AUTHOR=Cao You-Long , Chen You-Yi , Li Yan-Long , Li Chung-I , Lin Shao-Ting , Lee Bing-Ru , Hsieh Chun-Lin , Hsiao Yu-Yun , Fan Yun-Fang , Luo Qing , Zhao Jian-Hua , Yin Yue , An Wei , Shi Zhi-Gang , Chow Chi-Nga , Chang Wen-Chi , Huang Chun-Lin , Chang Wei-Hung , Liu Zhong-Jian , Wu Wei-Sheng , Tsai Wen-Chieh
TITLE=Wolfberry genome database: integrated genomic datasets for studying molecular biology
JOURNAL=Frontiers in Plant Science
VOLUME=15
YEAR=2024
URL=https://www.frontiersin.org/journals/plant-science/articles/10.3389/fpls.2024.1310346
DOI=10.3389/fpls.2024.1310346
ISSN=1664-462X
ABSTRACT=
Wolfberry, also known as goji berry or Lycium barbarum, is a highly valued fruit with significant health benefits and nutritional value. For more efficient and comprehensive usage of published L. barbarum genomic data, we established the Wolfberry database. The utility of the Wolfberry Genome Database (WGDB) is highlighted through the Genome browser, which enables the user to explore the L. barbarum genome, browse specific chromosomes, and access gene sequences. Gene annotation features provide comprehensive information about gene functions, locations, expression profiles, pathway involvement, protein domains, and regulatory transcription factors. The transcriptome feature allows the user to explore gene expression patterns using transcripts per kilobase million (TPM) and fragments per kilobase per million mapped reads (FPKM) metrics. The Metabolism pathway page provides insights into metabolic pathways and the involvement of the selected genes. In addition to the database content, we also introduce six analysis tools developed for the WGDB. These tools offer functionalities for gene function prediction, nucleotide and amino acid BLAST analysis, protein domain analysis, GO annotation, and gene expression pattern analysis. The WGDB is freely accessible at https://cosbi7.ee.ncku.edu.tw/Wolfberry/. Overall, WGDB serves as a valuable resource for researchers interested in the genomics and transcriptomics of L. barbarum. Its user-friendly web interface and comprehensive data facilitate the exploration of gene functions, regulatory mechanisms, and metabolic pathways, ultimately contributing to a deeper understanding of wolfberry and its potential applications in agronomy and nutrition.