Tolleter Dimitri, Smith Edward N, Dupont-Thibert Clémence, Uwizeye Clarisse, Vile Denis, Gloaguen Pauline, Falconet Denis, Finazzi Giovanni, Vandenbrouck Yves, Curien Gilles
Laboratoire de Physiologie Cellulaire et Végétale, Université Grenoble Alpes, CNRS, CEA, INRAE, Grenoble, France.
Molecular Systems Biology, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, Groningen, The Netherlands.
Quant Plant Biol. 2024 Feb 29;5:e2. doi: 10.1017/qpb.2024.1. eCollection 2024.
Quantitative analyses and models are required to connect a plant's cellular organisation with its metabolism. However, quantitative data are often scattered over multiple studies, and finding such data and converting them into useful information is time-consuming. Consequently, there is a need to centralise the available data and to highlight the remaining knowledge gaps. Here, we present a step-by-step approach to manually extract quantitative data from various information sources, and to unify the data format. First, data from Arabidopsis leaf were collated, checked for consistency and correctness and curated by cross-checking sources. Second, quantitative data were combined by applying calculation rules. They were then integrated into a unique comprehensive, referenced, modifiable and reusable data compendium representing an Arabidopsis reference leaf. This atlas contains the metrics of the 15 cell types found in leaves at the cellular and subcellular levels.
需要定量分析和模型来将植物的细胞组织与其新陈代谢联系起来。然而,定量数据常常分散在多项研究中,查找这些数据并将其转化为有用信息非常耗时。因此,有必要集中现有的数据,并突出剩余的知识空白。在此,我们提出了一种逐步方法,用于从各种信息源中手动提取定量数据,并统一数据格式。首先,整理来自拟南芥叶片的数据,检查其一致性和正确性,并通过交叉核对来源进行编辑。其次,通过应用计算规则来合并定量数据。然后,将这些数据整合到一个独特的、全面的、有参考依据的、可修改且可重复使用的数据汇编中,该数据汇编代表了拟南芥参考叶片。这个图谱包含了在细胞和亚细胞水平上叶片中发现的15种细胞类型的指标。