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Biolink Model Python 3.9 DOI

Biolink Model

Biolink Model: https://w3id.org/biolink/biolink-model.yaml

Quickstart docs:

For a good overview of the biolink-model, watch Chris Mungall's talk at ICBO 2020.

Refer to the following resources for a quick introduction to the Biolink Model:

See also the Biolink Model Documentation for help in understanding, curating, and working with the model.

Installation

The default install pulls in pydantic and linkml-runtime. It is enough to use both generated Python datamodels (biolink_model.datamodel.pydanticmodel_v2 and biolink_model.datamodel.model), build a SchemaView, run the generate_viz_json script, and access the bundled schema and prefix-map data files (biolink_model/schema/*.yaml, biolink_model/prefixmaps/*.json) as package data (for example, with importlib.resources):

pip install biolink-model

Additional functionality is available through extras:

Extra Adds Use it for
scripts linkml, rdflib, curies The model generation/maintenance scripts under src/biolink_model/scripts/ (invoked via the Makefile)
docs mkdocs, mkdocs-material, mkdocs-mermaid2-plugin Building the documentation site
all all of the above Everything
pip install "biolink-model[scripts]"    # generation/maintenance scripts
pip install "biolink-model[all]"        # everything

Introduction

The purpose of the Biolink Model is to provide a high-level datamodel of biological entities (genes, diseases, phenotypes, pathways, individuals, substances, etc), their properties, relationships, and enumerate ways in which they can be associated.

The representation is independent of storage technology or metamodel (Solr documents, neo4j/property graphs, RDF/OWL, JSON, CSVs, etc). Different mappings to each of these are provided.

The specification of the Biolink Model is a single YAML file built using linkml. The basic elements of the YAML are:

  • Class Definitions: definitions of upper level classes representing both 'named thing' and 'association'
  • Slot Definitions: definitions of slots (aka properties) that can be used to relate members of these classes to other classes or data types. Slots collectively refer to predicates, node properties, and edge properties

The model itself is being used in the following projects:

Organization

The main source of truth is biolink-model.yaml. This is a YAML file that is intended to be relatively simple to view and edit in its native form.

The yaml definition is currently used to derive:

Citing Biolink Model

Unni DR, Moxon SAT, Bada M, Brush M, Bruskiewich R, Caufield JH, Clemons PA, Dancik V, Dumontier M, Fecho K, Glusman G, Hadlock JJ, Harris NL, Joshi A, Putman T, Qin G, Ramsey SA, Shefchek KA, Solbrig H, Soman K, Thessen AE, Haendel MA, Bizon C, Mungall CJ, The Biomedical Data Translator Consortium (2022). Biolink Model: A universal schema for knowledge graphs in clinical, biomedical, and translational science. Clin Transl Sci. Wiley; 2022 Jun 6; https://onlinelibrary.wiley.com/doi/10.1111/cts.13302