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PMID: 28161560 Published · ppublish English Journal Article

Daily changes in VPD during leaf development in high air humidity increase the stomatal responsiveness to darkness and dry air.

Journal of plant physiology ·Vol. 211 ·2017-04-00 ·Pages 63-69

Arve LE, Kruse OM, Tanino KK, Olsen JE, Futsæther C, Torre S

Abstract

Previous studies have shown that plants developed under high relative air humidity (RH>85%) develop malfunctioning stomata and therefor have increased transpiration and reduced desiccation tolerance when transferred to lower RH conditions and darkness. In this study, plants developed at high RH were exposed to daily VPD fluctuations created by changes in temperature and/or RH to evaluate the potential improvements in stomatal functioning. Daily periods with an 11°C temperature increase and consequently a VPD increase (vpd: 0.36-2.37KPa) reduced the stomatal apertures and improved the stomatal functionality and desiccation tolerance of the rosette plant Arabidopsis thaliana. A similar experiment was performed with only a 4°C temperature increase and/or a RH decrease on tomato. The results showed that a daily change in VPD (vpd: 0.36-1.43KPa) also resulted in improved stomatal responsiveness and decreased water usage during growth. In tomato, the most effective treatment to increase the stomatal responsiveness to darkness as a signal for closure was daily changes in RH without a temperature increase.

Keywords
Air humidity Arabidopsis thaliana Desiccation tolerance Stomata Tomato VPD
MeSH Terms
Air Arabidopsis/physiology Darkness Desiccation Humidity Lycopersicon esculentum/physiology Plant Stomata/physiology Temperature Vapor Pressure Water
Chemicals
Water
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Arve Louise E
Norwegian University of Life Sciences, Department of Plant Sciences, P.O. Box 5003, 1432 Aas, Norway. Electronic address: louiar@nmbu.no.
Kruse Ole Mathis Opstad
Norwegian University of Life Sciences, Department of Mathematical Sciences and Technology, P.O. Box 5003, 1432 Aas, Norway. Electronic address: ole.kruse@nmbu.no.
Tanino Karen K
University of Saskatchewan, Department of Plant Sciences, Saskatoon, SK S7N 5A8, Canada. Electronic address: karen.tanino@usask.ca.
Olsen Jorunn E
Norwegian University of Life Sciences, Department of Plant Sciences, P.O. Box 5003, 1432 Aas, Norway. Electronic address: jorunn.olsen@nmbu.no.
Futsæther Cecilia
Norwegian University of Life Sciences, Department of Mathematical Sciences and Technology, P.O. Box 5003, 1432 Aas, Norway. Electronic address: cecilia.futsaether@nmbu.no.
Torre Sissel
Norwegian University of Life Sciences, Department of Plant Sciences, P.O. Box 5003, 1432 Aas, Norway. Electronic address: sissel.torre@nmbu.no.
Article Info
Journal
Journal of plant physiology
Abbr.
J Plant Physiol
ISSN
1618-1328
Published
2017-04-00
Epub
2017-00-16
Pages
63-69
Language
English
Region
Germany
NLM ID
9882059
Subset
IM
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