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Digestive function of lysozyme in synanthropic acaridid mites enables utilization of bacteria as a food source
1Department of Zoology, Faculty of Science, Charles University, Vinicna 7, Praha, Czech Republic.
Abstract:
The activity of lysozyme, the enzyme that hydrolyzes peptidoglycan in G(+) bacterial cell walls, was detected in whole mite extracts (WME) and in spent growth medium extracts (SGME) of 14 species of synanthropic mites (Acari: Acaridida). The adaptation of lysozyme for digestive activity and bacteriophagy was based on: (i) high lysozyme activity in SGME, and (ii) the correlation of maximum lysozyme activity at acidic pH values, corresponding to pH in the ventriculus and caeca. We show that the digestion of fluorescein-labeled Micrococcus lysodeikticus cells began in ventriculus and continued during the passage of a food bolus through the gut. The fluorescein was absorbed by midgut cells and penetrated to parenchymal tissues. Eight species showed a higher rate of population growth on a M. lysodeikticus diet than on a control diet. The lysozyme activity in SGME was positively correlated to the standardized rate (r (s)) of population growth, although no correlation was found between r (s) and lysozyme activity in WME. The lysozyme activity in WME was negatively correlated to that in SGME. The highest activity of digestive lysozyme was found in Lepidoglyphus destructor, Chortoglyphus arcuatus and Dermatophagoides farinae. All of these findings indicate that lysozyme in acaridid mites possesses both defensive and digestive functions. The enzymatic properties of mite lysozyme are similar to those of the lysozymes present in the ruminant stomach and in the insect midgut.
Insights
Mite lysozyme aids digestion and defense by breaking down bacterial cell walls. Its activity in mite secretions correlates with population growth, suggesting a dual digestive and bacteriophagic role.
Area of Science:
- Enzymology
- Mite Biology
- Bacteriophage
Background:
- Lysozyme hydrolyzes peptidoglycan in Gram-positive bacterial cell walls.
- Synanthropic mites are common household arthropods.
- Understanding mite enzymes is crucial for pest control and allergen research.
Purpose of the Study:
- To investigate the presence and function of lysozyme in synanthropic mites.
- To determine if mite lysozyme possesses digestive and/or defensive capabilities.
- To correlate lysozyme activity with mite population growth and diet.
Main Methods:
- Detection of lysozyme activity in whole mite extracts (WME) and spent growth medium extracts (SGME).
- Assay of lysozyme activity at varying pH levels, mimicking gut conditions.
- Monitoring the digestion of labeled bacterial cells and mite population growth on specific diets.
Main Results:
- Lysozyme activity was found in 14 mite species, with highest activity in SGME at acidic pH.
- Digestion of Micrococcus lysodeikticus cells occurred in the mite gut, with absorption by midgut cells.
- Lysozyme activity in SGME positively correlated with mite population growth, unlike WME activity.
Conclusions:
- Mite lysozyme exhibits both digestive and defensive functions, similar to enzymes in ruminant stomachs and insect midguts.
- Lysozyme secreted by mites plays a significant role in their nutrition and defense.
- Species like Lepidoglyphus destructor, Chortoglyphus arcuatus, and Dermatophagoides farinae show high digestive lysozyme activity.
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