State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, Nanjing University, No. 163 Xianlin Road, Nanjing 210023, China.
Plant Physiol. 2023 Sep 22;193(2):1597-1604. doi: 10.1093/plphys/kiad354.
Carbon monoxide (CO) is a recently discovered gasotransmitter. In animals, it has been found that endogenously produced CO participates in the regulation of various metabolic processes. Recent research has indicated that CO, acting as a signaling molecule, plays a crucial regulatory role in plant development and their response to abiotic stress. In this work, we developed a fluorescent probe, named COP (carbonic oxide Probe), for the in situ imaging of CO in Arabidopsis thaliana plant tissues. The probe was designed by combining malononitrile-naphthalene as the fluorophore and a typical palladium-mediated reaction mechanism. When reacted with the released CO, COP showed an obvious fluorescence enhancement at 575 nm, which could be observed in naked-eye conditions. With a linear range of 0-10 μM, the limit of detection of COP was determined as 0.38 μM. The detection system based on COP indicated several advantages including relatively rapid response within 20 min, steadiness in a wide pH range of 5.0-10.0, high selectivity, and applicative anti-interference. Moreover, with a penetration depth of 30 μm, COP enabled 3D imaging of CO dynamics in plant samples, whether it was caused by agent release, heavy metal stress, or inner oxidation. This work provides a fluorescent probe for monitoring CO levels in plant samples, and it expands the application field of CO-detection technology, assisting researchers in understanding the dynamic changes in plant physiological processes, making it an important tool for studying plant physiology and biological processes.
一氧化碳(CO)是一种新近发现的气体信号分子。在动物体内,内源性产生的 CO 参与了各种代谢过程的调节。最近的研究表明,CO 作为一种信号分子,在植物发育及其对非生物胁迫的响应中发挥着关键的调节作用。在这项工作中,我们开发了一种名为 COP(carbonic oxide Probe)的荧光探针,用于拟南芥植物组织中 CO 的原位成像。该探针通过将丙二腈-萘作为荧光团和典型的钯介导反应机制结合设计而成。当与释放的 CO 反应时,COP 在 575nm 处表现出明显的荧光增强,在肉眼条件下即可观察到。COP 的检测范围为 0-10μM,检测限为 0.38μM。基于 COP 的检测系统具有几个优点,包括在 20min 内的快速响应、在 5.0-10.0 的宽 pH 范围内的稳定性、高选择性和适用的抗干扰性。此外,COP 具有 30μm 的穿透深度,能够对植物样品中 CO 动力学的 3D 成像,无论是由试剂释放、重金属胁迫还是内部氧化引起的。这项工作提供了一种用于监测植物样品中 CO 水平的荧光探针,扩展了 CO 检测技术的应用领域,有助于研究人员了解植物生理过程中的动态变化,成为研究植物生理学和生物学过程的重要工具。