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Distribution of the Primary Endosymbiont (Candidatus Uzinura Diaspidicola) Within Host Insects from the Scale Insect Family Diaspididae

Citation
Gruwell et al. (2012). Insects 3 (1)
Names
Ca. Uzinura Ca. Uzinura diaspidicola
Abstract
It has long been known that armored scale insects harbor endosymbiotic bacteria inside specialized cells called bacteriocytes. Originally, these endosymbionts were thought to be fungal symbionts but they are now known to be bacterial and have been named Uzinura diaspidicola. Bacteriocyte and endosymbiont distribution patterns within host insects were visualized using in situ hybridization via 16S rRNA specific probes. Images of scale insect embryos, eggs and adult scale insects show patterns of
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Genome Sequence for “Candidatus Mycoplasma haemominutum,” a Low-Pathogenicity Hemoplasma Species

Citation
Barker et al. (2012). Journal of Bacteriology 194 (4)
Names
Ca. Mycoplasma haemominutum
Abstract
ABSTRACT We present the genome sequence of “ Candidatus Mycoplasma haemominutum” strain Birmingham 1, a low-pathogenicity feline hemoplasma strain.

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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Ultrastructure of the Denitrifying Methanotroph “Candidatus Methylomirabilis oxyfera,” a Novel Polygon-Shaped Bacterium

Citation
Wu et al. (2012). Journal of Bacteriology 194 (2)
Names
Methylomirabilis oxygeniifera Ts
Abstract
ABSTRACT “ Candidatus Methylomirabilis oxyfera” is a newly discovered denitrifying methanotroph that is unrelated to previously known methanotrophs. This bacterium is a member of the NC10 phylum and couples methane oxidation to denitrification through a newly discovered intra-aerobic pathway. In the present study, we report the first ultrastructural study of “ Ca . Methylomirabilis oxyfera” using scanning electron microscopy,
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