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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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Evaluation of experimental transmission of Candidatus Mycoplasma haemominutum and Mycoplasma haemofelis by Ctenocephalides felis to cats

Citation
Woods et al. (2005). American Journal of Veterinary Research 66 (6)
Names
Ca. Mycoplasma haemominutum
Abstract
Abstract Objective—To determine whether Ctenocephalides felis can transmit Mycoplasma haemofelis (Mhf) and Candidatus Mycoplasma haemominutum (Mhm) through hematophagous activity between cats. Animals—11 cats. Procedure—2 cats were carriers of either Mhf or Mhm. Nine cats had negative results via polymerase chain reaction (PCR) assay for Mhf and Mhm DNA; 3 of those cats were infected from the chronic carriers via IV inoculation of blood. At the time of maximum organ
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‘Candidatus Borrelia texasensis’, from the American dog tick Dermacentor variabilis

Citation
Lin et al. (2005). International Journal of Systematic and Evolutionary Microbiology 55 (2)
Names
Ca. Borrelia texasensis
Abstract
TXW-1, aBorreliastrain isolated in March 1998 from an adult maleDermacentor variabilistick feeding on a coyote from Webb county, Texas, USA, was characterized by using randomly amplified polymorphic DNA (RAPD) analysis, RFLP and sequence analysis offlaBandrrs(16S rRNA gene), DNA–DNA hybridization analysis, SDS-PAGE and Western blotting with mAbs. It shows different banding patterns in RFLP analysis offlaBand forms distinct branches in phylogenetic analysis derived fromflaBandrrsgenes. It differs
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Genetic variation in Candidatus Phytoplasma australiense

Citation
Streten, Gibb (2005). Plant Pathology 54 (1)
Names
Ca. Phytoplasma australiense
Abstract
This study examined whether genes that are less conserved than the 16S rRNA gene can distinguish Candidatus Phytoplasma australiense strains that are identical based on their 16S rRNA genes, with a view to providing insight into their origins and distribution, and any patterns of association with particular plant hosts. Sequence analysis of the tuf gene and rp
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Bergey’s Manual® of Systematic Bacteriology

Citation
Anonymous (2005).
Names
Pseudomonadota
Abstract

Bergey’s Manual® of Systematic Bacteriology

Citation
Anonymous (2005).
Names
Abstract