Zhao Chunjiang, Dong Daming, Du Xiaofan, Zheng Wengang
National Engineering Research Center for Information Technology in Agriculture, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China.
Sensors (Basel). 2016 Oct 22;16(10):1764. doi: 10.3390/s16101764.
Sensing and mapping element distributions in plant tissues and its growth environment has great significance for understanding the uptake, transport, and accumulation of nutrients and harmful elements in plants, as well as for understanding interactions between plants and the environment. In this study, we developed a 3-dimensional elemental mapping system based on laser-induced breakdown spectroscopy that can be deployed in- field to directly measure the distribution of multiple elements in living plants as well as in the soil. Mapping is performed by a fast scanning laser, which ablates a micro volume of a sample to form a plasma. The presence and concentration of specific elements are calculated using the atomic, ionic, and molecular spectral characteristics of the plasma emission spectra. Furthermore, we mapped the pesticide residues in maize leaves after spraying to demonstrate the capacity of this method for trace elemental mapping. We also used the system to quantitatively detect the element concentrations in soil, which can be used to further understand the element transport between plants and soil. We demonstrate that this method has great potential for elemental mapping in plant tissues and soil with the advantages of 3-dimensional and multi-elemental mapping, in situ and in vivo measurement, flexible use, and low cost.
感知和绘制植物组织及其生长环境中的元素分布对于理解植物中养分和有害元素的吸收、运输和积累,以及理解植物与环境之间的相互作用具有重要意义。在本研究中,我们开发了一种基于激光诱导击穿光谱的三维元素映射系统,该系统可部署在野外,直接测量活体植物以及土壤中多种元素的分布。映射由快速扫描激光执行,激光烧蚀样品的微小体积以形成等离子体。利用等离子体发射光谱的原子、离子和分子光谱特征计算特定元素的存在和浓度。此外,我们绘制了喷洒后玉米叶片中的农药残留,以证明该方法进行痕量元素映射的能力。我们还使用该系统定量检测土壤中的元素浓度,这可用于进一步了解植物与土壤之间的元素运输。我们证明,该方法在植物组织和土壤的元素映射方面具有巨大潜力,具有三维和多元素映射、原位和体内测量、使用灵活以及成本低等优点。