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regulates drought and salt tolerance in rice. | LitMetric

regulates drought and salt tolerance in rice.

Physiol Mol Biol Plants

State Key Laboratory of Biocatalysis and Enzyme Engineering, Hubei Collaborative Innovation Center for Green Transformation of Bio-Resources, Hubei Key Laboratory of Industrial Biotechnology, School of Life Sciences, Hubei University, Wuhan, 430062 China.

Published: November 2024

AI Article Synopsis

  • The NAC transcription factors are crucial for rice's tolerance to abiotic stresses like drought and salt.
  • In this study, a specific NAC TF named OsNAC15 was identified, which enhances drought and salt tolerance by promoting the biosynthesis of abscisic acid (ABA).
  • Manipulating OsNAC15 levels showed that its loss makes rice plants more sensitive to stress, while overexpression increases their resilience, highlighting its potential for improving crop tolerance to environmental stresses.

Article Abstract

Unlabelled: The NAC (NAM, ATAF1/2 and CUC2) transcription factors (TFs) play important roles in rice abiotic stress tolerance. has been reported to regulate zinc deficiency and cadmium tolerance. However, the roles of in rice drought and salt tolerance are largely unknown. In this study, we characterized a nuclear-localized NAC TF in rice, , that positively regulates drought and salt tolerance and directly participates in the biosynthesis of abscisic acid (ABA). Drought and salt treatment significantly induce the expression of Loss of could made plants more sensitive to drought and salt stress and led to the accumulation of more HO and malondialdehyde (MDA) in vivo after drought and salt stress, while overexpression of in plants showed stronger tolerance to drought and salt stress. Results of yeast one-hybrid assay and dual-luciferase (LUC) assay revealed that OsNAC15 interacted with the promoters of nine-cis-epoxycarotenoid dehydrogenases (NCEDs) genes ( and ), which are essential genes for ABA biosynthesis in rice, and promoted the expression of these target genes. In summary, our study reveals that OsNAC15, a NAC TF, may enhance drought and salt tolerance in rice by activating the promoters of key ABA biosynthesis genes ( and ). These results can contribute to further study on the regulatory mechanisms of drought and salt tolerance in rice.

Supplementary Information: The online version contains supplementary material available at 10.1007/s12298-024-01529-3.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11646237PMC
http://dx.doi.org/10.1007/s12298-024-01529-3DOI Listing

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