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Authors Tyml

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Tyml, Tomáš


Publications
3

CitationNamesAbstract
Synthase-selected sorting approach identifies a beta-lactone synthase in a nudibranch symbiotic bacterium Džunková et al. (2023). Microbiome 11 (1) Doriopsillibacter californiensis Ts Doriopsillibacter Perseibacteraceae
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Chlamydial seasonal dynamics and isolation of ‘ <scp> C </scp> andidatus   <scp>N</scp> eptunochlamydia vexilliferae’ from a <scp>T</scp> yrrhenian coastal lake Pizzetti et al. (2016). Environmental Microbiology 18 (8) “Neptunochlamydia vexilliferae”
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Marine amoebae with cytoplasmic and perinuclear symbionts deeply branching in the Gammaproteobacteria Schulz et al. (2015). Scientific Reports 5 (1) “Occultobacter vannellae” Ca. Nucleophilum amoebae
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Synthase-selected sorting approach identifies a beta-lactone synthase in a nudibranch symbiotic bacterium
Abstract Background Nudibranchs comprise a group of &gt; 6000 marine soft-bodied mollusk species known to use secondary metabolites (natural products) for chemical defense. The full diversity of these metabolites and whether symbiotic microbes are responsible for their synthesis remains unexplored. Another issue in searching for undiscovered natural products is that computational analysis of genomes of uncultured microbes can result in detection of novel biosynthetic gene clusters; however, their in vivo functionality is not guaranteed which limits further exploration of their pharmaceutical or industrial potential. To overcome these challenges, we used a fluorescent pantetheine probe, which produces a fluorescent CoA-analog employed in biosynthesis of secondary metabolites, to label and capture bacterial symbionts actively producing these compounds in the mantle of the nudibranch Doriopsilla fulva. Results We recovered the genome of Candidatus Doriopsillibacter californiensis from the Ca. Tethybacterales order, an uncultured lineage of sponge symbionts not found in nudibranchs previously. It forms part of the core skin microbiome of D. fulva and is nearly absent in its internal organs. We showed that crude extracts of D. fulva contained secondary metabolites that were consistent with the presence of a beta-lactone encoded in Ca. D. californiensis genome. Beta-lactones represent an underexplored group of secondary metabolites with pharmaceutical potential that have not been reported in nudibranchs previously. Conclusions Altogether, this study shows how probe-based, targeted sorting approaches can capture bacterial symbionts producing secondary metabolites in vivo.
Chlamydial seasonal dynamics and isolation of ‘ <scp> C </scp> andidatus   <scp>N</scp> eptunochlamydia vexilliferae’ from a <scp>T</scp> yrrhenian coastal lake
Summary The C hlamydiae are a phylum of obligate intracellular bacteria comprising important human and animal pathogens, yet their occurrence in the environment, their phylogenetic diversity and their host range has been largely underestimated. We investigated the seasonality of environmental chlamydiae in a Tyrrhenian coastal lake. By catalysed reporter deposition fluorescence in situ hybridization, we quantified the small planktonic cells and detected a peak in the abundance of environmental chlamydiae in early autumn with up to 5.9 × 10 4 cells ml −1 . Super‐resolution microscopy improved the visualization and quantification of these bacteria and enabled the detection of pleomorphic chlamydial cells in their protist host directly in an environmental sample. To isolate environmental chlamydiae together with their host, we applied a high‐throughput limited dilution approach and successfully recovered a V exillifera sp., strain harbouring chlamydiae (93% 16 S r RNA sequence identity to S imkania negevensis ), tentatively named ‘ C andidatus   N eptunochlamydia vexilliferae’. Transmission electron microscopy in combination with fluorescence in situ hybridization was used to prove the intracellular location of these bacteria representing the first strain of marine chlamydiae stably maintained alongside with their host in a laboratory culture. Taken together, this study contributes to a better understanding of the distribution and diversity of environmental chlamydiae in previously neglected marine environments.
Marine amoebae with cytoplasmic and perinuclear symbionts deeply branching in the Gammaproteobacteria
AbstractAmoebae play an important ecological role as predators in microbial communities. They also serve as niche for bacterial replication, harbor endosymbiotic bacteria and have contributed to the evolution of major human pathogens. Despite their high diversity, marine amoebae and their association with bacteria are poorly understood. Here we describe the isolation and characterization of two novel marine amoebae together with their bacterial endosymbionts, tentatively named ‘Candidatus Occultobacter vannellae’ and ‘Candidatus Nucleophilum amoebae’. While one amoeba strain is related to Vannella, a genus common in marine habitats, the other represents a novel lineage in the Amoebozoa. The endosymbionts showed only low similarity to known bacteria (85–88% 16S rRNA sequence similarity) but together with other uncultured marine bacteria form a sister clade to the Coxiellaceae. Using fluorescence in situ hybridization and transmission electron microscopy, identity and intracellular location of both symbionts were confirmed; one was replicating in host-derived vacuoles, whereas the other was located in the perinuclear space of its amoeba host. This study sheds for the first time light on a so far neglected group of protists and their bacterial symbionts. The newly isolated strains represent easily maintainable model systems and pave the way for further studies on marine associations between amoebae and bacterial symbionts.
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