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念珠菌基因组数据库:注释与可视化更新

The Candida Genome Database: annotation and visualization updates.

作者信息

Lew-Smith Jodi, Binkley Jonathan, Sherlock Gavin

机构信息

Department of Genetics, Stanford University, Stanford CA 94305-5120, USA.

出版信息

Genetics. 2025 Mar 17;229(3). doi: 10.1093/genetics/iyaf001.

Abstract

The Candida Genome Database (CGD; www.candidagenome.org) is unique in being both a model organism database and a fungal pathogen database. As a fungal pathogen database, CGD hosts locus pages for 5 species of the best-studied pathogenic fungi in the Candida group. As a model organism database, the species Candida albicans serves as a model both for other Candida spp. and for non-Candida fungi that form biofilms and undergo routine morphogenic switching from the planktonic form to the filamentous form, which is not done by other model yeasts. As pathogenic Candida species have become increasingly drug resistant, the high lethality of invasive candidiasis in immunocompromised people is increasingly alarming. There is a pressing need for additional research into basic Candida biology, epidemiology and phylogeny, and potential new antifungals. CGD serves the needs of this diverse research community by curating the entire gene-based Candida experimental literature as it is published, extracting, organizing, and standardizing gene annotations. Gene pages were added for the species Candida auris, recent outbreaks of which have been labeled an "urgent" threat. Most recently, we have begun linking clinical data on disease to relevant Literature Topics to improve searchability for clinical researchers. Because CGD curates for multiple species and most research focuses on aspects related to pathogenicity, we focus our curation efforts on assigning Literature Topic tags, collecting detailed mutant phenotype data, and assigning controlled Gene Ontology terms with accompanying evidence codes. Our Summary pages for each feature include the primary name and all aliases for that locus, a description of the gene and/or gene product, detailed ortholog information with links, a JBrowse window with a visual view of the gene on its chromosome, summarized phenotype, Gene Ontology, and sequence information, references cited on the summary page itself, and any locus notes. The database serves as a community hub, where we link to various types of reference material of relevance to Candida researchers, including colleague information, news, and notice of upcoming meetings. We routinely survey the community to learn how the field is evolving and how needs may have changed. For example, we asked our users which species we should next add to CGD, and the clear answer was Candida tropicalis. A key future challenge is management of the flood of high-throughput expression data to make it as useful as possible to as many researchers as possible. The central challenge for any community database is to turn data into knowledge, which the community can access, use, and build upon.

摘要

念珠菌基因组数据库(CGD;www.candidagenome.org)独具特色,既是一个模式生物数据库,也是一个真菌病原体数据库。作为真菌病原体数据库,CGD托管着念珠菌属中5种研究最为深入的致病真菌的基因座页面。作为模式生物数据库,白色念珠菌不仅是其他念珠菌属物种的模型,也是形成生物膜并能从浮游形式常规性地转变为丝状形式(这是其他模式酵母所不具备的)的非念珠菌属真菌的模型。随着致病性念珠菌物种的耐药性日益增强,侵袭性念珠菌病在免疫功能低下人群中的高致死率愈发令人担忧。迫切需要对念珠菌的基础生物学、流行病学和系统发育学以及潜在的新型抗真菌药物进行更多研究。CGD通过整理已发表的基于基因的念珠菌实验文献,提取、组织和规范基因注释,满足了这个多元化研究群体的需求。为耳念珠菌添加了基因页面,最近该菌的爆发被列为“紧急”威胁。最近,我们已开始将疾病的临床数据与相关文献主题相链接,以提高临床研究人员的搜索便利性。由于CGD为多个物种进行整理,且大多数研究集中在与致病性相关的方面,我们将整理工作重点放在分配文献主题标签、收集详细的突变体表型数据以及分配带有相应证据代码的受控基因本体学术语上。每个特征的总结页面包括该基因座的主要名称和所有别名、基因和/或基因产物的描述、带有链接的详细直系同源信息、一个JBrowse窗口(可直观查看该基因在其染色体上的位置)、总结的表型、基因本体学术语和序列信息、总结页面本身引用的参考文献以及任何基因座注释。该数据库充当了一个社区中心,我们在其中链接到与念珠菌研究人员相关的各类参考资料,包括同行信息、新闻以及即将召开会议的通知。我们定期开展社区调研,以了解该领域的发展动态以及需求可能发生的变化。例如,我们询问用户接下来应将哪个物种添加到CGD中,得到的明确答案是热带念珠菌。未来的一个关键挑战是管理高通量表达数据的洪流,使其对尽可能多的研究人员尽可能有用。任何社区数据库面临的核心挑战都是将数据转化为知识,供社区访问、使用并在此基础上进一步拓展。

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