您好,欢迎访问北京市农林科学院 机构知识库!

An Amperometric Glucose Microbiosensor for Real-Time Measurements in Plants

文献类型: 会议论文

第一作者: Ye Hu

作者: Ye Hu 1 ; Cheng Wang 1 ; Aixue Li 1 ;

作者机构: 1.Beijing Research Center of Intelligent Equipment for Agriculture, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China

关键词: Glucose;Glucose oxidase;Sunflower;Salt stress;In vivo

会议名称: IFIP WG International Conference on Computer and Computing Technologies in Agricultur

主办单位:

页码: 476-485

摘要: Glucose is not only as a main metabolic material, but also as a signaling molecule during the process of plant growth. In this work, for the first time, we developed an electrochemical microbiosensor suitable for real-time detecting of glucose concentration in plants. The biosensor uses glucose oxidase (GOD) to catalyze the glucose, and uses cellulose acetate (CA) and polycarbonate (PC) to improve the electrochemical selectivity and reduce the dependence of response on ambient oxygen. The linear range of the proposed sensor is wide and the detection limit is lower, which could basically meet the needs of plant testing. The content of glucose in sunflower under salt stress was monitored in real-time successfully, confirming the applicability of the fabricated microbiosensor. This work has a potential to open an innovative way to study the dynamic changes of physiological state of the plants in real-time.

分类号: s126-532

  • 相关文献

[1]In-Field, In Situ, and In Vivo 3-Dimensional Elemental Mapping for Plant Tissue and Soil Analysis Using Laser-Induced Breakdown Spectroscopy. Zhao, Chunjiang,Dong, Daming,Du, Xiaofan,Zheng, Wengang. 2016

[2]The Determination of Glucose Based on Terahertz Spectroscopy. Li Bin,Long Yuan,Zhao Chun-jiang,Li Bin,Long Yuan,Zhao Chun-jiang,Li Bin,Long Yuan,Zhao Chun-jiang,Liu Hai-shun,Zhao Chun-jiang. 2017

[3]An ethylene response factor (ERF5) promoting adaptation to drought and salt tolerance in tomato. Pan, Yu,Hu, Zongli,Chen, Guoping,Pan, Yu,Seymour, Graham B.,Lu, Chungui,Chen, Xuqing. 2012

[4]Expression and initial characterization of a Phosphoinositide-specific phospholipase C from Populus tomentosa. Zhang, Jiewei,Zhang, Zhongbao,Zhu, Dan,Guan, Yang,Chen, Yajuan,Li, Ruifen,Wang, Hongzhi,Wei, Jianhua,Shi, Dianyi.

作者其他论文 更多>>