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A transcriptional cycle suited to daytime N2 fixation in the unicellular cyanobacterium Candidatus Atelocyanobacterium thalassa (UCYN-A)

Citation
Muñoz-Marin et al. (2018).
Names
Ca. Atelocyanobacterium thalassa
Abstract
AbstractThe symbiosis between a marine alga and a N2-fixing cyanobacterium (UCYN-A) is geographically widespread in the oceans and is important in the marine N cycle. UCYN-A is uncultivated, and is an unusual unicellular cyanobacterium because it lacks many metabolic functions, including oxygenic photosynthesis and carbon fixation, which are typical in cyanobacteria. It is now presumed to be an obligate symbiont of haptophytes closely related to Braarudosphaera bigelowii. N2-fìxing cyanobacteria
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Revealing metabolic flexibility ofCandidatusAccumulibacter phosphatis through redox cofactor analysis and metabolic network modeling

Citation
da Silva et al. (2018).
Names
“Accumulibacter phosphatis”
Abstract
ABSTRACTEnvironmental fluctuations in the availability of nutrients lead to intricate metabolic strategies.CandidatusAccumulibacter phosphatis, a polyphosphate accumulating organism (PAO) responsible for enhanced biological phosphorus removal (EBPR) from wastewater treatment systems, is prevalent in aerobic/anaerobic environments. While the overall metabolic traits of these bacteria are well described, the inexistence of isolates has led to controversial conclusions on the metabolic pathways use
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Prevalence of a ‘Candidatus Phytoplasma solani’ strain, so far associated only with other hosts, in Bois Noir‐affected grapevines within Tuscan vineyards

Citation
Pierro et al. (2018). Annals of Applied Biology 173 (3)
Names
Ca. Phytoplasma solani
Abstract
Due to its complex epidemiological cycle, including several polyphagous insect vectors and host plants, and the absence of efficient control strategies, Bois Noir (BN) disease of grapevine is encroaching wider territories in the main viticultural areas worldwide. Molecular approaches allowed to increase the knowledge about its etiological agent (Bois Noir phytoplasma, BNp; ‘Candidatus Phytoplasma solani’ species), revealing interesting features concerning BNp population structure and dynamics an
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Draft Genome Sequence of “ Candidatus Moanabacter tarae,” Representing a Novel Marine Verrucomicrobial Lineage

Citation
Vosseberg et al. (2018). Microbiology Resource Announcements 7 (15)
Names
Ca. Moanabacter tarae
Abstract
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.