Number of the records: 1  

Both epiphytic and endophytic strains of Rhodococcus fascians influence transporter gene expression and cytokinins in infected Pisum sativum L. seedlings

  1. 1.
    SYSNO ASEP0489587
    Document TypeJ - Journal Article
    R&D Document TypeJournal Article
    Subsidiary JČlánek ve WOS
    TitleBoth epiphytic and endophytic strains of Rhodococcus fascians influence transporter gene expression and cytokinins in infected Pisum sativum L. seedlings
    Author(s) Dhandapani, P. (NZ)
    Song, J. (US)
    Novák, Ondřej (UEB-Q) RID, ORCID, SAI
    Jameson, P. E. (NZ)
    Number of authors4
    Source TitlePlant Growth Regulation. - : Springer - ISSN 0167-6903
    Roč. 85, č. 2 (2018), s. 231-242
    Number of pages12 s.
    Languageeng - English
    CountryNL - Netherlands
    KeywordsAmino acid transporter ; Cell wall invertase ; Cytokinin ; Pea ; Rhodococcus fascians ; Sucrose transporter ; Sugar Will Eventually be Exported Transporter (SWEET)
    Subject RIVEF - Botanics
    OECD categoryPlant sciences, botany
    R&D ProjectsGA17-06613S GA ČR - Czech Science Foundation (CSF)
    Institutional supportUEB-Q - RVO:61389030
    UT WOS000431424800006
    EID SCOPUS85044084963
    DOI10.1007/s10725-018-0387-3
    AnnotationSome strains of the soil bacterium Rhodococcus fascians maintain an epiphytic life style while others become endophytic. Virulent, endophytic strains cause multiple shoot growth and inhibit root growth of seed-inoculated Pisum sativum L. We were interested in assessing, at the molecular level, the impact of strains of contrasting niche on the emerging shoots and roots of inoculated seeds. The presence of R. fascians was monitored microscopically, endogenous cytokinin and chlorophyll levels were measured, and the expression of genes monitored by RT-qPCR. The expression of the pea sugar transporter genes (SWEET and SUT), amino acid (AAP) transporters and cell wall invertase gene family members, as well as expression of plant and bacterial cytokinin biosynthesis (IPT), activation (LOG) and degradation (CKX) genes were monitored. Both the virulent strain and the epiphytic strain affected the expression of the transporter genes, with less obvious differences between the strains on the shoot compared with the effect on the root. Strong expression of the R. fascians genes, RfIPT, RfLOG and RfCKX, in pea seedlings at 15 days post inoculation was mirrored by increased expression of transporter gene family members in the plant. However, the elevated levels of isopentenyl adenine-type and zeatin-type cytokinins were not consistently associated with the virulent strain. In conclusion, while both the virulent strain and the epiphytic strain impacted the expression of transporter genes in the shoots and roots, only the virulent strain affected morphology. The inhibited root growth, the greening of the roots, and the expressi on of the pea response regulators in the infected roots are indicative of a response to cytokinin, but a role for the ‘classical’ cytokinins as virulence determinants was not established.
    WorkplaceInstitute of Experimental Botany
    ContactDavid Klier, knihovna@ueb.cas.cz, Tel.: 220 390 469
    Year of Publishing2019
Number of the records: 1  

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