Feng Shuyan, Liu Zhuo, Chen Huilong, Li Nan, Yu Tong, Zhou Rong, Nie Fulei, Guo Di, Ma Xiao, Song Xiaoming
School of Life Sciences/Library North China University of Science and Technology Tangshan Hebei China.
College of Grassland Science and Technology China Agricultural University Beijing China.
Imeta. 2024 Jan 8;3(1):e164. doi: 10.1002/imt2.164. eCollection 2024 Feb.
Plant Hormone Gene Database (PHGD) database platform construction pipeline. First, we collected all reported hormone-related genes in the model plant Arabidopsis thaliana, and combined with the existing experimental background, mapped the hormone-gene interaction network to provide a blueprint. Next, we collected 469 high-quality plant genomes. Then, bioinformatics was used to identify hormone-related genes in these plants. Finally, these genetic data were programmed to be stored in a database and a platform website PHGD was built. PHGD was divided into eight modules, namely Home, Browse, Search, Resources, Download, Tools, Help, and Contact. We provided data resources and platform services to facilitate the study of plant hormones.
植物激素基因数据库(PHGD)数据库平台构建流程。首先,我们收集了模式植物拟南芥中所有已报道的激素相关基因,并结合现有的实验背景,绘制激素 - 基因相互作用网络以提供蓝图。接下来,我们收集了469个高质量植物基因组。然后,利用生物信息学方法在这些植物中鉴定激素相关基因。最后,将这些遗传数据进行编程存储到数据库中,并构建了一个平台网站PHGD。PHGD分为八个模块,即主页、浏览、搜索、资源、下载、工具、帮助和联系我们。我们提供数据资源和平台服务以促进植物激素的研究。