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Authors Fuchs

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Fuchs, Bernhard M.


Publications
4

CitationNamesAbstract
Candidatus Abditibacter, a novel genus within the Cryomorphaceae, thriving in the North Sea Grieb et al. (2020). Systematic and Applied Microbiology 43 (4) “Abditibacter”
Candidatus Prosiliicoccus vernus, a spring phytoplankton bloom associated member of the Flavobacteriaceae Francis et al. (2019). Systematic and Applied Microbiology 42 (1) “Prosiliicoccus vernus” “Prosiliicoccus”
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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A microdiversity study of anammox bacteria reveals a novel Candidatus Scalindua phylotype in marine oxygen minimum zones Woebken et al. (2008). Environmental Microbiology 10 (11) “Scalindua arabica”
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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
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.
A microdiversity study of anammox bacteria reveals a novel Candidatus Scalindua phylotype in marine oxygen minimum zones
Summary The anaerobic oxidation of ammonium (anammox) contributes significantly to the global loss of fixed nitrogen and is carried out by a deep branching monophyletic group of bacteria within the phylum Planctomycetes . Various studies have implicated anammox to be the most important process responsible for the nitrogen loss in the marine oxygen minimum zones (OMZs) with a low diversity of marine anammox bacteria. This comprehensive study investigated the anammox bacteria in the suboxic zone of the Black Sea and in three major OMZs (off Namibia, Peru and in the Arabian Sea). The diversity and population composition of anammox bacteria were investigated by both, the 16S rRNA gene sequences and the 16S‐23S rRNA internal transcribed spacer (ITS). Our results showed that the anammox bacterial sequences of the investigated samples were all closely related to the Candidatus Scalindua genus. However, a greater microdiversity of marine anammox bacteria than previously assumed was observed. Both phylogenetic markers supported the classification of all sequences in two distinct anammox bacterial phylotypes: Candidatus Scalindua clades 1 and 2. Scalindua 1 could be further divided into four distinct clusters, all comprised of sequences from either the Namibian or the Peruvian OMZ. Scalindua 2 consisted of sequences from the Arabian Sea and the Peruvian OMZ and included one previously published 16S rRNA gene sequence from Lake Tanganyika and one from South China Sea sediment (97.9–99.4% sequence identity). This cluster showed only ≤ 97% sequence identity to other known Candidatus Scalindua species. Based on 16S rRNA gene and ITS sequences we propose that the anammox bacteria of Scalindua clade 2 represent a novel anammox bacterial species, for which the name Candidatus Scalindua arabica is proposed. As sequences of this new cluster were found in the Arabian Sea, the Peruvian OMZ, in Lake Tanganyika and in South China sediment, we assume a global distribution of Candidatus Scalindua arabica as it is observed for Candidatus Scalindua sorokinii/brodae (or Scalindua clade 1).
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