Microbial grazers can control chytridiomycosis caused by aquatic zoosporic fungi
Farthing, H. N.; Jiang, J.; Henwood, A. J.; Fenton, A.; Fisher, M. C.; Montagnes, D. J. S.
Show abstract
Free-living eukaryotic microbes may reduce animal diseases. We evaluated the dynamics by which micrograzers (primarily protozoa) apply top-down control on the chytrid Batrachochytrium dendrobatidis (Bd) a devastating, panzootic pathogen of amphibians. Although micrograzers consumed zoospores ([~]3 {micro}m), the dispersal stage of chytrids, not all species grew monoxenically on zoospores. However, the ubiquitous ciliate Tetrahymena pyriformis, which likely co-occurs with Bd, grew at near its maximum rate (r = 1.7 d-1). A functional response (ingestion vs. prey abundance) for T. pyriformis, measured using spore-surrogates (microspheres) revealed maximum ingestion (Imax) of 1.63 x 103 zoospores d-1, with a half saturation constant (k) of 5.75 x 103 zoospores ml-1. Using these growth and grazing data we developed and assessed a population model that incorporated chytrid-host and micrograzer dynamics. Simulations using our data and realistic parameters obtained from the literature suggested that micrograzers could control Bd and potentially prevent chytridiomycosis (defined as 104 sporangia host-1). However, simulated inferior micrograzers (0.7 x Imax and 1.5 x k) did not prevent chytridiomycosis, although they ultimately reduced pathogen abundance to below levels resulting in disease. These findings indicate how micrograzer responses can be applied when modelling disease dynamics for Bd and other zoosporic fungi.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Pharmaceutical pollution alters the cost of bacterial infection and its relationship to pathogen load 93%
- The secretome of a parasite alters its host's behaviour but does not recapitulate the behavioural response to infection 93%
- Do fungi look like macroparasites? Quantifying the patterns and mechanisms of aggregation for host-fungal parasite relationships 92%
Similar papers in this journal
- Use of a mechanistic growth model in evaluating post-restoration habitat quality for juvenile salmonids 92%
- Phenotypic and transcriptional response of Daphnia pulicaria to the combined effects of temperature and predation 92%
- Distinguishing Signal from Noise: Understanding Patterns of Non-Detections to Inform Accurate Quantitative Metabarcoding 92%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.