发布: 2017年08月20日第7卷第16期 DOI: 10.21769/BioProtoc.2449 浏览次数: 9731
评审: Scott A M McAdamJoëlle SchlapferAlizée Malnoe
Abstract
The number of stomata on leaves can be affected by intrinsic development programming and various environmental factors, in addition the control of stomatal apertures is extremely important for the plant stress response. In response to elevated temperatures, transpiration occurs through the stomatal apertures, allowing the leaf to cool through water evaporation. As such, monitoring of stomata behavior to elevated temperatures remains as an important area of research. The protocol allows analysis of stomatal aperture, morphology, and density through a non-destructive imprint of Arabidopsis thaliana leaf surface. Stomatal counts were performed and observed under a scanning electron microscope.
Keywords: Arabidopsis thaliana (拟南芥)Background
The different techniques have been explored to study stomatal density and patterns in variety of plants. It can be broadly grouped into two classes including direct observation of fresh materials and the preparation of replicas, or castings (Gitz and Baker, 2009). These methods have included the use of clear nail varnish, which is a traditional method used to analyze stomata density, however, surfaces of leaves can be damaged by the solvent in the nail varnish. Here we use a non-destructive imprint of Arabidopsis thaliana leaves for stomata visualization, which can directly observe freshly collected materials and assess stomata density for sequential measurements. Additionally, it can simplify the observation and the measurement of stomatal density, and facilitate the analysis of several lines or different treatments in parallel.
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版权信息
© 2017 The Authors; exclusive licensee Bio-protocol LLC.
如何引用
Readers should cite both the Bio-protocol article and the original research article where this protocol was used:
分类
植物科学 > 植物细胞生物学 > 组织分析
细胞生物学 > 细胞成像 > 固定组织成像
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