Horn, Matthias


Publications
23

Life in an unusual intracellular niche: a bacterial symbiont infecting the nucleus of amoebae

Citation
Schulz et al. (2014). The ISME Journal 8 (8)
Names
Nucleicultrix Nucleicultrix amoebiphila Ts
Abstract
Abstract Amoebae serve as hosts for various intracellular bacteria, including human pathogens. These microbes are able to overcome amoebal defense mechanisms and successfully establish a niche for replication, which is usually the cytoplasm. Here, we report on the discovery of a bacterial symbiont that is located inside the nucleus of its Hartmannella sp. host. This symbiont, tentatively named ‘Candidatus Nucleicultrix amoebiphila’, is only moderately related to known bacteria (∼9
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The Pine Bark Adelgid, Pineus strobi, Contains Two Novel Bacteriocyte-Associated Gammaproteobacterial Symbionts

Citation
Toenshoff et al. (2014). Applied and Environmental Microbiology 80 (3)
Names
“Theodorhartigia” “Annandiella pinicola” “Theodorhartigia pinicola”
Abstract
ABSTRACT Bacterial endosymbionts of the pine bark adelgid, Pineus strobi (Insecta: Hemiptera: Adelgidae), were investigated using transmission electron microscopy, 16S and 23S rRNA-based phylogeny, and fluorescence in situ hybridization. Two morphologically different symbionts affiliated with the Gammaproteobacteria were present in distinct bacteriocytes. One of them (“ Candidatus
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Bacteriocyte-associated gammaproteobacterial symbionts of the Adelges nordmannianae/piceae complex (Hemiptera: Adelgidae)

Citation
Toenshoff et al. (2012). The ISME Journal 6 (2)
Names
“Ecksteinia adelgidicola”
Abstract
Abstract Adelgids (Insecta: Hemiptera: Adelgidae) are known as severe pests of various conifers in North America, Canada, Europe and Asia. Here, we present the first molecular identification of bacteriocyte-associated symbionts in these plant sap-sucking insects. Three geographically distant populations of members of the Adelges nordmannianae/piceae complex, identified based on coI and ef1alpha gene sequences, were investigated. Electron and light microscopy revealed two morpholog
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The Genome of the Amoeba Symbiont “CandidatusAmoebophilus asiaticus” Reveals Common Mechanisms for Host Cell Interaction among Amoeba-Associated Bacteria

Citation
Schmitz-Esser et al. (2010). Journal of Bacteriology 192 (4)
Names
Ca. Amoebophilus asiaticus
Abstract
ABSTRACTProtozoa play host for many intracellular bacteria and are important for the adaptation of pathogenic bacteria to eukaryotic cells. We analyzed the genome sequence of “CandidatusAmoebophilus asiaticus,” an obligate intracellular amoeba symbiont belonging to theBacteroidetes. The genome has a size of 1.89 Mbp, encodes 1,557 proteins, and shows massive proliferation of IS elements (24% of all genes), although the genome seems to be evolutionarily relatively stable. The genome does not enco
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CandidatusThiobios zoothamnicoli,” an Ectosymbiotic Bacterium Covering the Giant Marine CiliateZoothamnium niveum

Citation
Rinke et al. (2006). Applied and Environmental Microbiology 72 (3)
Names
“Thiobios zoothamnicoli”
Abstract
ABSTRACTZoothamnium niveumis a giant, colonial marine ciliate from sulfide-rich habitats obligatorily covered with chemoautotrophic, sulfide-oxidizing bacteria which appear as coccoid rods and rods with a series of intermediate shapes. Comparative 16S rRNA gene sequence analysis and fluorescence in situ hybridization showed that the ectosymbiont ofZ. niveumbelongs to only one pleomorphic phylotype. TheZ. niveumectosymbiont is only moderately related to previously identified groups of thiotrophic
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‘Candidatus Protochlamydia amoebophila’, an endosymbiont of Acanthamoeba spp

Citation
Collingro et al. (2005). International Journal of Systematic and Evolutionary Microbiology 55 (5)
Names
Ca. Protochlamydia amoebophila
Abstract
The obligately intracellular coccoid bacterium UWE25, a symbiont of Acanthamoeba spp., was previously identified as being related to chlamydiae based upon the presence of a chlamydia-like developmental cycle and its 16S rRNA gene sequence. Analysis of its complete genome sequence demonstrated that UWE25 shows many characteristic features of chlamydiae, including dependency on host-derived metabolites, composition of the cell envelope and the ability to thrive as an energy parasite within the cel
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Novel chlamydiae in whiteflies and scale insects: endosymbionts ‘Candidatus Fritschea bemisiae’ strain Falk and ‘Candidatus Fritschea eriococci’ strain Elm

Citation
Everett et al. (2005). International Journal of Systematic and Evolutionary Microbiology 55 (4)
Names
“Fritschea bemisiae” “Fritschea eriococci”
Abstract
Bacteria called ‘Fritschea’ are endosymbionts of the plant-feeding whitefly Bemisia tabaci and scale insect Eriococcus spurius. In the gut of B. tabaci, these bacteria live within bacteriocyte cells that are transmitted directly from the parent to oocytes. Whiteflies cause serious economic damage to many agricultural crops; B. tabaci fecundity and host range are less than those of Bemisia argentifolii, possibly due to the presence of this endosymbiont. The B. tabaci endosymbiont has been charact
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