Department of Evolutionary Biology, Ecology and Environmental Sciences, University of Barcelona, Faculty of Biology, Av. Diagonal 643, Barcelona, E-08028, Spain; Institute of Research in Biodiversity (IRBio), University of Barcelona, Faculty of Biology, Av. Diagonal 643, Barcelona, E-08028, Spain.
Department of Evolutionary Biology, Ecology and Environmental Sciences, University of Barcelona, Faculty of Biology, Av. Diagonal 643, Barcelona, E-08028, Spain; Institute of Research in Biodiversity (IRBio), University of Barcelona, Faculty of Biology, Av. Diagonal 643, Barcelona, E-08028, Spain.
Trends Plant Sci. 2023 May;28(5):527-536. doi: 10.1016/j.tplants.2023.01.004. Epub 2023 Feb 8.
The detection and monitoring of drought stress in plants growing in their natural habitat are essential for the study of plant stress physiology. However, with the advent of plant phenotyping and new -omics technologies, the application of simple, cheap, cost-effective, quick, and practical methods to assess drought stress in plants seems more challenging than ever, particularly in low-income countries. Here, currently available methods that do not require specialized equipment, but reliably detect and monitor drought stress in plants at low cost will be discussed. This will not only boost research on plant stress physiology in low-income countries but will also help several laboratories with very limited resources around the globe to perform high-quality research.
在植物的自然栖息地中,对干旱胁迫的检测和监测对于植物胁迫生理学的研究至关重要。然而,随着植物表型分析和新的组学技术的出现,应用简单、廉价、具有成本效益、快速和实用的方法来评估植物的干旱胁迫似乎比以往任何时候都更具挑战性,特别是在低收入国家。在这里,将讨论目前不需要专门设备但能够可靠地以低成本检测和监测植物干旱胁迫的可用方法。这不仅将促进低收入国家的植物胁迫生理学研究,而且还将帮助全球许多资源非常有限的实验室进行高质量的研究。