Isolation and Characterization of sp. (Chytridiomycota), Obligate Parasite of in a Laurentian Great Lakes Embayment.

Appl Environ Microbiol

Department of Biological Sciences and Great Lakes Center for Fresh Waters and Human Health, Bowling Green State University, Bowling Green, OH 43403 USA

Published: March 2021

dominates the cyanobacterial harmful algal bloom community in Sandusky Bay, Lake Erie (USA) from May through September. This filamentous cyanobacterium is host to a known obligate parasite; the chytrid sp. During the 2018 bloom season, by utilizing dilution and single filament isolation techniques, 7 chytrid and 12 strains were isolated from Sandusky Bay. These 7 chytrids and a selection of hosts were then characterized with respect to infection rates. Infections by the isolated chytrids were specific to planktonic species and were not found on other filamentous cyanobacterial taxa present in the bay ( sp. and sp.). Even among the potential host strains, individual chytrid isolates had different degrees of infectivity and showed preference for different host isolates, suggesting possible ecological partitioning even within the same sample population. Examining mechanisms of chytrid pathogenesis, the zoospores displayed a swarming pattern to attack and fracture the host filament and create new infection sites at the trichome termini. Infections by these parasitic chytrids also led to a release of intracellular microcystin toxins from the hosts. Additionally, infections were dependent on media type, highlighting the importance of media choice on experimental outcomes. Media in which chytrid swarming was observed closely matched the ionic strength of the natural environment. Understanding pathogenesis by fungal parasites will assist future efforts aimed at determining environmental factors favoring loss mechanisms for -dominated blooms. Whereas many studies have focused on the factors contributing to the establishment and persistence of cyanobacterial harmful algal blooms (cHABs), few studies have examined bloom pathogenesis. Chytrid fungi infect cyanobacteria and stimulate food web interactions through manipulation of previously hard to digest filaments and the release of nutrients to support heterotrophic microbes. Specifically, chytrids infective on filamentous exhibit a species-specific infection that fragments trichomes into shorter units that can be consumed more easily by grazers. Chytrid zoospores also serve as a high-quality food source for the lower food web. Understanding host-pathogen relationships and mechanisms of pathogenesis on cyanobacteria will be necessary to effectively model the ecology of cHABs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7851699PMC
http://dx.doi.org/10.1128/AEM.02308-20DOI Listing

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