首页 | 本学科首页   官方微博 | 高级检索  
     

利用表面增强拉曼光谱定量检测植物激素脱落酸
引用本文:张燕燕,李灿,苏睿,李林泽,位文涛,李保磊,胡建东. 利用表面增强拉曼光谱定量检测植物激素脱落酸[J]. 智慧农业(中英文), 2022, 4(1): 121-129. DOI: 10.12133/j.smartag.SA202202001
作者姓名:张燕燕  李灿  苏睿  李林泽  位文涛  李保磊  胡建东
作者单位:河南农业大学 机电工程学院,河南 郑州 450002
河南省农业激光技术国际联合实验室,河南 郑州 450002
小麦玉米作物学国家重点实验室,河南 郑州 450002
摘    要:植物激素脱落酸(Abscisic Acid,ABA)在调控植物生长和发育方面具有重要作用.然而,ABA在植物组织中含量较低,迫切需要快速灵敏的检测方法.本研究建立了一种基于适配体识别和表面增强拉曼光谱(Surface-Enhanced Raman Spectroscopy,SERS)检测的ABA快速、定量检测方法.AB...

关 键 词:脱落酸  适配体识别  表面增强拉曼光谱  金纳米颗粒  生物传感器
收稿时间:2021-09-17

Quantitative Determination of Plant Hormone Abscisic Acid Using Surface Enhanced Raman Spectroscopy
ZHANG Yanyan,LI Can,SU Rui,LI Linze,WEI Wentao,LI Baolei,HU Jiandong. Quantitative Determination of Plant Hormone Abscisic Acid Using Surface Enhanced Raman Spectroscopy[J]. Smart Agriculture, 2022, 4(1): 121-129. DOI: 10.12133/j.smartag.SA202202001
Authors:ZHANG Yanyan  LI Can  SU Rui  LI Linze  WEI Wentao  LI Baolei  HU Jiandong
Affiliation:College of Mechanical and Electrical Engineering, Henan Agricultural University, Zhengzhou 450002, China
Henan International Joint Laboratory of Agricultural Laser Technology, Zhengzhou 450002, China
State Key Laboratory of Wheat and Corn Crop Science, Zhengzhou 450002, China
Abstract:Plant hormone Abscisic Acid (ABA) plays an important role in regulating plant growth. However, the content of ABA in plant tissues is very low, and rapid and sensitive detection methods are urgently needed. In this study, a rapid and quantitative ABA detection method was established based on aptamer recognition and surface-enhanced Raman spectroscop (SERS). The gold nanoparticles modified by ABA aptamer had the characteristics of SERS signal enhancement and selective recognition, realizing the rapid and sensitive detection of trace ABA in complex plant sample matrix. When ABA molecules appeared in detect system, the aptamer would specifically bind with ABA molecules, and the aptamer folded into G-tetrad structure at same time, which wrapped ABA molecules in the tetrad structure, shortened the distance between ABA molecules and gold nanoparticles, and the enhanced and stable ABA molecules SERS signal were obtained. Under the condition of optimized aptamer concentration at 0.12 μmol/L, different concentrations of ABA solutions in the detection system were detected. Within the concentration range of 0.1-100 μmol/L, the SERS intensity of ABA presented a good linear relationship with the concentration. The detection limit of this method was 0.1 μmol/L and the linear correlation coefficient R2 was 0.9855. The repeatability test of 20 points randomly on SERS substrate showed that the relative standard deviation (RSD) was 6.71%, indicating the stability of SERS substrate was well. Furthermore, the substrate of gold nanoparticles modified by the ABA aptamer terminal with sulfhydryl group (SH-Apt) could be stored in the refrigerator for more than half a year, indicating that the substrate has good stability. Once the preparation of the synthesized SH-Apt modified gold nanoparticles was completed. It could be used on demand without the need to prepare SERS substrate for every detection. In this sense, the constructed aptamer SERS biosensor could realize the rapid and quantitative detection of ABA. The method was used for the determination of ABA in wheat leaves, and the result was in good agreement with the Enzyme Linked Immunosorbent Assay (ELISA) (The max relative error was 9.13%). This biosensor is an exploratory study on the detection of plant hormones by SERS, and the results of the study will have important reference value for the subsequent quantitative and on-site detection of ABA, as well as the detection of other plant hormones.
Keywords:abscisic acid  aptamer recognition  surface-enhanced Raman spectroscopy  gold nanoparticles  biosensor  
点击此处可从《智慧农业(中英文)》浏览原始摘要信息
点击此处可从《智慧农业(中英文)》下载全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号