The C2H2-Type Zinc Finger Protein OsZFP179 Positively Regulates Cadmium Tolerance by Transcriptionally Activating OsGSTU19 in Rice

Abstract Cadmium (Cd) contamination threatens rice quality and food safety. Although C2H2-type zinc finger proteins (ZFPs) regulate abiotic stress responses, their roles in rice Cd detoxification are largely unknown. Here, we show that OsZFP179 positively regulates Cd tolerance. OsZFP179 is Cd-inducible and nuclear-localized. Its loss-of-function mutants display Cd hypersensitivity, reduced Cd accumulation, and increased oxidative damage, while complementation restores the wild-type phenotype. Transcriptome analysis reveals that Cd-induced expression of OsGSTU19, a glutathione S-transferase gene, depends on OsZFP179. Mechanistically, OsZFP179 directly binds AG-rich motifs in the OsGSTU19 promoter to activate its transcription, as supported by ChIP-qPCR, EMSA, Y1H, and dual-luciferase assays. Importantly, OsGSTU19 overexpression rescues the Cd-sensitive phenotype of oszfp179. Together, our findings establish the OsZFP179–OsGSTU19 module as a novel pathway enhancing Cd tolerance in rice, offering potential targets for breeding low-Cd varieties.

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Publication Details

Journal
Journal of Agricultural and Food Chemistry
Published
2026-10-05
DOI
https://doi.org/10.1021/acs.jafc.6c07038
Primary Topic
Plant Stress Responses and Tolerance
Type
article
Field-Weighted Citation Impact
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article

The C2H2-Type Zinc Finger Protein OsZFP179 Positively Regulates Cadmium Tolerance by Transcriptionally Activating OsGSTU19 in Rice

Shubao Hu, Qiang Zhou, Keying Ding, Hui Wang et al.
Journal of Agricultural and Food Chemistry
Plant Stress Responses and Tolerance
article

The C2H2-Type Zinc Finger Protein OsZFP179 Positively Regulates Cadmium Tolerance by Transcriptionally Activating OsGSTU19 in Rice

Shubao Hu, Qiang Zhou, Keying Ding, Hui Wang, Zixuan Gu, Zhiya Zhang, Xinyue Wang, Dehao Zhu, Tianyu Da, Wei Sun, E. Ji
article en

Abstract

Abstract Cadmium (Cd) contamination threatens rice quality and food safety. Although C2H2-type zinc finger proteins (ZFPs) regulate abiotic stress responses, their roles in rice Cd detoxification are largely unknown. Here, we show that OsZFP179 positively regulates Cd tolerance. OsZFP179 is Cd-inducible and nuclear-localized. Its loss-of-function mutants display Cd hypersensitivity, reduced Cd accumulation, and increased oxidative damage, while complementation restores the wild-type phenotype. Transcriptome analysis reveals that Cd-induced expression of OsGSTU19, a glutathione S-transferase gene, depends on OsZFP179. Mechanistically, OsZFP179 directly binds AG-rich motifs in the OsGSTU19 promoter to activate its transcription, as supported by ChIP-qPCR, EMSA, Y1H, and dual-luciferase assays. Importantly, OsGSTU19 overexpression rescues the Cd-sensitive phenotype of oszfp179. Together, our findings establish the OsZFP179–OsGSTU19 module as a novel pathway enhancing Cd tolerance in rice, offering potential targets for breeding low-Cd varieties.

Journal of Agricultural and Food Chemistry
Jishou University (CN), Anqing Normal University (CN)
Openalex Percentile: Top 14%
Plant Stress Responses and Tolerance
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