Unverified paper record
Robust estimates of cuticular conductance to water on a stomatous leaf surface
25 Sept 2021 · 10.22541/au.163256632.28352490/v1
Abstract
In leaf gas exchange measurements, cuticular conductance to water ( g cw ) is indistinguishable from and included in stomatal conductance to water vapor ( g sw ). Here we developed a simple technique to isolate g cw by directly measuring leaf intercellular CO 2 concentration ( C i(m) ) along with gas exchange during photosynthetic light induction. We derived stomatal conductance to CO 2 ( g sc(m) ) from the C i(m) independently of g sw . Plotting g sw against g sc(m) during the early induction phase within ~10 min, we found a highly linear relationship with a positive intercept. Assuming negligible cuticular CO 2 transport, complete stomatal closure occurs when g sc(m) =0. Then, we considered the residual g sw (i.e., intercept) as g cw . Indeed, these g cw estimates succeeded in correcting the calculation. Our technique, owing to its robustness and increased throughput, will allow for more rapid screening of crops, more reliable gas exchange analysis, and more accurate prediction of plant function under natural environmental conditions.
Plant phenotyping relevance
葉のガス交換からクチクラコンダクタンスを推定する新規かつ高スループットな生理表現型測定法を開発しており、方法自体が研究の中心です。
abstractHere we developed a simple technique to isolate g cw by directly measuring leaf intercellular CO 2 concentration ( C i(m) ) along with gas exchange during photosynthetic light induction.
abstractOur technique, owing to its robustness and increased throughput, will allow for more rapid screening of crops, more reliable gas exchange analysis, and more accurate prediction of plant function under natural environmental conditions.
Code and data availability
The supplied blocks contain only the preprint title page and abstract. The two 'Hosted file' links point to the manuscript and figures documents (MS#1-slope method_main_PCE.docx and MS#1-slope method_figures_PCE.docx), which are the article itself, not public phenotype datasets, sensor/image inputs, analysis code, or a
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