Reading Comprehension

PT154 · S3 · P3 · Q18 Microbiologist Rita Colwell

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For nearly a century after the discovery in the 1880s that a bacterium, Vibrio cholerae, causes cholera, scientists believed that it traveled to new geographic regions only via human hosts and that epidemics typically occurred when the bacteria spread through contamination, by human waste, of food and unchlorinated water supplies.

Topic

The discovery that the cholera-causing bacterium, Vibrio cholerae, can survive in water environments—often in a dormant state—rather than exclusively needing a human host.

Framework

Old / New

Main Point

For many years, scientists thought cholera outbreaks required an active human carrier, but Rita Colwell's research revealed that Vibrio cholerae can survive in seawater in a dormant, nonculturable state, explaining how the disease seems to arise "spontaneously" even after eradication. The Most Valuable Sentence appears at the start of P3:

P1: Traditional View and the Mystery

Scientists originally thought Vibrio cholerae only spread through humans and contaminated water or food, but this left them puzzled about how cholera could resurface years after seemingly disappearing.

P2: Colwell Challenges the Old View

In the 1970s, Rita Colwell discovered Vibrio cholerae in seawater far from disease outbreaks, which shocked the scientific community. She developed a new detection technique (using fluorescence with antibodies) that found the bacteria in local waters and in many more samples than older methods—supporting her hypothesis that cholera bacteria could persist in the environment, undetected.

P3: The "Dormant State" Explanation

Colwell’s later work showed that the bacteria can enter a dormant, nonculturable state to survive until conditions improve. This allows Vibrio cholerae to persist in the environment, potentially reactivating with environmental changes like warmer sea temperatures, hence explaining spontaneous outbreaks.

18.

Which one of the following is most strongly supported by the passage?

  1. Correct

    V. cholerae bacteria in the

    Why this is right

    This definitely demands pulling a few strands together. Traditional methods of culture only tend spot V.c. when it's actively reproducing and spreading among human hosts. When the bacterium is deprived of human hosts, it shrinks like crazy and goes into a low-energy sporelike state where it's not reproducing so won't multiply in a traditional petri dish culture. In the last couple sentences we're told that there's a correlation between peak sea-surface temperatures in Bay of Bengal and peak cases of cholera in the area. Peak cases of cholera = V.c. is finding human hosts, multiplying, and spreading. In that active state, it's likely to show up in traditional culture methods.

    Skill tested: Inference · how this choice captures the passage's function is the move to repeat next time.

    56% picked this

  2. When the salinity of seawater

    Unsupported Relationship

    The last sentence of the passage makes it seem like salinity of seawater could be connected to awakening V.c. and causing it to start spreading among humans again. But we have no indication whether higher vs. lower salinity would trigger the wake-up call. People with outside knowledge of how seawater temperature is connected to salinity might be trying to fill in their own blanks here, but the test wouldn't expect us to know that connection as a common sense fact.

    11% picked this

  3. Although V. cholerae can persist

    Too Strong: requires

    We can't find support for this conditional relationship, that without human hosts, V.c. can never spread along a seacoast. This is raised as a traditional belief that scientists had: "For nearly a century after 1980, scientists believed that V.c. travels to new geographic regions only via human hosts". That understanding has changed, this passage suggests.

    18% picked this

  4. Bacteria that are taken from

    Opposite

    When V.c. is found in a human host, it's in its active/reproducing state, which is likely to be detectable via traditional culture. Meanwhile, when V.c. is found in seawater, it's in its shrunken/sporelike/non-reproducing state, which makes it unlikely to show up in traditional cultures.

    5% picked this

  5. Antibodies are less likely to

    Unknown Comparison

    We have no support for this comparison. We know that the antibodies are bonding to the cell membrane when V.c. is in its dormant state, because that's how Rita Colwell is finding them, in the Chesapeake and in the bayous. We don't ever hear about her using this antibody test on V.c. in its active state. Presumably it works at least as well (maybe better), but we have no textual support for that comparison.

    10% picked this

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