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Authors Martijn

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Martijn, Joran


Publications
4

CitationNamesAbstract
Draft Genome Sequence of “ Candidatus Moanabacter tarae,” Representing a Novel Marine Verrucomicrobial Lineage Vosseberg et al. (2018). Microbiology Resource Announcements 7 (15) Ca. Moanabacter tarae
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A <scp> R </scp> ickettsiales symbiont of amoebae with ancient features Schulz et al. (2016). Environmental Microbiology 18 (8) “Jidaibacter acanthamoeba”
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Single-cell genomics of a rare environmental alphaproteobacterium provides unique insights into Rickettsiaceae evolution Martijn et al. (2015). The ISME Journal 9 (11) “Arcanibacter lacustris” “Arcanobacter lacustris”
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Complex archaea that bridge the gap between prokaryotes and eukaryotes Spang et al. (2015). Nature 521 (7551) Asgardarchaeota “Lokiarchaeota” “Lokiarchaeia” “Lokiarchaeales”

Draft Genome Sequence of “ Candidatus Moanabacter tarae,” Representing a Novel Marine Verrucomicrobial Lineage
The Tara Oceans Consortium has published various metagenomes of marine environmental samples. Here, we report a contig of 2.6 Mbp from the assembly of a sample collected near the Marquesas Islands in the Pacific Ocean, covering a nearly complete novel verrucomicrobial genome.
A <scp> R </scp> ickettsiales symbiont of amoebae with ancient features
Summary The R ickettsiae comprise intracellular bacterial symbionts and pathogens infecting diverse eukaryotes. Here, we provide a detailed characterization of ‘ C andidatus   J idaibacter acanthamoeba’, a rickettsial symbiont of A canthamoeba . The bacterium establishes the infection in its amoeba host within 2 h where it replicates within vacuoles. Higher bacterial loads and accelerated spread of infection at elevated temperatures were observed. The infection had a negative impact on host growth rate, although no increased levels of host cell lysis were seen. Phylogenomic analysis identified this bacterium as member of the M idichloriaceae . Its 2.4 Mb genome represents the largest among R ickettsiales and is characterized by a moderate degree of pseudogenization and a high coding density. We found an unusually large number of genes encoding proteins with eukaryotic‐like domains such as ankyrins, leucine‐rich repeats and tetratricopeptide repeats, which likely function in host interaction. There are a total of three divergent, independently acquired type IV secretion systems, and 35 flagellar genes representing the most complete set found in an obligate intracellular A lphaproteobacterium . The deeply branching phylogenetic position of ‘ C andidatus   J idaibacter acanthamoeba’ together with its ancient features place it closely to the rickettsial ancestor and helps to better understand the transition from a free‐living to an intracellular lifestyle.
Single-cell genomics of a rare environmental alphaproteobacterium provides unique insights into Rickettsiaceae evolution
Abstract The bacterial family Rickettsiaceae includes a group of well-known etiological agents of many human and vertebrate diseases, including epidemic typhus-causing pathogen Rickettsia prowazekii. Owing to their medical relevance, rickettsiae have attracted a great deal of attention and their host-pathogen interactions have been thoroughly investigated. All known members display obligate intracellular lifestyles, and the best-studied genera, Rickettsia and Orientia, include species that are hosted by terrestrial arthropods. Their obligate intracellular lifestyle and host adaptation is reflected in the small size of their genomes, a general feature shared with all other families of the Rickettsiales. Yet, despite that the Rickettsiaceae and other Rickettsiales families have been extensively studied for decades, many details of the origin and evolution of their obligate host-association remain elusive. Here we report the discovery and single-cell sequencing of ‘Candidatus Arcanobacter lacustris’, a rare environmental alphaproteobacterium that was sampled from Damariscotta Lake that represents a deeply rooting sister lineage of the Rickettsiaceae. Intriguingly, phylogenomic and comparative analysis of the partial ‘Candidatus Arcanobacter lacustris’ genome revealed the presence chemotaxis genes and vertically inherited flagellar genes, a novelty in sequenced Rickettsiaceae, as well as several host-associated features. This finding suggests that the ancestor of the Rickettsiaceae might have had a facultative intracellular lifestyle. Our study underlines the efficacy of single-cell genomics for studying microbial diversity and evolution in general, and for rare microbial cells in particular.
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