Comprehension
Passage Breakdown
For decades scientists thought cholera spread only through infected people and couldn’t explain where the bacteria hid between outbreaks. In the 1970s Rita Colwell used a new glowing-antibody test and found Vibrio cholerae living in coastal waters that standard culture tests missed. She showed the bacteria can go dormant—shrinking and stopping reproduction so they can’t be grown in lab dishes—yet remain alive in seawater. Later changes in water temperature or salinity may wake them up and lead to new outbreaks, explaining how cholera can suddenly reappear along coasts.
Logic Breakdown
Find the lines linking seasonal sea-surface temperature peaks to cholera peaks and the lines describing dormancy/nonculturability; combine them to infer when bacteria would be culturable (and thus detectable by culture).
Passage Stimulus
Passage Redacted
Unlock Full Passage18.Which one of the following is most strongly supported by the passage?
Correct Answer
A
Supported by the passage. Colwell notes that "seasonal peaks in sea-surface temperatures in the Bay of Bengal in south Asia correlate closely with peaks in that region's cholera cases." The passage also reports that V. cholerae "goes into a dormant, sporelike state when environmental conditions do not favor reproduction... It stops reproducing and therefore cannot be cultured." And the passage says, "it is possible that changes in seawater temperature or salinity are what enable them to spread among humans again." Together these statements support the inference that at seasonal temperature peaks the bacteria are more likely to be reactivated (and therefore culturable), so traditional culture methods should detect them more often then.
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