Many of the questions that matter in enterprise data aren't just about individual rows — they're about how things connect: how two accounts are linked, what path a payment took, what context grounds an AI agent's answer. That’s what a graph is built to solve. Historically, unlocking these insights meant extracting data into standalone graph databases, creating silos and operational overhead. To remove these barriers, we brought native graph capabilities directly to the data warehouse. Today, we are announcing the general availability of BigQuery Graph .
We introduced BigQuery Graph in preview to unify graph and relational analytics. ISO-standard Graph Query Language (GQL) sits alongside SQL, traversals run natively, and there’s no ETL. And because it’s built on BigQuery, BigQuery Graph inherits and expands its capabilities: It reaches petabyte-scale without the memory bottlenecks of a scale-up database, runs under your existing row- and column-level security, and calls BigQuery ML and AI functions in the same query. One engine, two jobs — large-scale graph analytics, and connected context for AI agents.
"BigQuery Graph has been a game-changer for our threat detection pipeline, allowing us to move beyond simple, siloed alerts. By modeling our security signal data as a property graph, we can now perform complex, multi-hop traversals in seconds - something that was previously computationally prohibitive. This graph-centric approach automatically clusters anomalies into coherent attack stories, which, combined with the seamless integration of Gemini models, helps us generate actionable threat narratives. We look forward to integrating native BigQuery Graph algorithms to further streamline our workflows.
" - Pete Rubio, VP of Global engineering at Thales Cybersecurity Products Since preview, we saw data teams across industries adopt BigQuery Graph for both analytical and agentic workflows: Threat and fraud detection: Security and financial organizations correlate signals across event logs to uncover multi-hop attack paths, fraud networks, and suspicious transaction loops. Supply chain digital twins : Manufacturing and logistics organizations map dependencies across suppliers, parts, and distribution routes to simulate disruptions and optimize fulfillment.
