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Candidatus Phytoplasma brasiliense’ (16SrXV-A Subgroup) Associated with Cauliflower Displaying Stunt Symptoms in Brazil

Citation
Canale, Bedendo (2013). Plant Disease 97 (3)
Names
Ca. Phytoplasma brasiliense
Abstract
Cauliflower stunt, caused by a phytoplasma of the group 16SrIII-J, was reported in the beginning of 2012 and has occurred with high incidences of infected plants (up to 90%) in crops located in the state of São Paulo in the southeast region of Brazil (3). Diseased plants exhibit general stunting, malformation of inflorescence, reddening leaves, and vessel necrosis (3). Further investigations with plants displaying identical symptoms collected in Nova Bassano, state of Rio Grande do Sul, Brazili
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Comparison of the Genome Sequences of “Candidatus Portiera aleyrodidarum” Primary Endosymbionts of the Whitefly Bemisia tabaci B and Q Biotypes

Citation
Jiang et al. (2013). Applied and Environmental Microbiology 79 (5)
Names
Ca. Portiera aleyrodidarum
Abstract
ABSTRACT “ Candidatus Portiera aleyrodidarum” is the primary endosymbiont of whiteflies. We report two complete genome sequences of this bacterium from the worldwide invasive B and Q biotypes of the whitefly Bemisia tabaci . Differences in the two genome sequences may add insights into the complex differences in the biology of both biotypes.

Molecular Characterization of “Candidatus Parilichlamydia carangidicola,” a Novel Chlamydia-Like Epitheliocystis Agent in Yellowtail Kingfish, Seriola lalandi (Valenciennes), and the Proposal of a New Family, “Candidatus Parilichlamydiaceae” fam. nov. (Order Chlamydiales)

Citation
Stride et al. (2013). Applied and Environmental Microbiology 79 (5)
Names
Ca. Parilichlamydiaceae Ca. Parilichlamydia carangidicola “Rhabdochlamydiaceae”
Abstract
ABSTRACTThree cohorts of farmed yellowtail kingfish (Seriola lalandi) from South Australia were examined forChlamydia-like organisms associated with epitheliocystis. To characterize the bacteria, 38 gill samples were processed for histopathology, electron microscopy, and 16S rRNA amplification, sequencing, and phylogenetic analysis. Microscopically, the presence of membrane-enclosed cysts was observed within the gill lamellae. Also observed was hyperplasia of the epithelial cells with cytoplasmi
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Nutrient requirements for growth of the extreme oligotroph ‘Candidatus Pelagibacter ubique’ HTCC1062 on a defined medium

Citation
Carini et al. (2013). The ISME Journal 7 (3)
Names
Pelagibacter ubiqueversans Ts
Abstract
Abstract Chemoheterotrophic marine bacteria of the SAR11 clade are Earth’s most abundant organisms. Following the first cultivation of a SAR11 bacterium, ‘Candidatus Pelagibacter ubique’ strain HTCC1062 (Ca. P. ubique) in 2002, unusual nutritional requirements were identified for reduced sulfur compounds and glycine or serine. These requirements were linked to genome streamlining resulting from selection for efficient resource utilization in nutrient-limited ocean habitats. Here w
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“Candidatus Hepatobacter penaei,” an Intracellular Pathogenic Enteric Bacterium in the Hepatopancreas of the Marine Shrimp Penaeus vannamei (Crustacea: Decapoda)

Citation
Nunan et al. (2013). Applied and Environmental Microbiology 79 (4)
Names
Hepatobacter penaei Ts Hepatobacter
Abstract
ABSTRACT The bacteria that cause necrotizing hepatopancreatitis in Penaeus vannamei adversely affect penaeid shrimp cultured in the western hemisphere. 16S rRNA and gyrase B gene analyses determined the taxonomic position of these bacteria. The name “ Candidatus Hepatobacter penaei” is proposed for these pathogenic bacteria, which are members of the Rickettsiales order.

Isolation of an aerobic sulfur oxidizer from the SUP05/Arctic96BD-19 clade

Citation
Marshall, Morris (2013). The ISME Journal 7 (2)
Names
Pseudothioglobus singularis Ts Pseudothioglobus Ca. Thioglobus singularis
Abstract
Abstract Bacteria from the uncultured SUP05/Arctic96BD-19 clade of gamma proteobacterial sulfur oxidizers (GSOs) have the genetic potential to oxidize reduced sulfur and fix carbon in the tissues of clams and mussels, in oxygen minimum zones and throughout the deep ocean (>200 m). Here, we report isolation of the first cultured representative from this GSO clade. Closely related cultures were obtained from surface waters in Puget Sound and from the deep chlorophyll maximum
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