Number of the records: 1  

A new device for online nanoscale sampling and capillary electrophoresis analysis of plant sap composition

  1. 1.
    SYSNO ASEP0577615
    Document TypeA - Abstract
    R&D Document TypeThe record was not marked in the RIV
    R&D Document TypeNení vybrán druh dokumentu
    TitleA new device for online nanoscale sampling and capillary electrophoresis analysis of plant sap composition
    Author(s) Melicherová, Natália (UIACH-O)
    Gloser, V. (CZ)
    Skalák, J. (CZ)
    Trtílek, M. (CZ)
    Lavická, Jana (UIACH-O) ORCID, RID
    Foret, František (UIACH-O) RID, ORCID
    Number of authors7
    Source TitleCECE 2023. 18th International Interdisciplinary Meeting on Bioanalysis. - Brno : Ústav analytické chemie AV ČR, v. v. i., 2023 - ISBN 978-80-908154-0-7
    S. 37-37
    Number of pages1 s.
    Publication formOnline - E
    ActionCECE 2023. International Interdisciplinary Meeting on Bioanalysis /18./
    Event date23.10.2023 - 25.10.2023
    VEvent locationBrno
    CountryCZ - Czech Republic
    Event typeWRD
    Languageeng - English
    CountryCZ - Czech Republic
    Keywordscapillary electrophoresis ; plant sap ; sampling ; stress ; xylem
    Subject RIVCB - Analytical Chemistry, Separation
    OECD categoryAnalytical chemistry
    R&D ProjectsEF16_026/0008446 GA MŠMT - Ministry of Education, Youth and Sports (MEYS)
    Institutional supportUIACH-O - RVO:68081715
    AnnotationIn this work, an online sampling of plants combined with an efficient capillary electrophoresis (CE)-based method was developed and applied to study the kinetics of changes in the xylem sap composition and to assess plant fitness under stress conditions comprehensively [1,2]. A laboratory-built CE device was developed to provide online sampling and CE analysis of various ionogenic species in the plant sap during plant stress response. The short CE analysis time allows for capturing time-dependent kinetic changes in the living plant during the stress response. The developed device successfully monitored chloride, nitrate, and sulfate ions in the plant xylem during the salt stress or stress caused by nitrate deficiency.
    WorkplaceInstitute of Analytical Chemistry
    ContactIveta Drobníková, drobnikova@iach.cz, Tel.: 532 290 234
    Year of Publishing2024
    Electronic addresshttps://www.ce-ce.org/user_uploads/CECE_2023/CECE%202023%20Proceedings.pdf
Number of the records: 1  

  This site uses cookies to make them easier to browse. Learn more about how we use cookies.