Department of Integrative Biology, University of Texas, Austin, Texas 78712, USA.
Institute of Plant and Microbial Biology, Academia Sinica, Taipei 11528, Taiwan.
Plant Cell. 2023 Jan 2;35(1):10-23. doi: 10.1093/plcell/koac324.
Drought stress is an increasing concern because of climate change and increasing demands on water for agriculture. There are still many unknowns about how plants sense and respond to water limitation, including which genes and cellular mechanisms are impactful for ecology and crop improvement in drought-prone environments. A better understanding of plant drought resistance will require integration of several research disciplines. A common set of parameters to describe plant water status and quantify drought severity can enhance data interpretation and research integration across the research disciplines involved in understanding drought resistance and would be especially useful in integrating the flood of genomic data being generated in drought studies. Water potential (ψw) is a physical measure of the free energy status of water that, along with related physiological measurements, allows unambiguous description of plant water status that can apply across various soil types and environmental conditions. ψw and related physiological parameters can be measured with relatively modest investment in equipment and effort. Thus, we propose that increased use of ψw as a fundamental descriptor of plant water status can enhance the insight gained from many drought-related experiments and facilitate data integration and sharing across laboratories and research disciplines.
由于气候变化以及农业用水需求的增加,干旱胁迫日益受到关注。关于植物如何感知和响应水分限制,包括哪些基因和细胞机制对干旱环境下的生态和作物改良有影响,仍有许多未知之处。要更好地了解植物的抗旱性,需要整合多个研究学科。一套通用的参数来描述植物的水分状态并量化干旱的严重程度,可以增强对不同研究学科的研究数据的解释和整合,这些研究学科涉及对干旱抗性的理解,并且在整合干旱研究中产生的大量基因组数据方面将特别有用。水势(ψw)是水自由能状态的物理度量,与相关的生理测量一起,可以明确描述适用于各种土壤类型和环境条件的植物水分状态。ψw 和相关的生理参数可以用相对较少的设备和努力来测量。因此,我们建议增加将 ψw 用作植物水分状态的基本描述符的使用,可以增强从许多与干旱相关的实验中获得的洞察力,并促进实验室和研究学科之间的数据集成和共享。