The complete genome sequence of the crayfish pathogen Candidatus Paracoxiella cheracis n.g. n.sp. provides insight into pathogenesis and the phylogeny of the Coxiellaceae family

Journal Publication ResearchOnline@JCU
Ingle, Danielle J.;Walsh, Calum J.;Samuel, Genevieve R.;Wick, Ryan R.;Davidovich, Nadav;Fiocchi, Eleonora;Judd, Louise M.;Elliman, Jennifer;Owens, Leigh;Stinear, Timothy P.;Basso, Andrea;Pretto, Tobia;Newton, Hayley J.
Abstract

he Coxiellaceae bacterial family, within the order Legionellales, is defined by a collection of poorly characterized obligate intracellular bacteria. The zoonotic pathogen and causative agent of human Q fever, Coxiella burnetii, represents the best-characterized member of this family. Coxiellaceae establish replicative niches within diverse host cells and rely on their host for survival, making them challenging to isolate and cultivate within a laboratory setting. Here, we describe a new genus within the Coxiellaceae family that has been previously shown to infect economically significant freshwater crayfish. Using culture-independent long-read metagenomics, we reconstructed the complete genome of this novel organism and demonstrate that the species previously referred to as Candidatus Coxiella cheraxi represents a novel genus within this family, herein denoted Candidatus Paracoxiella cheracis. Interestingly, we demonstrate that Candidatus P. cheracis encodes a complete, putatively functional Dot/Icm type 4 secretion system that likely mediates the intracellular success of this pathogen. In silico analysis defined a unique repertoire of Dot/Icm effector proteins and highlighted homologs of several important C. burnetii effectors, including a homolog of CpeB that was demonstrated to be a Dot/Icm substrate in C. burnetii.

Journal

mSphere

Publication Name

mSphere

Volume

10

ISBN/ISSN

2379-5042

Edition

N/A

Issue

4

Pages Count

17

Location

N/A

Publisher

American Society for Microbiology

Publisher Url

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Publisher Location

N/A

Publish Date

N/A

Url

N/A

Date

N/A

EISSN

N/A

DOI

10.1128/msphere.01002-24