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Microbial Interactions: Parasitism01:22

Microbial Interactions: Parasitism

Parasitism is a form of microbial interaction in which parasitic microbes exploit a host organism for nutrients and shelter, often at the host's expense. Unlike mutualistic relationships, where both organisms benefit, parasitism benefits only the parasite and harms the host.Classification of ParasitesMicrobial parasites are broadly classified based on their location relative to the host.Ectoparasites remain on the host’s surface, such as the skin or outer tissues, drawing nutrients...
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Giardiasis is a globally prevalent intestinal infection caused by the protozoan parasite Giardia duodenalis (also known as G. lamblia or G. intestinalis). This flagellated protozoan is the most frequently identified intestinal parasite in the United States and worldwide. Transmission primarily occurs via the fecal-oral route, with infection arising from ingestion of water or food contaminated with cysts. Individuals in low-resource settings, international travelers, outdoor enthusiasts, daycare...
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Entamoeba histolytica, a protozoan parasite, is responsible for intestinal and extraintestinal amebiasis. Though a significant proportion of infections remain asymptomatic, approximately 50 million individuals annually are estimated to present with clinical disease, resulting in up to 100,000 deaths globally. The disease burden is disproportionately high in regions with lower socioeconomic status, such as parts of India, Africa, Mexico, and Latin America.Etiology and TransmissionThe infective...

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Related Experiment Video

Updated: Jul 11, 2026

Cercarial Transformation and in vitro Cultivation of Schistosoma mansoni Schistosomules
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Effects of host habitat quality on the viability of Cryptocotyle lingua (Trematoda: Digenea) cercariae.

M A Cross1, S W B Irwin, S M Fitzpatrick

  • 1School of Biological Sciences, The University of Liverpool, Biosciences Building, Crown Street, Liverpool L69 7ZB. macross@liv.ac.uk

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|February 25, 2005
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Summary

Marine pollution slows Cryptocotyle lingua cercariae swimming due to impaired swimming action, not disorientation. Pollutants impact neuromusculature, affecting parasite viability in intermediate hosts.

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Area of Science:

  • Marine Biology
  • Parasitology
  • Environmental Toxicology

Background:

  • Earlier studies showed Cryptocotyle lingua cercariae from polluted environments exhibit reduced swimming and longevity.
  • Pollution's impact on parasite behavior and physiology is a growing concern in marine ecosystems.

Purpose of the Study:

  • To determine if pollution-induced reductions in cercarial swimming rates are due to inefficient swimming or longer pathways.
  • To assess the speed at which environmental pollutants affect cercariae through their intermediate hosts.
  • To investigate the physiological mechanisms underlying reduced swimming performance in cercariae.

Main Methods:

  • Comparative analysis of swimming behavior (speed, path) of cercariae from polluted and unpolluted environments.
  • Host transplantation experiments (Littorina littorea) from unpolluted to polluted sites.
  • Inference on physiological effects based on observed behavioral changes.

Main Results:

  • Horizontal swimming rates were primarily reduced by slower swimming speeds, not disorientation or longer paths.
  • Pollutant effects on cercariae were evident within 1 month of host transplantation to a polluted site.
  • Evidence suggests pollutants affect the neuromusculature involved in swimming, not sensory structures.

Conclusions:

  • Pollution negatively impacts Cryptocotyle lingua cercariae swimming performance by affecting neuromusculature.
  • The intermediate host (Littorina littorea) facilitates pollutant accumulation, impacting parasite viability.
  • High parasite prevalence in polluted areas is likely sustained by infected birds introducing new cercariae.