In Vivo Phenotyping for the Early Detection of Drought Stress in Tomato

背景(考古学) 蒸腾作用 干旱胁迫 环境科学 水分胁迫 生物 农学 植物 光合作用 古生物学
作者
Michela Janni,Nicola Coppedé,Manuele Bettelli,Nunzio Briglia,Angelo Petrozza,Stephan Summerer,Filippo Vurro,Donatella Danzi,Francesco Cellini,Nelson Marmiroli,Domenico Pignone,Salvatore Iannotta,A. Zappettini
出处
期刊:Plant phenomics [American Association for the Advancement of Science]
卷期号:2019 被引量:58
标识
DOI:10.34133/2019/6168209
摘要

Drought stress imposes a major constraint over a crop yield and can be expected to grow in importance if the climate change predicted comes about. Improved methods are needed to facilitate crop management via the prompt detection of the onset of stress. Here, we report the use of an in vivo OECT (organic electrochemical transistor) sensor, termed as bioristor, in the context of the drought response of the tomato plant. The device was integrated within the plant’s stem, thereby allowing for the continuous monitoring of the plant’s physiological status throughout its life cycle. Bioristor was able to detect changes of ion concentration in the sap upon drought, in particular, those dissolved and transported through the transpiration stream, thus efficiently detecting the occurrence of drought stress immediately after the priming of the defence responses. The bioristor’s acquired data were coupled with those obtained in a high-throughput phenotyping platform revealing the extreme complementarity of these methods to investigate the mechanisms triggered by the plant during the drought stress event.

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