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A low-cost automated growth chamber system for continuous measurements of gas exchange at canopy scale in dynamic conditions.

Authors :
Salvatori N
Giorgio A
Muller O
Rascher U
Peressotti A
Source :
Plant methods [Plant Methods] 2021 Jun 30; Vol. 17 (1), pp. 69. Date of Electronic Publication: 2021 Jun 30.
Publication Year :
2021

Abstract

Background: Obtaining instantaneous gas exchanges data is fundamental to gain information on photosynthesis. Leaf level data are reliable, but their scaling up to canopy scale is difficult as they are acquired in standard and/or controlled conditions, while natural environments are extremely dynamic. Responses to dynamic environmental conditions need to be considered, as measurements at steady state and their related models may overestimate total carbon (C) plant uptake.<br />Results: In this paper, we describe an automatic, low-cost measuring system composed of 12 open chambers (60 × 60 × 150 cm; around 400 euros per chamber) able to measure instantaneous CO <subscript>2</subscript> and H <subscript>2</subscript> O gas exchanges, as well as environmental parameters, at canopy level. We tested the system's performance by simulating different CO <subscript>2</subscript> uptake and respiration levels using a tube filled with soda lime or pure CO <subscript>2</subscript> , respectively, and quantified its response time and measurement accuracy. We have been also able to evaluate the delayed response due to the dimension of the chambers, proposing a method to correct the data by taking into account the response time ([Formula: see text]) and the residence time (τ). Finally, we tested the system by growing a commercial soybean variety in fluctuating and non-fluctuating light, showing the system to be fast enough to capture fast dynamic conditions. At the end of the experiment, we compared cumulative fluxes with total plant dry biomass.<br />Conclusions: The system slightly over-estimated (+ 7.6%) the total C uptake, even though not significantly, confirming its ability in measuring the overall CO <subscript>2</subscript> fluxes at canopy scale. Furthermore, the system resulted to be accurate and stable, allowing to estimate the response time and to determine steady state fluxes from unsteady state measured values. Thanks to the flexibility in the software and to the dimensions of the chambers, even if only tested in dynamic light conditions, the system is thought to be used for several applications and with different plant canopies by mimicking different environmental conditions.

Details

Language :
English
ISSN :
1746-4811
Volume :
17
Issue :
1
Database :
MEDLINE
Journal :
Plant methods
Publication Type :
Academic Journal
Accession number :
34193215
Full Text :
https://doi.org/10.1186/s13007-021-00772-z