Literature DB >> 21890733

Proposal to reclassify Brenneria quercina (Hildebrand and Schroth 1967) Hauben et al. 1999 into a new genus, Lonsdalea gen. nov., as Lonsdalea quercina comb. nov., descriptions of Lonsdalea quercina subsp. quercina comb. nov., Lonsdalea quercina subsp. iberica subsp. nov. and Lonsdalea quercina subsp. britannica subsp. nov., emendation of the description of the genus Brenneria, reclassification of Dickeya dieffenbachiae as Dickeya dadantii subsp. dieffenbachiae comb. nov., and emendation of the description of Dickeya dadantii.

Carrie L Brady1, Ilse Cleenwerck1, Sandra Denman2, Stephanus N Venter3, Pablo Rodríguez-Palenzuela4, Teresa A Coutinho3, Paul De Vos1.   

Abstract

Bacterial isolates from oak trees in Spain and Britain, showing symptoms of bark canker and Acute Oak Decline (AOD), respectively, were examined by a polyphasic approach. Both 16S rRNA gene sequencing and multilocus sequence analysis (MLSA), based on partial sequences of gyrB, rpoB, infB and atpD genes, revealed that the isolates were separated into two genetic groups according to their origin. Their closest phylogenetic relative was Brenneria quercina, the causal agent of drippy nut disease of oak, which clustered distant to the other species of the genus Brenneria. MLSA data for species of the genera Brenneria, Pectobacterium, Dickeya, Erwinia, Pantoea and Samsonia confirmed the polyphyletic nature of the genus Brenneria and indicated synonymy of Dickeya dadantii and Dickeya dieffenbachiae. DNA-DNA hybridization experiments confirmed this synonymy and also revealed DNA-DNA relatedness values of 58-73% between the new oak isolates and B. quercina. Phenotypic and/or chemotaxonomic methods allowed B. quercina and the two genetic groups of new oak isolates to be discriminated from other recognized species of the genus Brenneria and from members of the closely related genera Dickeya, Pectobacterium and Samsonia. Based on the data obtained, the following taxonomic proposals are made: (1) reclassification of B. quercina as the type species of a novel genus, Lonsdalea gen. nov., as Lonsdalea quercina comb. nov. (type strain LMG 2724(T)=ATCC 29281(T)=CCUG 48867(T)=CFBP 3617(T)=CIP 105201(T)=DSM 4561(T)=ICMP 1845(T)), (2) classification of the oak isolates as Lonsdalea quercina subsp. iberica subsp. nov. (type strain LMG26264(T)=NCPPB 4490(T)) and Lonsdalea quercina subsp. britannica subsp. nov. (type strain LMG 26267(T)=NCPPB 4481(T)) and leading to the automatic creation of Lonsdalea quercina subsp. quercina subsp. nov. (type strain LMG 2724(T)=ATCC 29281(T)), (3) emendation of the description of the genus Brenneria, and (4) reclassification of Dickeya dieffenbachiae as Dickeya dadantii subsp. dieffenbachiae comb. nov. (type strain LMG 25992(T)=CFBP 2051(T)), with the automatic creation of Dickeya dadantii subsp. dadantii subsp. nov. (type strain LMG 25991(T)=CFBP 1269(T)).

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Year:  2011        PMID: 21890733     DOI: 10.1099/ijs.0.035055-0

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


  32 in total

1.  Conventional and real-time PCRs for detection of Erwinia piriflorinigrans allow its distinction from the fire blight pathogen, Erwinia amylovora.

Authors:  Silvia Barbé; Edson Bertolini; Montserrat Roselló; Pablo Llop; María M López
Journal:  Appl Environ Microbiol       Date:  2014-02-07       Impact factor: 4.792

2.  Affinibrenneria salicis gen. nov. sp. nov. isolated from Salix matsudana bark canker.

Authors:  Dan-Ran Bian; Han Xue; Guang-Ming Wang; Chun-Gen Piao; Yong Li
Journal:  Arch Microbiol       Date:  2021-04-26       Impact factor: 2.552

3.  Detection, identification and differentiation of Pectobacterium and Dickeya species causing potato blackleg and tuber soft rot: a review.

Authors:  R Czajkowski; McM Pérombelon; S Jafra; E Lojkowska; M Potrykus; Jm van der Wolf; W Sledz
Journal:  Ann Appl Biol       Date:  2014-10-27       Impact factor: 2.750

4.  Draft Genome Sequences of Dickeya sp. Isolates B16 (NIB Z 2098) and S1 (NIB Z 2099) Causing Soft Rot of Phalaenopsis Orchids.

Authors:  Špela Alič; Tina Naglič; Pablo Llop; Nataša Toplak; Simon Koren; Maja Ravnikar; Tanja Dreo
Journal:  Genome Announc       Date:  2015-09-10

5.  Draft Genome Sequences of Four Dickeya dianthicola and Four Dickeya solani Strains.

Authors:  Leighton Pritchard; Sonia Humphris; Steve Baeyen; Martine Maes; Johan Van Vaerenbergh; John Elphinstone; Gerry Saddler; Ian Toth
Journal:  Genome Announc       Date:  2013-07-25

6.  Genome Sequences of Strain ATCC 29281 and Pin and Northern Red Oak Isolates of Lonsdalea quercina subsp. quercina.

Authors:  Jorge Ibarra Caballero; Marcelo M Zerillo; Jacob Snelling; Whitney Cranshaw; Christina Boucher; Ned Tisserat
Journal:  Genome Announc       Date:  2014-06-12

7.  Construction of Specific Primers for Rapid Detection of South African Exportable Vegetable Macergens.

Authors:  Bukola Rhoda Aremu; Olubukola Oluranti Babalola
Journal:  Int J Environ Res Public Health       Date:  2015-09-30       Impact factor: 3.390

8.  Sequence diversity in the Dickeya fliC gene: phylogeny of the Dickeya genus and TaqMan® PCR for 'D. solani', new biovar 3 variant on potato in Europe.

Authors:  Johan Van Vaerenbergh; Steve Baeyen; Paul De Vos; Martine Maes
Journal:  PLoS One       Date:  2012-05-03       Impact factor: 3.240

9.  The complete genome sequence of Dickeya zeae EC1 reveals substantial divergence from other Dickeya strains and species.

Authors:  Jianuan Zhou; Yingying Cheng; Mingfa Lv; Lisheng Liao; Yufan Chen; Yanfang Gu; Shiyin Liu; Zide Jiang; Yuanyan Xiong; Lianhui Zhang
Journal:  BMC Genomics       Date:  2015-08-04       Impact factor: 3.969

10.  Draft genome sequences of 17 isolates of the plant pathogenic bacterium dickeya.

Authors:  Leighton Pritchard; Sonia Humphris; Gerry S Saddler; John G Elphinstone; Minna Pirhonen; Ian K Toth
Journal:  Genome Announc       Date:  2013-11-21
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