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PubMed · 42735683

Balancing growth and immunity of potato by humidity-dependent expression of a late blight resistance gene.

Abstract

Inducible expression of resistance genes is an effective approach to balance plant growth and immunity, thus facilitating the development of disease-resistant crop cultivars. While pathogen-responsive and immunity-related promoters have been adopted for this purpose, alternative design strategies remain to be explored. High relative humidity (RH) has been recognized as a crucial permissive environmental condition for the occurrence of devastating plant diseases including tomato and potato late blight. Here, we identified humidity-activated cis-regulatory elements (HAEs) in Solanum lycopersicum through an integrative analysis of transcriptomics and chromatin accessibility data. Sequence homology-inferred HAEs in S. tuberosum can predict humidity-elicited changes in downstream gene expression. Transgenic S. tuberosum lines expressing a late blight resistance gene driven by an artificial humidity-inducible promoter containing a natural S. tuberosum HAE were generated. These transgenic lines exhibited comparable late blight resistance levels to the lines overexpressing the same resistance gene in controlled zoospore inoculation bioassays, while avoiding growth suppression and tuber yield penalties in common garden experiments. Our findings highlight the importance of plant cis-regulatory elements in the transcriptional responses to high RH and provide a proof-of-concept for a humidity-inducible environment-responsive resistance gene deployment strategy to engineer disease-resistant crop cultivars without compromising growth and yield.

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BibTeXRIS

Sheng Yu, Yantao Wang, Zhiqing Wang, Na Li, Caiyan Ma, Tao Li, Yuwen Liu, Suomeng Dong, Peitao Lü, Sanwen Huang, Shaoqun Zhou. 2026-09-14. Balancing growth and immunity of potato by humidity-dependent expression of a late blight resistance gene.. https://doi.org/10.1016/j.cub.2026.08.048

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