Literature DB >> 27461253

Evidence for an Opportunistic and Endophytic Lifestyle of the Bursaphelenchus xylophilus-Associated Bacteria Serratia marcescens PWN146 Isolated from Wilting Pinus pinaster.

Cláudia S L Vicente1,2, Francisco X Nascimento3,4, Pedro Barbosa3, Huei-Mien Ke5,6, Isheng J Tsai5, Tomonori Hirao7, Peter J A Cock8, Taisei Kikuchi9, Koichi Hasegawa10, Manuel Mota3,11.   

Abstract

Pine wilt disease (PWD) results from the interaction of three elements: the pathogenic nematode, Bursaphelenchus xylophilus; the insect-vector, Monochamus sp.; and the host tree, mostly Pinus species. Bacteria isolated from B. xylophilus may be a fourth element in this complex disease. However, the precise role of bacteria in this interaction is unclear as both plant-beneficial and as plant-pathogenic bacteria may be associated with PWD. Using whole genome sequencing and phenotypic characterization, we were able to investigate in more detail the genetic repertoire of Serratia marcescens PWN146, a bacterium associated with B. xylophilus. We show clear evidence that S. marcescens PWN146 is able to withstand and colonize the plant environment, without having any deleterious effects towards a susceptible host (Pinus thunbergii), B. xylophilus nor to the nematode model C. elegans. This bacterium is able to tolerate growth in presence of xenobiotic/organic compounds, and use phenylacetic acid as carbon source. Furthermore, we present a detailed list of S. marcescens PWN146 potentials to interfere with plant metabolism via hormonal pathways and/or nutritional acquisition, and to be competitive against other bacteria and/or fungi in terms of resource acquisition or production of antimicrobial compounds. Further investigation is required to understand the role of bacteria in PWD. We have now reinforced the theory that B. xylophilus-associated bacteria may have a plant origin.

Entities:  

Keywords:  Bursaphelenchus xylophilus; Endophyte; Nematode; Pine wilt disease; Serratia marcescens

Mesh:

Substances:

Year:  2016        PMID: 27461253     DOI: 10.1007/s00248-016-0820-y

Source DB:  PubMed          Journal:  Microb Ecol        ISSN: 0095-3628            Impact factor:   4.552


  68 in total

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Authors:  Filipe P Matteoli; Hemanoel Passarelli-Araujo; Régis Josué A Reis; Letícia O da Rocha; Emanuel M de Souza; L Aravind; Fabio L Olivares; Thiago M Venancio
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3.  Characterization of bacterial communities associated with the pinewood nematode insect vector Monochamus alternatus Hope and the host tree Pinus massoniana.

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5.  Microhabitat Governs the Microbiota of the Pinewood Nematode and Its Vector Beetle: Implication for the Prevalence of Pine Wilt Disease.

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6.  The Virulence of S. marcescens Strains Isolated From Contaminated Blood Products Is Divergent in the C. elegans Infection Model.

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  7 in total

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