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Extracting DNA from the Gut Microbes of the Termite (Zootermopsis Angusticollis) and Visualizing Gut Microbes
Published on: May 28, 2007
Pathogen alarm behavior in a termite: A new form of communication in social insects
1Biology Department, Boston University, 5 Cummington Street, Boston, MA 02215, USA.
Abstract:
Dampwood termites, Zootermopsis angusticollis, show an alarm response after detecting the presence of spores of the pathogenic fungus Metarhizium anisopliae. Termites in direct contact with a high concentration of spores (10(7) spores/ml) show a striking vibratory display which appears to convey information about the presence of pathogens to nearby unexposed nestmates through substrate vibration. Nestmates not directly in contact with spores that perceive the vibrational signal increase significantly their distance from the spore-exposed vibrating termites, apparently to escape from the source of infection. The fleeing response is not induced by the presence of the spores alone or by pheromones, and requires the perception of the vibrations propagated through the substrate. This "pathogen alarm behavior" appears to be a previously unrecognized communication mechanism that allows termites to reduce disease risks within the nest.
Insights
Dampwood termites exhibit a unique "pathogen alarm behavior" when exposed to pathogenic fungus spores. Vibrational signals alert nestmates, prompting them to flee and avoid infection, thus reducing disease risk.
Area of Science:
- Entomology
- Animal Behavior
- Chemical Ecology
Background:
- Termites are social insects vulnerable to pathogens.
- Disease transmission poses a significant risk to colony survival.
- Communication mechanisms are crucial for termite colony defense.
Purpose of the Study:
- To investigate the alarm response of dampwood termites to pathogenic fungus spores.
- To determine the role of substrate vibrations in pathogen detection and avoidance.
- To identify a novel communication mechanism for disease risk reduction in termites.
Main Methods:
- Exposing termites (Zootermopsis angusticollis) to Metarhizium anisopliae spores.
- Observing and analyzing termite vibratory displays.
- Assessing the behavioral responses of unexposed nestmates to vibrational signals.
- Differentiating responses to spores versus vibrations.
Main Results:
- Termites exposed to high concentrations of M. anisopliae spores displayed a distinct vibratory signal.
- Nestmates perceiving these vibrations significantly increased their distance from exposed individuals.
- The fleeing response was triggered by substrate vibrations, not by spores or pheromones alone.
- This behavior was identified as a pathogen alarm response.
Conclusions:
- Dampwood termites possess a "pathogen alarm behavior" mediated by substrate vibrations.
- This communication system allows termites to detect and avoid pathogen-infected nestmates.
- The behavior serves to mitigate disease spread and reduce infection risk within the colony.
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