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Authors Koga

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Koga, Ryuichi


Publications
15

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CitationNamesAbstract
Evolution of symbiotic organs and endosymbionts in lygaeid stinkbugs Matsuura et al. (2012). The ISME Journal 6 (2) “Schneideria nysicola” “Kleidoceria schneideri”
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“CandidatusCurculioniphilus buchneri,” a Novel Clade of Bacterial Endocellular Symbionts from Weevils of the GenusCurculio Toju et al. (2010). Applied and Environmental Microbiology 76 (1) “Curculioniphilus buchneri”
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Intestinal Endocellular Symbiotic Bacterium of the Macaque Louse Pedicinus obtusus : Distinct Endosymbiont Origins in Anthropoid Primate Lice and the Old World Monkey Louse Fukatsu et al. (2009). Applied and Environmental Microbiology 75 (11) “Puchtella pedicinophila”
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Symbiotic Bacteria Associated with Stomach Discs of Human Lice Sasaki-Fukatsu et al. (2006). Applied and Environmental Microbiology 72 (11) Ca. Riesia pediculicola
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Evolutionary Relationships of Three New Species of Enterobacteriaceae Living as Symbionts of Aphids and Other Insects Moran et al. (2005). Applied and Environmental Microbiology 71 (6) Ca. Regiella insecticola Ca. Hamiltonella defensa Serratia symbiotica
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Evolution of symbiotic organs and endosymbionts in lygaeid stinkbugs
Abstract We investigated seed bugs of the genus Nysius (Insecta: Hemiptera: Lygaeidae) for their symbiotic bacteria. From all the samples representing 4 species, 18 populations and 281 individuals, specific bacterial 16S rRNA gene sequences were consistently identified, which formed a distinct clade in the Gammaproteobacteria. In situ hybridization showed that the bacterium was endocellularly localized in a pair of large bacteriomes that were amorphous in shape, deep red in color, and in association with gonads. In the ovary of adult females, the endosymbiont was also localized in the ‘infection zone’ in the middle of each germarium and in the ‘symbiont ball’ at the anterior pole of each oocyte, indicating vertical transmission of the endosymbiont through the ovarial passage. Phylogenetic analyses based on bacterial 16S rRNA, groEL and gyrB genes consistently supported a coherent monophyly of the Nysius endosymbionts. The possibility of a sister relationship to ‘Candidatus Kleidoceria schneideri’, the bacteriome-associated endosymbiont of a lygaeid bug Kleidocerys resedae, was statistically rejected, indicating independent evolutionary origins of the endosymbionts in the Lygaeidae. The endosymbiont genes consistently exhibited AT-biased nucleotide compositions and accelerated rates of molecular evolution, and the endosymbiont genome was only 0.6 Mb in size. The endosymbiont phylogeny was congruent with the host insect phylogeny, suggesting strict vertical transmission and host–symbiont co-speciation over evolutionary time. Based on these results, we discuss the evolution of bacteriomes and endosymbionts in the Heteroptera, most members of which are associated with gut symbiotic bacteria. The designation ‘Candidatus Schneideria nysicola’ is proposed for the endosymbiont clade.
“CandidatusCurculioniphilus buchneri,” a Novel Clade of Bacterial Endocellular Symbionts from Weevils of the GenusCurculio
ABSTRACTHere we investigated the bacterial endosymbionts of weevils of the genusCurculio. From all four species ofCurculioweevils examined, a novel group of bacterial gene sequences were consistently identified. Molecular phylogenetic analyses demonstrated that the sequences formed a distinct clade in theGammaproteobacteria, which was not related to previously known groups of weevil endosymbionts such asNardonellaspp. andSodalis-allied symbionts. In situ hybridization revealed that the bacterium was intracellularly harbored in a bacteriome associated with larval midgut. In adult females, the bacterium was localized in the germalia at the tip of each overiole, suggesting vertical transmission via ovarial passage. Diagnostic PCR surveys detected high prevalence of the bacterial infection in natural host populations. Electron microscopy identified the reduced cell wall of the bacterial cells, and the bacterial genes exhibited AT-biased nucleotide composition and accelerated molecular evolution, which are suggestive of a long-lasting endosymbiotic association. On the basis of these results, we conclude that the novel endocellular bacteria represent the primary symbiont ofCurculioweevils and proposed the designation “CandidatusCurculioniphilus buchneri.” In addition to “Ca.Curculioniphilus,” we identifiedSodalis-allied gammaproteobacterial endosymbionts from the chestnut weevil,Curculio sikkimensis, which exhibited partial infection frequencies in host insect populations and neither AT-biased nucleotide composition nor accelerated molecular evolution. We suggest that suchSodalis-allied secondary symbionts in weevils might provide a potential source for symbiont replacements, as has occurred in an ancestor ofSitophilusgrain weevils.
Intestinal Endocellular Symbiotic Bacterium of the Macaque Louse Pedicinus obtusus : Distinct Endosymbiont Origins in Anthropoid Primate Lice and the Old World Monkey Louse
ABSTRACT A symbiotic bacterium of the macaque louse, Pedicinus obtusus , was characterized. The symbiont constituted a gammaproteobacterial lineage distinct from the symbionts of anthropoid primate lice, localized in the midgut epithelium and the ovaries and exhibiting AT-biased genes and accelerated molecular evolution. The designation “ Candidatus Puchtella pedicinophila” was proposed for it.
Symbiotic Bacteria Associated with Stomach Discs of Human Lice
ABSTRACT The symbiotic bacteria associated with the stomach disc, a large aggregate of bacteriocytes on the ventral side of the midgut, of human body and head lice were characterized. Molecular phylogenetic analysis of 16S rRNA gene sequences showed that the symbionts formed a distinct and well-defined clade in the Gammaproteobacteria . The sequences exhibited AT-biased nucleotide composition and accelerated molecular evolution. In situ hybridization revealed that in nymphs and adult males, the symbiont was localized in the stomach disc, while in adult females, the symbiont was not in the stomach disc but in the lateral oviducts and the posterior pole of the oocytes due to female-specific symbiont migration. We propose the designation “ Candidatus Riesia pediculicola” for the louse symbionts.
Evolutionary Relationships of Three New Species of Enterobacteriaceae Living as Symbionts of Aphids and Other Insects
ABSTRACT Ecological studies on three bacterial lineages symbiotic in aphids have shown that they impose a variety of effects on their hosts, including resistance to parasitoids and tolerance to heat stress. Phylogenetic analyses of partial sequences of gyrB and recA are consistent with previous analyses limited to 16S rRNA gene sequences and yield improved confidence of the evolutionary relationships of these symbionts. All three symbionts are in the Enterobacteriaceae . One of the symbionts, here given the provisional designation “ Candidatus Serratia symbiotica,” is a Serratia species that has acquired a symbiotic lifestyle. The other two symbionts, here designated “ Candidatus Hamiltonella defensa” and “ Candidatus Regiella insecticola,” are sister groups to one another and together show a relationship to species of Photorhabdus .
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