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Carlow, C. K. S.

Publications and source records attributed to Carlow, C. K. S..

2 recordsLinked to original sources

Metagenomics of culture isolates and insect tissue illuminate the evolution of Wolbachia, Rickettsia and Bartonella symbionts in Ctenocephalides spp. fleas

While fleas are often perceived simply as a biting nuisance and cause of allergic dermatitis, they represent important disease vectors worldwide, especially for bacterial zoonoses such as plague (transmitted by rodent fleas) and some of the rickettsioses and bartonelloses. The cosmopolitan cat (Ctenocephalides felis) and dog (C. canis) fleas, as well as C. orientis (restricted to tropical and subtropical Asia), breed in human dwellings and are vectors of cat-scratch fever (caused by Bartonella spp.) and Rickettsia spp. of the so-called "transitional group". The latter includes R. felis (agent of flea-borne spotted fever) and R. asembonensis, an emerging pathogen. The relatively depauperate flea microbiome can also contain arthropod-specific endosymbionts, including a diverse range of Wolbachia strains. Here, we present circularized genome assemblies for two C. orientis-associated pathogens (Bartonella clarridgeiae and R. asembonensis) from Malaysia, a novel Wolbachia strain (wCori), and the C. orientis mitochondrion; all obtained by direct metagenomic sequencing of flea tissues. Moreover, we isolated two Wolbachia strains from Malaysian C. felis into tick cell culture and recovered circularized genome assemblies for both, one of which (wCfeF) is newly sequenced. We demonstrate that the three Wolbachia strains are representatives of different major clades ("supergroups"), two of which appear to be flea-specific. These Wolbachia genomes exhibit unique combinations of features associated with reproductive parasitism or mutualism, including prophage WO, cytoplasmic incompatibility factors, and the biotin operon of obligate intracellular microbes. The first circularized assembly for R. asembonensis includes a plasmid with a markedly different structure and gene content compared to the published plasmid; moreover, this novel plasmid was also detected in cat flea metagenomes from the US. Analysis of loci under positive selection in the transitional group revealed genes involved in host-pathogen interactions that may facilitate host switching. Finally, the first B. clarridgeiae genome from Asia exhibited largescale genome stability compared to isolates from other continents, except for SNPs in regions predicted to mediate interactions with the vertebrate host. These findings highlight the paucity of data on the genomic diversity of Ctenocephalides-associated bacteria and raise questions regarding how interactions between members of the flea microbiome might influence vector competence. Impact statementWhile fleas are vectors for several globally-distributed bacterial zoonoses, including plague, murine typhus, cat-scratch fever, and flea-borne spotted fever, data on the genomic diversity of the etiological agents of these diseases and other members of the flea microbiome are scant. Here, we focused on Ctenocephalides spp. fleas associated with dogs and cats in Malaysia, a region where flea microbiome data are particularly sparse. Using a combination of direct metagenomic sequencing of flea tissues coupled with culture isolation and sequencing of infected cell lines, we obtained the first genomes for a cat-scratch agent (Bartonella clarridgeiae) and an emerging human pathogen (Rickettsia asembonensis) from Asia, as well as genomes for three different Wolbachia endosymbiont strains and the first mitochondrial genome for Ctenocephalides orientis. The pathogen genomes reveal evidence of selection in genes involved in host-pathogen interactions and in the case of R. asembonensis, a novel plasmid genome was obtained. Two of the Wolbachia genomes are entirely novel and exhibit highly unusual combinations of features associated with potential reproductive manipulations and mutualistic roles. Our findings highlight major gaps in our understanding of flea microbiome diversity worldwide, with implications for the emergence of bacterial pathogens transmitted by these ubiquitous ectoparasites associated with human dwellings. Data summarySequencing reads and genome assemblies produced in study have been deposited in NCBI Genbank under BioProject accession PRJNA909216. Accession numbers for symbiont genomes: wCfeF (CP116767), wCfeJ (CP116768), wCori (CP116769), Rickettsia asembonensis str. Perak (CP116496), pRAS02 (CP116495) and Bartonella clarridgeiae str. Perak (CP116497). Ctenocephalides orientis mitochondrial assembly was deposited with the accession number OQ383237. The authors confirm all supporting data, code and protocols have been provided within 86 the article or through supplementary data files.

genomics↗

Genomes of the human filarial parasites Mansonella perstans and Mansonella ozzardi

The filarial parasites Mansonella ozzardi and Mansonella perstans, causative agents of mansonellosis, infect hundreds of millions of people worldwide, yet remain among the most understudied of the human filarial pathogens. M. ozzardi is highly prevalent in Latin American countries and Caribbean Islands, while M. perstans is predominantly found in sub-Saharan Africa as well as in a few areas in South America. In addition to the differences in their geographical distribution, the two parasites are transmitted by different insect vectors, as well as exhibit differences in their responses to commonly used anthelminthic drugs. The lack of genome information has hindered investigations into the biology and evolution of Mansonella parasites and understanding the molecular basis of the clinical differences between species. In the current study, high quality genomes of two independent clinical isolates of M. perstans from Cameroon and two M. ozzardi isolates one from Brazil and one from Venezuela are reported. The genomes are approximately 76 Mb in size, encode about 10,000 genes each, and are largely complete based on BUSCO scores of about 90%, similar to other completed filarial genomes. These sequences represent the first genomes from Mansonella parasites and enabled a comparative genomic analysis of the similarities and differences between Mansonella and other filarial parasites. Horizontal DNA transfers (HDT) from mitochondria (nuMTs) as well as transfers from genomes of endosymbiotic Wolbachia bacteria (nuWTs) to the host nuclear genome were identified and analyzed. Sequence comparisons and phylogenetic analysis of known targets of anti-filarial drugs diethylcarbamazine (DEC), ivermectin and mebendazole revealed that all known target genes were present in both species, except for the DEC target encoded by gon-2 gene, which is fragmented in genome assemblies from both M. ozzardi isolates. These new reference genome sequences will provide a valuable resource for further studies on biology, symbiosis, evolution and drug discovery.

genomics↗