Monitoring Plant Health with Near-Infrared Fluorescent H<sub>2</sub>O<sub>2</sub> Nanosensors.
basic_science · Level V
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- Record sourced from PubMed, PMID 32097014.
- Also identified by DOI 10.1021/acs.nanolett.9b05159.
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Abstract
Near-infrared (nIR) fluorescent single-walled carbon nanotubes (SWCNTs) were designed and interfaced with leaves of <i>Arabidopsis thaliana</i> plants to report hydrogen peroxide (H<sub>2</sub>O<sub>2</sub>), a key signaling molecule associated with the onset of plant stress. The sensor nIR fluorescence response (>900 nm) is quenched by H<sub>2</sub>O<sub>2</sub> with selectivity against other stress-associated signaling molecules and within the plant physiological range (10-100 H<sub>2</sub>O<sub>2</sub> μM). <i>In vivo</i> remote nIR imaging of H<sub>2</sub>O<sub>2</sub> sensors enabled optical monitoring of plant health in response to stresses including UV-B light (-11%), high light (-6%), and a pathogen-related peptide (flg22) (-10%), but not mechanical leaf wounding (<3%). The sensor's high biocompatibility was reflected on similar leaf cell death (<5%) and photosynthetic rates to controls without SWCNT. These optical nanosensors report early signs of stress and will improve our understanding of plant stress communication, provide novel tools for precision agriculture, and optimize the use of agrochemicals in the environment.
Medical subject headings
- Arabidopsis
- Biosensing Techniques
- Hydrogen Peroxide