Yang Pengtao, Yuan Yu, Yan Chao, Jia Yue, You Qi, Da Lingling, Lou Ao, Lv Bingsheng, Zhang Zhonghua, Liu Yue
Engineering Laboratory of Genetic Improvement of Horticultural Crops of Shandong Province, College of Horticulture, Qingdao Agricultural University, Qingdao 266109, China.
Key Laboratory of Plant Functional Genomics of the Ministry of Education/Jiangsu Key Laboratory of Crop Genomics and Molecular Breeding/Co-Innovation Center for Modern Production Technology of Grain Crops, College of Agriculture, Yangzhou University, Yangzhou 225009, China.
Hortic Res. 2023 Dec 29;11(2):uhad285. doi: 10.1093/hr/uhad285. eCollection 2024 Feb.
The genus belongs to the botanical family Amaryllidaceae and includes economically important crops such as onion, garlic, bunching onion, and leek, used as vegetables, spices, and traditional medicines. The large sizes of genomes hamper the genetic dissection of agronomically important traits and molecular breeding. With the growing accumulation of genomic, resequencing, transcriptome, and phenotypic data, the demand for an integrative database is increasing. Here we present a user-friendly database, AlliumDB (https://allium.qau.edu.cn), as a functional genomics hub integrating public and in-house data. The database contains all currently available nuclear and organelle genomes for species, with genes comprehensively annotated based on Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) analyses, orthology, gene families, protein families (Pfam), and non-coding RNA families (Rfam). Transcriptome and variation profiles are integrated into dynamic visualization tools. We took phenotypic photographs and generated trait records for hundreds of germplasms collected worldwide, which are included in the database. We incorporated JBrowse for the visualization of gene structures, RNA sequencing data, and variation data. Analysis tools such as the basic local alignment search tool (BLAST), sequence fetch, enrichment, and motif analyses are available to explore potential gene functions. This database incorporates comprehensive genotypic and phenotypic datasets. As the community assembles new genomes and generates resequencing data for germplasms, the database will be improved and continuously updated with these multi-omics data and comparative genomic studies. We expect the AlliumDB database to become a key resource for the study of crops.
该属属于石蒜科植物,包括一些具有重要经济价值的作物,如洋葱、大蒜、葱和韭菜,它们被用作蔬菜、香料和传统药物。该属植物的基因组规模较大,这阻碍了对重要农艺性状的遗传解析和分子育种。随着基因组、重测序、转录组和表型数据的不断积累,对一个综合性的该属数据库的需求也在增加。在这里,我们展示了一个用户友好型数据库AlliumDB(https://allium.qau.edu.cn),作为一个整合公共数据和内部数据的功能基因组学中心。该数据库包含了该属物种目前所有可用的核基因组和细胞器基因组,其基因基于基因本体论(GO)和京都基因与基因组百科全书(KEGG)分析、直系同源关系、基因家族、蛋白质家族(Pfam)和非编码RNA家族(Rfam)进行了全面注释。转录组和变异图谱被整合到动态可视化工具中。我们拍摄了世界各地收集的数百份该属种质的表型照片并生成了性状记录,这些都包含在数据库中。我们整合了JBrowse用于基因结构、RNA测序数据和变异数据的可视化。诸如基本局部比对搜索工具(BLAST)、序列提取、富集分析和基序分析等分析工具可用于探索潜在的基因功能。该数据库整合了全面的该属基因型和表型数据集。随着该领域不断组装新的基因组并生成该属种质的重测序数据,该数据库将利用这些多组学数据和比较基因组研究进行改进和持续更新。我们期望AlliumDB数据库成为该属作物研究的关键资源。