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Received — 15 September 2026 ⏭ Nature Biotechnology - Issue - nature.com science feeds

An engineered nanopore identifies saccharides, amino acids, peptides and ribonucleotides

Nature Biotechnology, Published online: 14 September 2026; doi:10.1038/s41587-026-03308-9

Modified nanopore simultaneously identifies diverse biomolecules and their modifications.
Received — 10 September 2026 ⏭ Nature Biotechnology - Issue - nature.com science feeds

Accelerating natural CO<sub>2</sub> removal from the atmosphere with ocean bacteria

Nature Biotechnology, Published online: 03 September 2026; doi:10.1038/s41587-026-03287-x

Bacterial siderophores can accelerate mineral dissolution, a natural rock weathering process that traps CO2 in alkaline seawater. We demonstrate that engineering of siderophore production and selection of renewable feedstock to feed the siderophore-producing bacteria are sufficient to achieve net carbon removal at large scales.

Machine learning interprets genome sequences to map possible microbial symbionts

Nature Biotechnology, Published online: 02 September 2026; doi:10.1038/s41587-026-03212-2

A machine-learning framework called symclatron uses genome sequencing content to predict whether uncultivated bacteria and archaea live independently or in close association with hosts. Applied to a global genome collection, it suggests that host-dependent microbes are widespread across Earth’s biomes and microbial phyla.

Ensuring multiomics data reproducibility for artificial intelligence with reference materials as a common calibrator

Nature Biotechnology, Published online: 01 September 2026; doi:10.1038/s41587-026-03267-1

Reference materials should be adopted as a common calibrator for multiomics measurement and co‑profiled with study samples. Multiomics results should be reported as sample‑to‑reference ratios so that they are reproducible and suitable for artificial intelligence tools.
Received — 27 May 2026 ⏭ Nature Biotechnology - Issue - nature.com science feeds

Author Correction: DNA-guided CRISPR–Cas12a effectors for programmable RNA recognition and cleavage

Nature Biotechnology, Published online: 26 May 2026; doi:10.1038/s41587-026-03180-7

Author Correction: DNA-guided CRISPR–Cas12a effectors for programmable RNA recognition and cleavage

Improving multimodal wearable sensing for healthcare with artificial intelligence

Nature Biotechnology, Published online: 26 May 2026; doi:10.1038/s41587-026-03134-z

This Comment explores artificial intelligence-driven strategies to accelerate the clinical translation of multimodal wearable sensors. We outline key data-science challenges and highlight disease contexts in which these systems could support therapeutic interventions.

A framework for building a synthetic cell from the SynCell Asia Initiative

Nature Biotechnology, Published online: 26 May 2026; doi:10.1038/s41587-026-03153-w

Building a living cell from scratch requires overcoming a bottleneck that has remained unresolved despite decades of progress: orchestrating the spatiotemporal integration of core functional modules. To tackle this barrier, the SynCell Asia Initiative outlines a strategy for developing core functional modules followed by their systems-level integration through the establishment of a centralized, artificial intelligence (AI)-driven biofoundry.
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