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……中生殖器官发育的共聚焦实时成像

Confocal Live Imaging of Reproductive Organs Development in .

作者信息

Wang Binghan, Bauer Amélie, Gómez-Felipe Andrea, Silveira Sylvia R, Kierzkowski Daniel

机构信息

Institut de Recherche en Biologie Végétale, Département de Sciences Biologiques, Université de Montréal, 4101 Sherbrooke St E, Montréal, QC, Canada.

出版信息

Bio Protoc. 2025 Feb 5;15(3):e5177. doi: 10.21769/BioProtoc.5177.

Abstract

Understanding how multicellular organisms are shaped requires high-resolution, quantitative data to unravel how biological structures grow and develop over time. In recent years, confocal live imaging has become an essential tool providing insights into developmental dynamics at cellular resolution in plant organs such as leaves or meristems. In the context of flowers, growth tracking has primarily been limited to sepals, the outermost floral organs, or the post-fertilization gynoecium, which are easily accessible for microscopy. Here, we describe a detailed pipeline for the preparation, dissection, and confocal imaging of the development of internal reproductive floral organs of including both the stamen and gynoecium. We also discuss how to acquire high-quality images suitable for efficient 2D and 3D segmentation that allow the quantification of cellular dynamics underlying their development. Key features • Fine dissection of tiny and tightly enclosed floral organs. • Confocal live imaging method allowing long-term observation of plant reproductive morphogenesis. • Assessing the quality of acquired images for efficient segmentation at cellular resolution in 2D and 3D.

摘要

要了解多细胞生物是如何形成的,需要高分辨率的定量数据来揭示生物结构如何随时间生长和发育。近年来,共聚焦实时成像已成为一种重要工具,可在细胞分辨率下洞察叶片或分生组织等植物器官的发育动态。在花的研究中,生长追踪主要局限于萼片(最外层的花器官)或受精后的雌蕊群,这些器官便于显微镜观察。在此,我们描述了一个详细的流程,用于包括雄蕊和雌蕊在内的内部生殖花器官发育的制备、解剖和共聚焦成像。我们还讨论了如何获取适合高效二维和三维分割的高质量图像,从而能够量化其发育过程中细胞动态变化。关键特性 • 对微小且紧密包裹的花器官进行精细解剖。 • 共聚焦实时成像方法可长期观察植物生殖形态发生。 • 评估所获取图像的质量,以便在二维和三维细胞分辨率下进行高效分割。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5708/12222402/656675de1c42/BioProtoc-15-3-5177-v001.jpg

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