Department of Genetic Medicine and Development, University of Geneva Medical School, 1211 Geneva, Switzerland.
Nucleic Acids Res. 2013 Jan;41(Database issue):D358-65. doi: 10.1093/nar/gks1116. Epub 2012 Nov 24.
The concept of orthology provides a foundation for formulating hypotheses on gene and genome evolution, and thus forms the cornerstone of comparative genomics, phylogenomics and metagenomics. We present the update of OrthoDB-the hierarchical catalog of orthologs (http://www.orthodb.org). From its conception, OrthoDB promoted delineation of orthologs at varying resolution by explicitly referring to the hierarchy of species radiations, now also adopted by other resources. The current release provides comprehensive coverage of animals and fungi representing 252 eukaryotic species, and is now extended to prokaryotes with the inclusion of 1115 bacteria. Functional annotations of orthologous groups are provided through mapping to InterPro, GO, OMIM and model organism phenotypes, with cross-references to major resources including UniProt, NCBI and FlyBase. Uniquely, OrthoDB provides computed evolutionary traits of orthologs, such as gene duplicability and loss profiles, divergence rates, sibling groups, and now extended with exon-intron architectures, syntenic orthologs and parent-child trees. The interactive web interface allows navigation along the species phylogenies, complex queries with various identifiers, annotation keywords and phrases, as well as with gene copy-number profiles and sequence homology searches. With the explosive growth of available data, OrthoDB also provides mapping of newly sequenced genomes and transcriptomes to the current orthologous groups.
同源性的概念为基因和基因组进化假说的制定提供了基础,因此构成了比较基因组学、系统发育基因组学和宏基因组学的基石。我们介绍了 OrthoDB——同源物层次目录(http://www.orthodb.org)的更新。从一开始,OrthoDB 就通过明确参照物种辐射的层次结构来促进不同分辨率的同源物的划分,现在这一方法也被其他资源所采用。目前的版本提供了 252 个真核生物物种的全面动物和真菌覆盖范围,现在通过纳入 1115 种细菌扩展到了原核生物。通过映射到 InterPro、GO、OMIM 和模式生物表型,为同源物组提供了功能注释,并与 UniProt、NCBI 和 FlyBase 等主要资源进行了交叉引用。OrthoDB 的独特之处在于提供了同源物的计算进化特征,例如基因的可复制性和丢失情况、分化率、同源物组以及现在扩展的外显子-内含子结构、共线性同源物和亲子树。交互式网络界面允许沿着物种系统发育进行导航,使用各种标识符、注释关键字和短语进行复杂查询,以及进行基因拷贝数谱和序列同源性搜索。随着可用数据的爆炸式增长,OrthoDB 还提供了将新测序的基因组和转录组映射到当前同源物组的功能。