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Authors Darby

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Darby, Alistair C.


Publications
5

CitationNamesAbstract
Genomic diversity across the Rickettsia and ‘Candidatus Megaira’ genera and proposal of genus status for the Torix group Davison et al. (2022). Nature Communications 13 (1) “Megaira” “Tisiphia” “Megaera”
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Multi-locus sequence typing of Ixodes ricinus and its symbiont Candidatus Midichloria mitochondrii across Europe reveals evidence of local co-cladogenesis in Scotland Al-Khafaji et al. (2019). Ticks and Tick-borne Diseases 10 (1) Ca. Midichloria mitochondrii
Draft Genome Sequence of the Bactrocera oleae Symbiont “ Candidatus Erwinia dacicola” Blow et al. (2016). Genome Announcements 4 (5) Ca. Erwinia dacicola
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Genome sequence of Candidatus Arsenophonus lipopteni, the exclusive symbiont of a blood sucking fly Lipoptena cervi (Diptera: Hippoboscidae) Nováková et al. (2016). Standards in Genomic Sciences 11 (1) Ca. Arsenophonus lipopteni
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Genome Sequence for “Candidatus Mycoplasma haemominutum,” a Low-Pathogenicity Hemoplasma Species Barker et al. (2012). Journal of Bacteriology 194 (4) Ca. Mycoplasma haemominutum
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Genomic diversity across the Rickettsia and ‘Candidatus Megaira’ genera and proposal of genus status for the Torix group
AbstractMembers of the bacterial genusRickettsiawere originally identified as causative agents of vector-borne diseases in mammals. However, manyRickettsiaspecies are arthropod symbionts and close relatives of ‘CandidatusMegaira’, which are symbiotic associates of microeukaryotes. Here, we clarify the evolutionary relationships between these organisms by assembling 26 genomes ofRickettsiaspecies from understudied groups, including the Torix group, and two genomes of ‘Ca. Megaira’ from various insects and microeukaryotes. Our analyses of the new genomes, in comparison with previously described ones, indicate that the accessory genome diversity and broad host range of TorixRickettsiaare comparable to those of all otherRickettsiacombined. Therefore, the Torix clade may play unrecognized roles in invertebrate biology and physiology. We argue this clade should be given its own genus status, for which we propose the name ‘CandidatusTisiphia’.
Draft Genome Sequence of the Bactrocera oleae Symbiont “ Candidatus Erwinia dacicola”
ABSTRACT “ Candidatus Erwinia dacicola” is a Gammaproteobacterium that forms a symbiotic association with the agricultural pest Bactrocera oleae . Here, we present a 2.1-Mb draft hybrid genome assembly for “ Ca. Erwinia dacicola” generated from single-cell and metagenomic data.
Genome sequence of Candidatus Arsenophonus lipopteni, the exclusive symbiont of a blood sucking fly Lipoptena cervi (Diptera: Hippoboscidae)
AbstractCandidatus Arsenophonus lipopteni (Enterobacteriaceae, Gammaproteobacteria) is an obligate intracellular symbiont of the blood feeding deer ked, Lipoptena cervi (Diptera: Hippoboscidae). The bacteria reside in specialized cells derived from host gut epithelia (bacteriocytes) forming a compact symbiotic organ (bacteriome). Compared to the closely related complex symbiotic system in the sheep ked, involving four bacterial species, Lipoptena cervi appears to maintain its symbiosis exclusively with Ca. Arsenophonus lipopteni. The genome of 836,724 bp and 24.8 % GC content codes for 667 predicted functional genes and bears the common characteristics of sequence economization coupled with obligate host-dependent lifestyle, e.g. reduced number of RNA genes along with the rRNA operon split, and strongly reduced metabolic capacity. Particularly, biosynthetic capacity for B vitamins possibly supplementing the host diet is highly compromised in Ca. Arsenophonus lipopteni. The gene sets are complete only for riboflavin (B2), pyridoxine (B6) and biotin (B7) implying the content of some B vitamins, e.g. thiamin, in the deer blood might be sufficient for the insect metabolic needs. The phylogenetic position within the spectrum of known Arsenophonus genomes and fundamental genomic features of Ca. Arsenophonus lipopteni indicate the obligate character of this symbiosis and its independent origin within Hippoboscidae.
Genome Sequence for “Candidatus Mycoplasma haemominutum,” a Low-Pathogenicity Hemoplasma Species
ABSTRACT We present the genome sequence of “ Candidatus Mycoplasma haemominutum” strain Birmingham 1, a low-pathogenicity feline hemoplasma strain.
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