A guide to photosynthetic gas exchange measurements: Fundamental principles, best practice and potential pitfalls

Author:

Busch Florian A.12ORCID,Ainsworth Elizabeth A.3ORCID,Amtmann Anna4ORCID,Cavanagh Amanda P.56ORCID,Driever Steven M.7ORCID,Ferguson John N.5ORCID,Kromdijk Johannes68ORCID,Lawson Tracy5ORCID,Leakey Andrew D. B.9ORCID,Matthews Jack S. A.5ORCID,Meacham‐Hensold Katherine6ORCID,Vath Richard L.810ORCID,Vialet‐Chabrand Silvere11ORCID,Walker Berkley J.1213ORCID,Papanatsiou Maria4ORCID

Affiliation:

1. School of Biosciences and Birmingham Institute of Forest Research University of Birmingham Birmingham UK

2. Research School of Biology The Australian National University Canberra Australian Captial Territory Australia

3. USDA ARS Global Change and Photosynthesis Research Unit Urbana Illinois USA

4. School of Molecular Biosciences, College of Medical, Veterinary & Life Sciences University of Glasgow Glasgow UK

5. School of Life Sciences University of Essex Colchester UK

6. Carl R. Woese Institute for Genomic Biology University of Illinois Urbana Illinois USA

7. Centre for Crop Systems Analysis Wageningen University & Research Wageningen The Netherlands

8. Department of Plant Sciences University of Cambridge Cambridge UK

9. Departments of Plant Biology and Crop Sciences University of Illinois Urbana Champaign Urbana Illinois USA

10. LI‐COR Environmental Lincoln Nebraska USA

11. Department of Plant Sciences Horticulture and Product Physiology Wageningen The Netherlands

12. Plant Research Laboratory Michigan State University East Lansing Michigan USA

13. Department of Plant Biology Michigan State University East Lansing Michigan USA

Abstract

AbstractGas exchange measurements enable mechanistic insights into the processes that underpin carbon and water fluxes in plant leaves which in turn inform understanding of related processes at a range of scales from individual cells to entire ecosytems. Given the importance of photosynthesis for the global climate discussion it is important to (a) foster a basic understanding of the fundamental principles underpinning the experimental methods used by the broad community, and (b) ensure best practice and correct data interpretation within the research community. In this review, we outline the biochemical and biophysical parameters of photosynthesis that can be investigated with gas exchange measurements and we provide step‐by‐step guidance on how to reliably measure them. We advise on best practices for using gas exchange equipment and highlight potential pitfalls in experimental design and data interpretation. The Supporting Information contains exemplary data sets, experimental protocols and data‐modelling routines. This review is a community effort to equip both the experimental researcher and the data modeller with a solid understanding of the theoretical basis of gas‐exchange measurements, the rationale behind different experimental protocols and the approaches to data interpretation.

Publisher

Wiley

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