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July 1, 2018Nature Biotechnology1,722 citationsOpen Access

KBase: The United States Department of Energy Systems Biology Knowledgebase

AAAdam P. ArkinRCRobert W. CottinghamCHChristopher S. Henry

Key Points

  • The central aim is to provide a platform that facilitates the prediction and design of biological functions across different scales.
  • Developed a comprehensive open-source software and data platform for systems biology.
  • Enabled collaborative hypothesis generation and large-scale analyses using scalable computing.
  • Integrated tools for (meta)genome assembly, annotation, and various omics analyses.
  • KBase allows users to model plant and microbial physiology with extensive analytical capabilities.
  • Researchers can build, share, and publish reproducible analyses easily.
  • The platform promotes collaboration and knowledge sharing among the biological research community.

Abstract

The U.S. Department of Energy Systems Biology Knowledgebase (KBase, http://kbase.us) is an open-source software and data platform designed to tackle the grand challenge of systems biology—predicting and designing biological function at scales ranging from the biomolecular to the ecological. KBase is available for anyone to use, and enables researchers to collaboratively generate, test, compare, and share hypotheses about biological functions; perform large analyses on scalable computing infrastructure; and combine experimental evidence and conclusions to model plant and microbial physiology and community dynamics. The KBase platform has extensible analytical capabilities that currently include (meta)genome assembly, annotation, comparative genomics, transcriptomics, and metabolic modeling; a web-based user interface that supports building, sharing, and publishing reproducible and well-annotated analyses with integrated data; and a software development kit that enables the community to add functionality to the system.

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Cite This Study

Arkin et al. (2018) studied this question.

synapsesocial.com/papers/69d9a6ce2a25b240b7a3d494https://doi.org/10.1038/nbt.4163
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