A User Manual to Measure Gas Diffusion Kinetics in Plants: Pneumatron Construction, Operation, and Data Analysis
The Pneumatron device measures gas diffusion kinetics in the xylem of plants. The device provides an easy, low-cost, and powerful tool for research on plant water relations and gas exchange. Here, we describe in detail how to construct and operate this device to estimate embolism resistance of angio...
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doaj-d37a889932a847f79905df546933dead2021-06-07T15:03:57ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2021-06-011210.3389/fpls.2021.633595633595A User Manual to Measure Gas Diffusion Kinetics in Plants: Pneumatron Construction, Operation, and Data AnalysisChristophe L. Trabi0Luciano Pereira1Luciano Pereira2Luciano Pereira3Xinyi Guan4Marcela T. Miranda5Paulo R. L. Bittencourt6Rafael S. Oliveira7Rafael V. Ribeiro8Steven Jansen9Institute of Systematic Botany and Ecology, Ulm University, Ulm, GermanyInstitute of Systematic Botany and Ecology, Ulm University, Ulm, GermanyCenter R&D in Ecophysiology and Biophysics, Agronomic Institute (IAC), Campinas, BrazilDepartment of Plant Biology, Institute of Biology, University of Campinas (UNICAMP), Campinas, BrazilInstitute of Systematic Botany and Ecology, Ulm University, Ulm, GermanyCenter R&D in Ecophysiology and Biophysics, Agronomic Institute (IAC), Campinas, BrazilCollege of Life and Environmental Sciences, University of Exeter, Exeter, United KingdomDepartment of Plant Biology, Institute of Biology, University of Campinas (UNICAMP), Campinas, BrazilDepartment of Plant Biology, Institute of Biology, University of Campinas (UNICAMP), Campinas, BrazilInstitute of Systematic Botany and Ecology, Ulm University, Ulm, GermanyThe Pneumatron device measures gas diffusion kinetics in the xylem of plants. The device provides an easy, low-cost, and powerful tool for research on plant water relations and gas exchange. Here, we describe in detail how to construct and operate this device to estimate embolism resistance of angiosperm xylem, and how to analyse pneumatic data. Simple and more elaborated ways of constructing a Pneumatron are shown, either using wires, a breadboard, or a printed circuit board. The instrument is based on an open-source hardware and software system, which allows users to operate it in an automated or semi-automated way. A step-by-step manual and a troubleshooting section are provided. An excel spreadsheet and an R-script are also presented for fast and easy data analysis. This manual aims at helping users to avoid common mistakes, such as unstable measurements of the minimum and maximum amount of gas discharged from xylem tissue, which has major consequences for estimating embolism resistance. Major advantages of the Pneumatron device include its automated and accurate measurements of gas diffusion rates, including highly precise measurements of the gas volume in intact, embolised conduits. It is currently unclear if the method can also be applied to woody monocots, gymnosperm species that possess torus-margo pit membranes, or to herbaceous species.https://www.frontiersin.org/articles/10.3389/fpls.2021.633595/fullvulnerability to embolismplant hydraulicsplant pneumaticsplant water relationsgas flowgas diffusion |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Christophe L. Trabi Luciano Pereira Luciano Pereira Luciano Pereira Xinyi Guan Marcela T. Miranda Paulo R. L. Bittencourt Rafael S. Oliveira Rafael V. Ribeiro Steven Jansen |
spellingShingle |
Christophe L. Trabi Luciano Pereira Luciano Pereira Luciano Pereira Xinyi Guan Marcela T. Miranda Paulo R. L. Bittencourt Rafael S. Oliveira Rafael V. Ribeiro Steven Jansen A User Manual to Measure Gas Diffusion Kinetics in Plants: Pneumatron Construction, Operation, and Data Analysis Frontiers in Plant Science vulnerability to embolism plant hydraulics plant pneumatics plant water relations gas flow gas diffusion |
author_facet |
Christophe L. Trabi Luciano Pereira Luciano Pereira Luciano Pereira Xinyi Guan Marcela T. Miranda Paulo R. L. Bittencourt Rafael S. Oliveira Rafael V. Ribeiro Steven Jansen |
author_sort |
Christophe L. Trabi |
title |
A User Manual to Measure Gas Diffusion Kinetics in Plants: Pneumatron Construction, Operation, and Data Analysis |
title_short |
A User Manual to Measure Gas Diffusion Kinetics in Plants: Pneumatron Construction, Operation, and Data Analysis |
title_full |
A User Manual to Measure Gas Diffusion Kinetics in Plants: Pneumatron Construction, Operation, and Data Analysis |
title_fullStr |
A User Manual to Measure Gas Diffusion Kinetics in Plants: Pneumatron Construction, Operation, and Data Analysis |
title_full_unstemmed |
A User Manual to Measure Gas Diffusion Kinetics in Plants: Pneumatron Construction, Operation, and Data Analysis |
title_sort |
user manual to measure gas diffusion kinetics in plants: pneumatron construction, operation, and data analysis |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Plant Science |
issn |
1664-462X |
publishDate |
2021-06-01 |
description |
The Pneumatron device measures gas diffusion kinetics in the xylem of plants. The device provides an easy, low-cost, and powerful tool for research on plant water relations and gas exchange. Here, we describe in detail how to construct and operate this device to estimate embolism resistance of angiosperm xylem, and how to analyse pneumatic data. Simple and more elaborated ways of constructing a Pneumatron are shown, either using wires, a breadboard, or a printed circuit board. The instrument is based on an open-source hardware and software system, which allows users to operate it in an automated or semi-automated way. A step-by-step manual and a troubleshooting section are provided. An excel spreadsheet and an R-script are also presented for fast and easy data analysis. This manual aims at helping users to avoid common mistakes, such as unstable measurements of the minimum and maximum amount of gas discharged from xylem tissue, which has major consequences for estimating embolism resistance. Major advantages of the Pneumatron device include its automated and accurate measurements of gas diffusion rates, including highly precise measurements of the gas volume in intact, embolised conduits. It is currently unclear if the method can also be applied to woody monocots, gymnosperm species that possess torus-margo pit membranes, or to herbaceous species. |
topic |
vulnerability to embolism plant hydraulics plant pneumatics plant water relations gas flow gas diffusion |
url |
https://www.frontiersin.org/articles/10.3389/fpls.2021.633595/full |
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