Fluorometric Measurement of Individual Stomata Activity and Transpiration via a "Brush-on", Water-Responsive Polymer

  • Seo, Minjeong
  • Park, Dong-Hoon
  • Lee, Chan Woo
  • Jaworski, Justyn
  • Kim, Jong-Man
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초록

Much of atmospheric water originates from transpiration, the process by which plants release H2O from pores, known as stomata, that simultaneously intake CO2 for photosynthesis. Controlling stomatal aperture can regulate the extent of water transport in response to dynamic environmental factors including osmotic stress, temperature, light, and wind. While larger leaf regions are often examined, the extent of water vapor release from individual stomata remains unexplored. Using a "brush-on" sensing material, we can now assess transpiration using a water-responsive, polydiacetylene-based coating on the leaves surfaces. By eliciting a fluorometric signal to passing water vapor, we obtained information regarding the activity of individual stomata. In this demonstration, our results prove that this coating can identify the proportion of active stomata and the extent of transpirational diffusion of water in response to different conditions.

키워드

TOPOCHEMICAL POLYMERIZATIONCONJUGATED POLYMERSABSCISIC-ACIDCHLOROPHYLL-AXYLEM SAPPOLYDIACETYLENEPLANTSSTRESSCLOSUREPHOTOSYNTHESIS
제목
Fluorometric Measurement of Individual Stomata Activity and Transpiration via a "Brush-on", Water-Responsive Polymer
저자
Seo, MinjeongPark, Dong-HoonLee, Chan WooJaworski, JustynKim, Jong-Man
DOI
10.1038/srep32394
발행일
2016-08
유형
Article
저널명
Scientific Reports
6
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1 ~ 10

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