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一种用于从植物中采集纳升级树液样本的针型微采样装置。

A needle-type micro-sampling device for collecting nanoliter sap sample from plants.

机构信息

Microfluidic Integrated Circuits Research Laboratory, Department of Bioengineering, School of Engineering, The University of Tokyo, 113-8656, Tokyo, Japan.

Department of Biological Production, Akita Prefectural University, Akita, 010-0195, Japan.

出版信息

Anal Bioanal Chem. 2021 May;413(11):3081-3091. doi: 10.1007/s00216-021-03246-2. Epub 2021 Mar 17.

Abstract

In plant research, measuring the physiological parameters of plants is vital for understanding the behavior and response of plants to changes in the external environment. Plant sap analysis provides an approach for elucidating the physiological condition of plants. However, to facilitate accurate sap analysis, a sampling device capable of collecting sap samples from plants is required. In this paper, a minimally invasive, needle-type micro-sampling device capable of collecting nanoliter (~ 91 nL) quantities of sap from plants is described. The developed micro-sampling system showed great reproducibility (3%) in experiments designed to assess sampling performance. As a proof of concept, sap samples were collected continuously from target plants with the micro-sampling system, and the dynamic changes in potassium ions, plant hormones and sugar levels inside plants were analyzed. The results demonstrated the feasibility of the micro-sampling device and its potential for developing a measurement system for plant research in the future.

摘要

在植物研究中,测量植物的生理参数对于了解植物对外界环境变化的行为和反应至关重要。植物汁液分析为阐明植物的生理状况提供了一种方法。然而,为了方便准确的汁液分析,需要一种能够从植物中采集汁液样本的采样装置。本文描述了一种微创、针型微采样装置,能够从植物中采集纳升 (~91nL) 数量的汁液。所开发的微采样系统在评估采样性能的实验中表现出了很好的重现性 (3%)。作为概念验证,使用微采样系统从目标植物中连续采集汁液样本,并分析植物内部钾离子、植物激素和糖水平的动态变化。结果表明,微采样装置具有可行性,并且有望在未来开发用于植物研究的测量系统。

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