Ma Xiaoxie, Zeng Xiaoyan, Huang Yurou, Liu Sheng Hua, Yin Jun, Yang Guang-Fu
State Key Laboratory of Green Pesticide, International Joint Research Center for Intelligent Biosensor Technology and Health, College of chemistry, Central China Normal University, Wuhan, P. R. China.
Nat Protoc. 2025 Apr;20(4):902-933. doi: 10.1038/s41596-024-01068-x. Epub 2024 Oct 22.
Salt stress is an adverse environmental condition that harms plant growth and development. The development of salt stress probes is critical for tracking the growth dynamics of plants, molecular breeding or screening of growth regulators. The sodium chloride (NaCl)-responsive fluorescent probe Aza-CyBz is designed based on the tenet that NaCl induces formation of ordered aggregates, and the sensitive fluorescence response can enable the visualization of plant salt stress in root tip tissues and live plants. Herein, we describe a detailed three-step route for synthesis of Aza-CyBz and applications to monitoring salt stress in Arabidopsis thaliana. The procedures for operating fluorescence imaging under various stresses are also listed to eliminate interference from the oxidative mechanism of salt stress. Compared with conventional invasive approaches such as inductively coupled plasma emission spectrometry and flame photometer, our protocol can real-time monitor salt stress experienced by plants, which demands simple pretreatment procedure and staining technique. Due to near infrared fluorescence, this method provides direct visual observation of salt stress at both tissue and live plant levels, which is superior to conventional noninvasive approaches. The preparation of probe Aza-CyBz takes ~2 d, and the imaging experiments for assessing salt stress experienced by plants, including the preparation of stressed plant samples takes ~9-11 d for root tip tissues and ~23 d for live plants. Notably, acquisition and analysis visual images of salt stress in plants can be completed within 2 h and they require only a basic knowledge of spectroscopy and chemistry.
盐胁迫是一种有害于植物生长发育的不利环境条件。盐胁迫探针的开发对于追踪植物生长动态、分子育种或生长调节剂筛选至关重要。基于氯化钠(NaCl)诱导形成有序聚集体这一原理设计了对NaCl有响应的荧光探针Aza-CyBz,其灵敏的荧光响应能够实现对根尖组织和活体植物中植物盐胁迫的可视化。在此,我们描述了合成Aza-CyBz的详细三步路线及其在监测拟南芥盐胁迫中的应用。还列出了在各种胁迫下进行荧光成像的操作程序,以消除盐胁迫氧化机制的干扰。与电感耦合等离子体发射光谱法和火焰光度计等传统侵入性方法相比,我们的方案能够实时监测植物所经历的盐胁迫,且预处理程序和染色技术简单。由于具有近红外荧光,该方法能够在组织和活体植物水平上直接对盐胁迫进行可视化观察,优于传统的非侵入性方法。探针Aza-CyBz的制备大约需要2天,评估植物所经历盐胁迫的成像实验,包括制备受胁迫植物样品,对于根尖组织大约需要9 - 11天,对于活体植物大约需要23天。值得注意的是,获取和分析植物盐胁迫的视觉图像可在2小时内完成,并且只需要基本的光谱学和化学知识。