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Omics-driven plant breeding through phenomics-enviromics crosstalk.

Huihui Li · Shang Gao · Takele Weldu Gebrewahid · Wenxue Li · Jiankang Wang · Zanping Han · Matthew Reynolds · J. L. Araus · Sarah Hearne · Yunbi Xu

Nature Communications · 12 Jun 2026 · 10.1038/s41467-026-73097-x

Abstract

Genomics, including all molecular omics, is driven by molecular data, while phenomics and enviromics rely on phenotypic and environmental data. Yet phenotyping is often conducted under poorly characterized environments, limiting the interpretation of phenotypic variation and constraining genetic gain. Integrating high-throughput phenotyping with envirotyping is hence vital to resolve genomic effects. This perspective introduces phenomics-enviromics (PE) crosstalk as a framework for coordinated data collection and integration to advance omics and precision plant breeding. Satellites, unmanned aerial and ground vehicles, and controlled indoor facilities, combined with AI-assisted typing technologies and modeling, are establishing the basis for synchronous, high-throughput PE crosstalk to enhance interpretability, prediction, and crop resilience. Genomics, phenomics, and enviromics constitute the G–P–E triangle in plant breeding, yet enviromics and its interaction with phenomics remain underexplored. Here, the authors introduce phenomics–enviromics (PE) crosstalk and discuss its coordinated data-collection and -integration into next-generation plant breeding.

Code and data availability

This is a perspective/review article with no paper-specific phenotype datasets, plant images, sensor data, analysis code, or trained models. The only URLs present are the Creative Commons license, BioRender figure-creation links (illustration tooling, not phenotyping assets), and a correction DOI — none qualify as a公共,

No evidence-backed public reproduction asset is currently recorded.