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PMID: 31731291 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Photosynthetic efficiency and mesophyll conductance are unaffected in Arabidopsis thaliana aquaporin knock-out lines.

Journal of experimental botany ·Vol. 71 ·No. 1 ·2020-00-01 ·Pages 318-329

Kromdijk J, Głowacka K, Long SP

Abstract

Improving photosynthetic efficiency is widely regarded as a major route to achieving much-needed yield gains in crop plants. In plants with C3 photosynthesis, increasing the diffusion conductance for CO2 transfer from substomatal cavity to chloroplast stroma (gm) could help to improve the efficiencies of CO2 assimilation and photosynthetic water use in parallel. The diffusion pathway from substomatal cavity to chloroplast traverses cell wall, plasma membrane, cytosol, chloroplast envelope membranes, and chloroplast stroma. Specific membrane intrinsic proteins of the aquaporin family can facilitate CO2 diffusion across membranes. Some of these aquaporins, such as PIP1;2 in Arabidopsis thaliana, have been suggested to exert control over gm and the magnitude of the CO2 assimilation flux, but the evidence for a direct physiological role of aquaporins in determining gm is limited. Here, we estimated gm with four different methods under a range of light intensities and CO2 concentrations in two previously characterized pip1;2 knock-out lines as well as pip1;3 and pip2;6 knock-out lines, which have not been previously evaluated for a role in gm. This study presents the most in-depth analysis of gm in Arabidopsis aquaporin knock-out mutants to date. Surprisingly, all methods failed to show any significant differences between the pip1;2, pip1;3, or pip2;6 mutants and the Col-0 control.

Keywords
Aquaporin CO2 assimilation PIP mesophyll conductance photosynthetic efficiency
MeSH Terms
Aquaporins/genetics,metabolism Arabidopsis/genetics,metabolism Arabidopsis Proteins/genetics,metabolism Mesophyll Cells/metabolism Photosynthesis/genetics
Chemicals
Aquaporins Arabidopsis Proteins
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Kromdijk Johannes
Department of Plant Sciences, University of Cambridge, Downing street, Cambridge, UK. | Carl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign, Urbana, IL, USA.
Głowacka Katarzyna
Carl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign, Urbana, IL, USA. | Institute of Plant Genetics, Polish Academy of Sciences, Poznań, Poland. | Department of Biochemistry, University of Nebraska-Lincoln, N246 Beadle Center, Lincoln, NE, USA.
Long Stephen P
Carl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign, Urbana, IL, USA. | Lancaster Environment Centre, University of Lancaster, Lancaster, UK.
Article Info
Journal
Journal of experimental botany
Abbr.
J Exp Bot
ISSN
1460-2431
Published
2020-00-01
Pages
318-329
Language
English
Region
England
NLM ID
9882906
Subset
IM
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