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◆ Natural product reports2026-09-11

Accelerating natural product discovery, characterization and engineering by biofoundries.

Ling Hu, Yuwei Pan, Huimin Zhao

原始摘要(英文原文)· Original abstract
Covering: From early developments to the presentNatural product (NP) discovery is increasingly constrained by low-throughput screening, repeated rediscovery, and challenges in scaling genome mining-guided validation workflows. This highlight examines how automated biofoundries are accelerating NP discovery, characterization, and engineering through integrated design-build-test-learn (DBTL) cycles. We discuss recent advances in phenotype-first and genome-first discovery strategies enabled by robotics, high-throughput pathway reconstitution, and automated screening platforms. We further highlight emerging technologies, including cell-free biosynthesis, automated culturomics, programmable chassis engineering, and AI-assisted workflow orchestration, that may enable increasingly autonomous biofoundries for scalable exploration of NP chemical space and therapeutic discovery.
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Accelerating natural product discovery, characterization and engineering by biofoundries. — 科研速览 Science Skim