Sainsbury Laboratory, University of Cambridge, Cambridge, UK.
Department of Plant Developmental Biology, Max Planck Institute for Plant Breeding Research, Cologne, Germany.
Methods Mol Biol. 2023;2686:537-551. doi: 10.1007/978-1-0716-3299-4_25.
The shoot apical meristem is the plant tissue that produces the plant aerial organs such as flowers and leaves. To better understand how the shoot apical meristem develops and adapts to the environment, imaging developing shoot meristems expressing fluorescence reporters through laser confocal microscopy is becoming increasingly important. Yet, there are not many computational pipelines enabling a systematic and high-throughput characterization of the produced microscopy images. This chapter provides a simple method to analyze 3D images obtained through laser scanning microscopy and quantitatively characterize radially or axially symmetric 3D fluorescence domains expressed in a tissue or organ by a reporter. Then, it presents different computational pipelines aiming at performing high-throughput quantitative image analysis of gene expression in plant inflorescence and floral meristems. This methodology has notably enabled the quantitative characterization of how stem cells respond to environmental perturbations in the Arabidopsis thaliana inflorescence meristem and will open new avenues in the use of quantitative analysis of gene expression in shoot apical meristems. Overall, the presented methodology provides a simple framework to analyze quantitatively gene expression domains from 3D confocal images at the tissue and organ level, which can be applied to shoot meristems and other organs and tissues.
茎尖分生组织是产生植物地上器官(如花和叶)的植物组织。为了更好地理解茎尖分生组织的发育和适应环境的过程,通过激光共聚焦显微镜对表达荧光报告基因的发育中的茎尖分生组织进行成像变得越来越重要。然而,能够系统地、高通量地对产生的显微镜图像进行特征描述的计算流程并不多。本章提供了一种简单的方法,用于分析通过激光扫描显微镜获得的 3D 图像,并定量描述组织或器官中通过报告基因表达的径向或轴对称 3D 荧光域。然后,它介绍了不同的计算流程,旨在对植物花序和花分生组织中的基因表达进行高通量定量图像分析。该方法特别能够定量表征拟南芥花序分生组织中的干细胞如何响应环境干扰,并且将为使用定量分析方法研究茎尖分生组织中的基因表达开辟新途径。总体而言,所提出的方法提供了一个简单的框架,用于在组织和器官水平上从 3D 共聚焦图像中定量分析基因表达域,该方法可应用于茎尖分生组织和其他器官和组织。