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Abscisic acid reduces Cd accumulation by regulating Cd transport and cell wall sequestration in rice

Zhijun Xu1,2Jiashi Peng3Yanlei Fu4Jing Zhao2,5Yan Peng1Bohan Liu1Xujun Hu4Yuchuan Liu4Meijuan Duan1,6Nenghui Ye1( )Zhenxie Yi1( )Shuan Meng1,2( )
Hunan Provincial Key Laboratory of Rice Stress Biology/College of Agronomy, Hunan Agricultural University, Changsha 410128, China
Yuelushan Laboratory, Changsha 410128, China
Hunan Key Laboratory of Economic Crops Genetic Improvement and Integrated Utilization, Hunan University of Science and Technology, Xiangtan 411201, China
OE Biotech Co., Ltd., Shanghai 201112, China
College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha 410128, China
Hunan Women's University, Changsha 410004, China
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Highlights

  • Numerous abscisic acid (ABA)-related genes are responsive to cadmium (Cd) stress in rice plants.

  • ABA reduces Cd accumulation by suppressing Cd uptake and regulating cell wall sequestration.

  • Foliar spraying of ABA during the grain-filling stage reduces Cd accumulation in rice grains.

Abstract

Cadmium (Cd) uptake by rice plants and its subsequent movement through food chains pose a notable risk to the health of both plants and humans. Therefore, understanding the fundamental mechanisms underlying the uptake and movement process is essential. Through transcriptome analysis, we found that numerous abscisic acid (ABA)-related genes responded to Cd stress. Exogenous application of ABA significantly reduced Cd accumulation in the shoots and roots of rice plants. The increased ascorbate peroxidase (APX) enzyme activity, decreased H2O2 content, and elevated Cd tolerance index collectively suggest that ABA may mitigate the toxicity of Cd in rice plants. Further study revealed that exogenous ABA reduced Cd accumulation by regulating Cd transport and cell wall sequestration. Consistently, mutation of the ABA signaling factor OsABI5 resulted in a significant increase in Cd accumulation in shoots. Moreover, foliar spraying of ABA during the grain-filling stage significantly reduced Cd accumulation in rice grains, which was attributed mainly to decreased Cd uptake and the inhibition of Cd transportation from roots to shoots and from leaves to grains. These findings elucidate the underlying mechanisms of the ABA-mediated response to Cd stress in rice and provide a practical reference for coping with Cd pollution in farmlands.

References

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Journal of Integrative Agriculture (JIA)
Pages 3703-3718

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Cite this article:
Xu Z, Peng J, Fu Y, et al. Abscisic acid reduces Cd accumulation by regulating Cd transport and cell wall sequestration in rice. Journal of Integrative Agriculture (JIA), 2025, 24(10): 3703-3718. https://doi.org/10.1016/j.jia.2025.02.010

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Received: 26 November 2024
Revised: 24 December 2024
Accepted: 26 December 2024
Published: 10 February 2025
© 2025, Chinese Academy of Agricultural Sciences (CAAS). All rights reserved.