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◆ Small (Weinheim an der Bergstrasse, Germany)2026-09-03

In Situ Monitoring of Stress-Induced Hydrogen Peroxide in Plants Using NIR-II Fluorescent Microneedles.

Shengchun Sun, Hong Hu, Jianxing Feng, Ning Shi, Xiyu Zhou, Huimin Tong, Renren Deng, Yibin Ying, Yixian Wang

原始摘要(英文原文)· Original abstract
In situ monitoring of plant responses to stress is one of the most challenging aspects of precision agriculture, and the dynamic control of crop growth according to fluctuating environmental factors. Although fluorescence imaging provides a nondestructive approach for monitoring stress-related biomarkers, its performance is often hindered by the low abundance of endogenous signaling molecules and strong tissue autofluorescence. Here, we report a microneedle-integrated sensing platform that enables sensitive detection of endogenous hydrogen peroxide (H2O2) in living plants. The platform incorporates a second near-infrared fluorescent nanoprobe composed of Er3+-doped lanthanide nanoparticles emitting at 1550 nm and Mo-doped polymetallic oxomolybdates serving as the H2O2-responsive unit. Embedding the nanoprobe into custom-fabricated microneedles allows precise positioning on plant midribs for continuous monitoring of H2O2 dynamics. Under stress conditions, the system successfully visualized spatiotemporal fluctuations of H2O2 in living tomato, spinach, and tobacco plants. This work establishes a strategy for early stress diagnosis and developing universal plant health monitoring technologies.
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In Situ Monitoring of Stress-Induced Hydrogen Peroxide in Plants Using NIR-II Fluorescent Microneedles. — 科研速览 Science Skim