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S4 Fig. Induction of the type 3 secretion system (T3SS) by basic pH in all natural water sources tested

AutorPedro-Jové, Roger de CSIC ORCID; Corral, Jordi; Rocafort, Mercedes; Puigvert, Marina CSIC ORCID; Azam, Fàtima Latif; Vandecaveye, Agustina; Macho, Alberto P.; Balsalobre, Carlos; Coll, Núria S. CSIC ORCID; Orellano, Elena G.; Valls, Marc CSIC ORCID
Palabras claveProviding valuable insights
Potential disease outbreaks
Non culturable state
Late xylem colonization
Diverse ecological niches
Potential disease outbreaks
Bacterial wilt disease
Bacterial pathogens exhibit
Bacterial plant pathogen
Oxidative stress response
Investigate pathogen adaptation
div >< p
Life cycle allow
Ralstonia solanacearum </
Life cycle
Solanacearum </
Bacterial survival
Bacterial reservoirs
Upregulated stress
Glyoxylate cycle
r </
Planta </
vbnc ).
Two environments
t3ss induction
t3ss ).
Remarkable ability
Regulator oxyr
Premature induction
Phenylacetate catabolism
Mechanisms enabling
Intriguing induction
Gene expression
Function experiments
Environments occupied
Downregulated virulence
Deletion cause
Culturability associated
Control dissemination
Causing agent
Catalase katg
Alkaline ph
Fecha de publicación19-dic-2023
EditorFigshare
CitaciónPedro-Jové, Roger de ; Corral, Jordi ; Rocafort, Mercedes ; Puigvert, Marina ; Azam, Fàtima Latif ; Vandecaveye, Agustina ; Macho, Alberto P. ; Balsalobre, Carlos ; Coll, Núria S. ; Orellano, Elena G. ; Valls, Marc; 2023; "S4 Fig. Induction of the type 3 secretion system (T3SS) by basic pH in all natural water sources tested [Dataset]"; Figshare; https://doi.org/10.1371/journal.ppat.1011888.s011
DescripciónTime-course expression of prhG, hrpB and hrpY reporter strains at native basic (A to F) or neutral pH (G) and after pH neutralisation with HCl or alkalinisation with KOH. For each time point, luminescence was measured (RLU) and normalised by OD600. All values were divided by 1000 to facilitate visualisation. Letters indicate the water sources detailed in the methods section.
Versión del editorhttps://doi.org/10.1371/journal.ppat.1011888.s011
URIhttp://hdl.handle.net/10261/343488
DOI10.1371/journal.ppat.1011888.s011
ReferenciasPedro-Jové, Roger de; Corral, Jordi; Rocafort, Mercedes; Puigvert, Marina; Azam, Fàtima Latif; Vandecaveye, Agustina; Macho, Alberto P.; Balsalobre, Carlos; Coll, Núria S.; Orellano, Elena G.; Valls, Marc. Gene expression changes throughout the life cycle allow a bacterial plant pathogen to persist in diverse environmental habitats. https://doi.org/10.1371/journal.ppat.1011888. http://hdl.handle.net/10261/343184
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