Literature DB >> 17329802

Taxonomic status of the intracellular bacterium Wolbachia pipientis.

N Lo1, C Paraskevopoulos2, K Bourtzis2, S L O'Neill3, J H Werren4, S R Bordenstein5, C Bandi6.   

Abstract

Wolbachia pipientis is a maternally inherited, intracellular bacterium found in more than 20 % of all insects, as well as numerous other arthropods and filarial nematodes. It has been the subject of a growing number of studies in recent decades, because of the remarkable effects it has on its arthropod hosts, its potential as a tool for biological control of arthropods of agricultural and medical importance and its use as a target for treatment of filariasis. W. pipientis was originally discovered in cells of the mosquito Culex pipiens and is the only formally described member of the genus. Molecular sequence-based studies have revealed a number of phylogenetically diverse strains of W. pipientis. Owing to uncertainty about whether W. pipientis comprises more than one species, researchers in the field now commonly refer to W. pipientis simply as Wolbachia. In this note, we briefly review higher-level phylogenetic and recombination studies of W. pipientis and propose that all the intracellular symbionts known to cluster closely with the type strain of W. pipientis, including those in the currently recognized supergroups (A-H), are officially given this name.

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Year:  2007        PMID: 17329802     DOI: 10.1099/ijs.0.64515-0

Source DB:  PubMed          Journal:  Int J Syst Evol Microbiol        ISSN: 1466-5026            Impact factor:   2.747


  65 in total

1.  Wolbachia and termite association: present status and future implications.

Authors:  Bipinchandra K Salunke; Rahul C Salunkhe; Milind S Patole; Yogesh S Shouche
Journal:  J Biosci       Date:  2010-06       Impact factor: 1.826

2.  Proteomic profiling of a robust Wolbachia infection in an Aedes albopictus mosquito cell line.

Authors:  Gerald D Baldridge; Abigail S Baldridge; Bruce A Witthuhn; LeeAnn Higgins; Todd W Markowski; Ann M Fallon
Journal:  Mol Microbiol       Date:  2014-09-22       Impact factor: 3.501

Review 3.  Why is Aedes aegypti Linnaeus so Successful as a Species?

Authors:  F D Carvalho; L A Moreira
Journal:  Neotrop Entomol       Date:  2017-04-11       Impact factor: 1.434

4.  Revisiting Wolbachia supergroup typing based on WSP: spurious lineages and discordance with MLST.

Authors:  Laura Baldo; John H Werren
Journal:  Curr Microbiol       Date:  2007-06-05       Impact factor: 2.188

5.  How diverse is the genus Wolbachia? Multiple-gene sequencing reveals a putatively new Wolbachia supergroup recovered from spider mites (Acari: Tetranychidae).

Authors:  Vera I D Ros; Vicki M Fleming; Edward J Feil; Johannes A J Breeuwer
Journal:  Appl Environ Microbiol       Date:  2008-12-19       Impact factor: 4.792

6.  The Wolbachia Symbiont: Here, There and Everywhere.

Authors:  Emilie Lefoulon; Jeremy M Foster; Alex Truchon; C K S Carlow; Barton E Slatko
Journal:  Results Probl Cell Differ       Date:  2020

7.  Phylogeny and Strain Typing of Wolbachia from Yamatotettix flavovittatus Matsumura Leafhoppers.

Authors:  Jureemart Wangkeeree; Piyatida Sanit; Jariya Roddee; Yupa Hanboonsong
Journal:  Curr Microbiol       Date:  2021-03-01       Impact factor: 2.188

8.  Transfection of feminizing Wolbachia endosymbionts of the butterfly, Eurema hecabe, into the cell culture and various immature stages of the silkmoth, Bombyx mori.

Authors:  Daisuke Kageyama; Satoko Narita; Hiroaki Noda
Journal:  Microb Ecol       Date:  2008-05-06       Impact factor: 4.552

9.  The Wolbachia endosymbiont as an anti-filarial nematode target.

Authors:  Barton E Slatko; Mark J Taylor; Jeremy M Foster
Journal:  Symbiosis       Date:  2010-06-05       Impact factor: 2.268

10.  Variation in antiviral protection mediated by different Wolbachia strains in Drosophila simulans.

Authors:  Sheree E Osborne; Yi San Leong; Scott L O'Neill; Karyn N Johnson
Journal:  PLoS Pathog       Date:  2009-11-13       Impact factor: 6.823

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