Detailed Information on Publication Record
2024
A new device for online nanoscale sampling and capillary electrophoresis analysis of plant sap composition
MELICHEROVÁ, Natália, Vít GLOSER, Jan SKALÁK, Martin TRTILEK, Jana LAVICKÁ et. al.Basic information
Original name
A new device for online nanoscale sampling and capillary electrophoresis analysis of plant sap composition
Authors
MELICHEROVÁ, Natália (703 Slovakia, belonging to the institution), Vít GLOSER (203 Czech Republic, belonging to the institution), Jan SKALÁK (203 Czech Republic, belonging to the institution), Martin TRTILEK, Jana LAVICKÁ (203 Czech Republic, guarantor) and František FORET (203 Czech Republic)
Edition
Electrophoresis, Hoboken, Wiley-Blackwell, 2024, 0173-0835
Other information
Language
English
Type of outcome
Článek v odborném periodiku
Field of Study
10609 Biochemical research methods
Country of publisher
United States of America
Confidentiality degree
není předmětem státního či obchodního tajemství
References:
Impact factor
Impact factor: 2.900 in 2022
Organization unit
Faculty of Science
UT WoS
001090485100001
Keywords in English
capillary electrophoresis; plant sap; sampling; stress; xylem
Tags
Tags
International impact, Reviewed
Změněno: 27/3/2024 09:19, Mgr. Eva Dubská
Abstract
V originále
In this work, an online sampling of plant xylem sap combined with an efficient (CE)-based method was developed and applied to study the kinetics of changes in the sap composition and to assess plant fitness under stress conditions comprehensively. A laboratory-built CE device was developed to provide online sampling and CE analysis of various ionogenic species in the sap during plant stress response. The rapid online sampling and short CE analysis time allow for real-time monitoring of changes in sap constituents in the living plant during the stress response. The developed device was successfully used to analyze chloride, nitrate, and sulfate ions in the plant xylem during the salt stress or stress caused by nitrate deficiency within short time scales.
Links
EF16_026/0008446, research and development project |
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