化学
水杨酸
荧光
罗丹明
纳米技术
色谱法
生物化学
光学
物理
材料科学
作者
Jieying Chen,Ping Yang,Hou-Yun Huang,A-Ling Tang,Meihong Ge,Wei Niu,Shi-Tao Liu,Shuai Tan,Wenjing Ma,Xiang Zhou,Liwei Liu,Song Yang
摘要
Salicylic acid (SA) is a key hormone that regulates plant growth and immunity, and understanding the physiologic processes induced by SA enables the development of highly pathogen-resistant crops. Here, we report the synthesis of three new SA-sensors (R1-R3) from hydroxyphenol derivatives of a rhodamine-acylhydrazone scaffold and their characterization by NMR and HRMS. Spectroscopic analyses revealed that structural variations in R1-R3 resulted in sensors with different sensitivities for SA. Sensor R2 (with the 3-hydroxyphenyl modification) outperformed R1 (2-hydroxyphenyl) and R3 (4-hydroxyphenyl). The SA-detection limit of R2 is 0.9 μM with an ultra-fast response time (<60 s). In addition, their plant imaging indicated that designed sensor R2 is useful for the further study of SA biology and the discovery and development of new inducers of plant immunity.
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