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基因组在线数据库(GOLD)v.10:新特性与更新

Genomes OnLine Database (GOLD) v.10: new features and updates.

作者信息

Mukherjee Supratim, Stamatis Dimitri, Li Cindy Tianqing, Ovchinnikova Galina, Kandimalla Mahathi, Handke Van, Reddy Anuha, Ivanova Natalia, Woyke Tanja, Eloe-Fardosh Emiley A, Chen I-Min A, Kyrpides Nikos C, Reddy T B K

机构信息

DOE Joint Genome Institute, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley, CA 94720, USA.

出版信息

Nucleic Acids Res. 2025 Jan 6;53(D1):D989-D997. doi: 10.1093/nar/gkae1000.

DOI:10.1093/nar/gkae1000
PMID:39498478
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11701667/
Abstract

The Genomes OnLine Database (GOLD; https://gold.jgi.doe.gov/) at the Department of Energy Joint Genome Institute is a comprehensive online metadata repository designed to catalog and manage information related to (meta)genomic sequence projects. GOLD provides a centralized platform where researchers can access a wide array of metadata from its four organization levels namely Study, Organism/Biosample, Sequencing Project and Analysis Project. GOLD continues to serve as a valuable resource and has seen significant growth and expansion since its inception in 1997. With its expanded role as a collaborative platform, it not only actively imports data from other primary repositories like National Center for Biotechnology Information but also supports contributions from researchers worldwide. This collaborative approach has enriched the database with diverse datasets, creating a more integrated resource to enhance scientific insights. As genomic research becomes increasingly integral to various scientific disciplines, more researchers and institutions are turning to GOLD for their metadata needs. To meet this growing demand, GOLD has expanded by adding diverse metadata fields, intuitive features, advanced search capabilities and enhanced data visualization tools, making it easier for users to find and interpret relevant information. This manuscript provides an update and highlights the new features introduced over the last 2 years.

摘要

美国能源部联合基因组研究所的基因组在线数据库(GOLD;https://gold.jgi.doe.gov/)是一个综合性在线元数据存储库,旨在编目和管理与(元)基因组序列项目相关的信息。GOLD提供了一个集中式平台,研究人员可以从其四个组织层面,即研究、生物/生物样本、测序项目和分析项目,访问大量元数据。自1997年成立以来,GOLD一直是一个有价值的资源,并实现了显著的增长和扩展。随着其作为协作平台的作用不断扩大,它不仅积极从美国国立生物技术信息中心等其他主要存储库导入数据,还支持全球研究人员的贡献。这种协作方式用多样的数据集丰富了数据库,创建了一个更综合的资源以增强科学见解。随着基因组研究在各科学学科中变得越来越不可或缺,越来越多的研究人员和机构转向GOLD来满足他们的元数据需求。为满足这一日益增长的需求,GOLD通过添加多样的元数据字段、直观的功能、先进的搜索能力和增强的数据可视化工具进行了扩展,使用户更容易找到和解释相关信息。本手稿提供了最新情况,并重点介绍了过去两年引入的新功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3073/11701667/98a79879f0fa/gkae1000figgra1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3073/11701667/98a79879f0fa/gkae1000figgra1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3073/11701667/98a79879f0fa/gkae1000figgra1.jpg

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3
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5
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6
International Code of Nomenclature of Prokaryotes. Prokaryotic Code (2022 Revision).《国际原核生物命名法规》。《原核生物法规》(2022年修订版)
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