Unverified paper record
The Pneumatron: An automated pneumatic apparatus for estimating xylem vulnerability to embolism at high temporal resolution.
Plant, cell & environment · 5 Sept 2019 · 10.1111/pce.13647
Abstract
Xylem vulnerability to embolism represents an important trait to determine species distribution patterns and drought resistance. However, estimating embolism resistance frequently requires time-consuming and ambiguous hydraulic lab measurements. Based on a recently developed pneumatic method, we present and test the "Pneumatron", a device that generates high time-resolution and fully automated vulnerability curves. Embolism resistance is estimated by applying a partial vacuum to extract air from an excised xylem sample, while monitoring the pressure change over time. Although the amount of gas extracted is strongly correlated with the percentage loss of xylem conductivity, validation of the Pneumatron was performed by comparison with the optical method for Eucalyptus camaldulensis leaves. The Pneumatron improved the precision of the pneumatic method considerably, facilitating the detection of small differences in the (percentage of air discharged [PAD] 2 = 0.93) for E. camaldulensis. By providing an open source platform, the Pneumatron represents an easy, low-cost, and powerful tool for field measurements, which can significantly improve our understanding of plant-water relations and the mechanisms behind embolism.
Plant phenotyping relevance
木部キャビテーション脆弱性という植物生理形質を高時間分解能で測定する自動装置を開発し、光学法との比較で検証しているため、方法が研究の中心である。
abstractwe present and test the "Pneumatron", a device that generates high time-resolution and fully automated vulnerability curves.
abstractvalidation of the Pneumatron was performed by comparison with the optical method for Eucalyptus camaldulensis leaves.
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