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Published on: December 1, 2023
A review of plague persistence with special emphasis on fleas
Jeffrey Wimsatt1, Dean E Biggins
1Center for Comparative Medicine and Department of Biology, University of Virginia, Charlottesville, USA. jhw5b@virginia.edu
Abstract:
Sylvatic plague is highly prevalent during infrequent epizootics that ravage the landscape of western North America. During these periods, plague dissemination is very efficient. Epizootics end when rodent and flea populations are decimated and vectored transmission declines. A second phase (enzootic plague) ensues when plague is difficult to detect from fleas, hosts or the environment, and presents less of a threat to public health. Recently, researchers have hypothesized that the bacterium (Yersinia pestis) responsible for plague maintains a continuous state of high virulence and thus only changes in transmission efficiency explain the shift between alternating enzootic and epizootic phases. However, if virulent transmission becomes too inefficient, strong selection might favor an alternate survival strategy. Another plausible non-exclusive hypothesis, best supported from Asian field studies, is that Y. pestis persists (locally) at foci by maintaining a more benign relationship within adapted rodents during the long expanses of time between outbreaks. From this vantage, it can revert to the epizootic (transmission efficient) form. Similarly, in the United States (US), enzootic plague persistence has been proposed to develop sequestered within New World rodent carriers. However, the absence of clear support for rodent carriers in North America has encouraged a broader search for alternative explanations. A telluric plague existence has been proposed. However, the availability of flea life stages and their hosts could critically supplement environmental plague sources, or fleas might directly represent a lowlevel plague reservoir. Here, we note a potentially pivotal role for fleas. These epizootic plague vectors should be closely studied with newer more exacting methods to determine their potential to serve as participants in or accomplices to a plague persistence reservoir.
Insights
Sylvatic plague cycles between highly contagious epizootic and less detectable enzootic phases. This study explores the pivotal role fleas may play in plague persistence, potentially acting as a reservoir between outbreaks.
Area of Science:
- Ecology and Evolutionary Biology
- Microbiology
- Epidemiology
Background:
- Sylvatic plague in western North America alternates between highly transmissible epizootic and low-detectability enzootic phases.
- Current hypotheses suggest Yersinia pestis maintains virulence, with transmission efficiency driving phase shifts, or that plague persists benignly in adapted rodent hosts.
- Lack of clear evidence for rodent carriers in North America prompts investigation into alternative plague persistence mechanisms.
Purpose of the Study:
- To investigate the potential role of fleas in the persistence of sylvatic plague between epizootic outbreaks.
- To evaluate alternative hypotheses for enzootic plague maintenance beyond rodent carriers.
- To highlight the need for further research into flea ecology and their role in plague dynamics.
Main Methods:
- Review and synthesis of existing research on plague epidemiology and vector biology.
- Analysis of hypotheses regarding Yersinia pestis transmission dynamics and host-pathogen relationships.
- Identification of research gaps concerning the role of fleas in plague persistence.
Main Results:
- The study identifies fleas as potentially pivotal participants in plague persistence, possibly serving as a reservoir.
- It questions the sole reliance on rodent carriers for enzootic plague maintenance in North America.
- Environmental sources and flea life stages are considered potential supplements or reservoirs for plague bacteria.
Conclusions:
- Fleas, the vectors of epizootic plague, warrant closer study to determine their role in plague persistence.
- Alternative explanations, including the potential for fleas to act as a reservoir, are crucial for understanding plague cycles.
- Further research using advanced methods is needed to elucidate the complex ecology of plague and its vectors.
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