Department of Organismic and Evolutionary Biology, Harvard University, 16 Divinity Avenue, Cambridge, MA 02138, USA.
Development. 2022 Feb 15;149(4). doi: 10.1242/dev.200256. Epub 2022 Feb 17.
In-depth investigation of any developmental process in plants requires knowledge of both the underpinning molecular networks and how they directly determine patterns of cell division and expansion over time. Floral meristems (FMs) produce floral organs, after which they undergo floral meristem termination (FMT); precise control of organ initiation and FMT is crucial to the reproductive success of any flowering plant. Using live confocal imaging, we characterized developmental dynamics during floral organ primordia initiation and FMT in Aquilegia coerulea (Ranunculaceae). Our results uncover distinct patterns of primordium initiation between stamens and staminodes compared with carpels, and provide insight into the process of FMT, which is discernable based on cell division dynamics that precede carpel initiation. To our knowledge, this is the first quantitative live imaging of meristem development in a system with numerous whorls of floral organs, as well as an apocarpous gynoecium. This study provides crucial information for our understanding of how the spatial-temporal regulation of floral meristem behavior is achieved in both evolutionary and developmental contexts. This article has an associated 'The people behind the papers' interview.
深入调查植物的任何发育过程都需要了解潜在的分子网络,以及它们如何直接决定细胞分裂和扩张的模式随时间的变化。花分生组织(FM)产生花器官,之后它们经历花分生组织终止(FMT);器官起始和 FMT 的精确控制对任何开花植物的生殖成功至关重要。使用活细胞共聚焦成像,我们对 Aquilegia coerulea(毛茛科)的花器官原基起始和 FMT 的发育动态进行了表征。我们的结果揭示了雄蕊和退化雄蕊与心皮之间原基起始之间的明显模式,并且深入了解了 FMT 过程,这可以根据在心皮起始之前的细胞分裂动态来识别。据我们所知,这是第一个在具有多个花器官轮和离生雌蕊的系统中对分生组织发育进行定量活成像的研究。这项研究为我们理解在进化和发育背景下如何实现花分生组织行为的时空调节提供了重要信息。本文有一个相关的“论文背后的人物”访谈。