State Key Laboratory of Microbial Metabolism and School of Life Sciences & Biotechnology, Shanghai Jiaotong University, Shanghai 200030, China.
Nucleic Acids Res. 2012 Jan;40(Database issue):D621-6. doi: 10.1093/nar/gkr846. Epub 2011 Oct 18.
ICEberg (http://db-mml.sjtu.edu.cn/ICEberg/) is an integrated database that provides comprehensive information about integrative and conjugative elements (ICEs) found in bacteria. ICEs are conjugative self-transmissible elements that can integrate into and excise from a host chromosome. An ICE contains three typical modules, integration and excision, conjugation, and regulation modules, that collectively promote vertical inheritance and periodic lateral gene flow. Many ICEs carry likely virulence determinants, antibiotic-resistant factors and/or genes coding for other beneficial traits. ICEberg offers a unique, highly organized, readily explorable archive of both predicted and experimentally supported ICE-relevant data. It currently contains details of 428 ICEs found in representatives of 124 bacterial species, and a collection of >400 directly related references. A broad range of similarity search, sequence alignment, genome context browser, phylogenetic and other functional analysis tools are readily accessible via ICEberg. We propose that ICEberg will facilitate efficient, multi-disciplinary and innovative exploration of bacterial ICEs and be of particular interest to researchers in the broad fields of prokaryotic evolution, pathogenesis, biotechnology and metabolism. The ICEberg database will be maintained, updated and improved regularly to ensure its ongoing maximum utility to the research community.
ICEberg(http://db-mml.sjtu.edu.cn/ICEberg/)是一个综合性数据库,提供了关于细菌中发现的整合和共轭元件(ICEs)的综合信息。ICEs 是可整合并从宿主染色体中切除的共轭自我传输元件。ICE 包含三个典型模块,即整合和切除、共轭和调节模块,它们共同促进垂直遗传和周期性水平基因流。许多 ICEs 携带可能的毒力决定因素、抗生素抗性因子和/或编码其他有益特征的基因。ICEberg 提供了一个独特的、高度组织化的、易于探索的预测和实验支持的 ICE 相关数据档案。它目前包含了 124 种细菌代表中发现的 428 个 ICE 的详细信息,以及超过 400 个直接相关的参考文献。通过 ICEberg 可以方便地访问广泛的相似性搜索、序列比对、基因组上下文浏览器、系统发育和其他功能分析工具。我们提出,ICEberg 将促进细菌 ICEs 的高效、多学科和创新探索,对原核进化、发病机制、生物技术和代谢等广泛领域的研究人员特别感兴趣。ICEberg 数据库将定期维护、更新和改进,以确保其对研究界的持续最大效用。