Title: | "Online, real-time detection of volatile emissions from plant tissue" |
Address: | "Life Science Trace Gas Facility, IMM , Radboud University , Heyendaalseweg 135, 6525 AJ Nijmegen , The Netherlands" |
ISSN/ISBN: | 2041-2851 (Print) 2041-2851 (Electronic) |
Abstract: | "Trace gas monitoring plays an important role in many areas of life sciences ranging from agrotechnology, microbiology, molecular biology, physiology, and phytopathology. In plants, many processes can be followed by their low-concentration gas emission, for compounds such as ethylene, nitric oxide, ethanol or other volatile organic compounds (VOCs). For this, numerous gas-sensing devices are currently available based on various methods. Among them are the online trace gas detection methods; these have attracted much interest in recent years. Laser-based infrared spectroscopy and proton transfer reaction mass spectrometry are the two most widely used methods, thanks to their high sensitivity at the single part per billion level and their response time of seconds. This paper starts with a short description of each method and presents performances within a wide variety of biological applications. Using these methods, the dynamics of trace gases for ethylene, nitric oxide and other VOCs released by plants under different conditions are recorded and analysed under natural conditions. In this way many hypotheses can be tested, revealing the role of the key elements in signalling and action mechanisms in plants" |
Keywords: | Ethylene laser-based detection nitric oxide plant volatiles proton transfer reaction mass spectrometry real-time emission trace gas detection volatile organic compounds; |
Notes: | "PubMed-not-MEDLINEHarren, Frans J M Cristescu, Simona M eng England 2013/02/23 AoB Plants. 2013; 5:plt003. doi: 10.1093/aobpla/plt003. Epub 2013 Feb 20" |