Multi-omics approach reveals the contribution of to rice cold tolerance.

Front Plant Sci

Rice Research Institute/Collaborative Innovation Center for Genetic Improvement and High Quality and Efficiency Production of Northeast Japonica Rice in China, Shenyang Agricultural University, Shenyang, China.

Published: January 2023

AI Article Synopsis

  • Plants adapt to cold stress through various physiological and metabolic changes, and this study identifies a specific gene involved in rice that helps regulate cold tolerance.* -
  • Analysis showed that rice plants with a knocked-out version of this gene had lower antioxidant enzyme activity and less flavonoids, which are important for managing reactive oxygen species (ROS) during cold stress compared to normal plants.* -
  • Combining transcriptome and metabolome data revealed that this gene influences the expression of defense-related genes and affects hormones like abscisic acid (ABA), playing a crucial role in how rice plants cope with cold temperatures.*

Article Abstract

As low environmental temperature adversely affects the growth, development and geographical distribution, plants have evolved multiple mechanisms involving changing physiological and metabolic processes to adapt to cold stress. In this study, we revealed that nucleoporin-coding gene was a positive regulator of cold stress in rice. Physiological assays showed that the activity of antioxidant enzymes showed a significant difference between knock-out lines and wild type under cold stress. Metabolome analysis revealed that the contents of large-scale flavonoids serving as ROS scavengers were lower in mutants compared with wild type under cold stress. Transcriptome analysis indicated that the DEGs between knock-out lines and wild type plants were enriched in defense response, regulation of hormone levels and oxidation-reduction process. Integration of transcriptomic and metabolic profiling revealed that plays a role in the oxidation-reduction process by coordinately regulating genes expression and metabolite accumulation involved in phenylpropanoid and flavonoid biosynthetic pathway. In addition, Exogenous ABA application assays indicated that lines had hypersensitive phenotypes compared with wild type plants, suggesting that may mediate cold tolerance by regulating ABA levels.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9880419PMC
http://dx.doi.org/10.3389/fpls.2022.1110724DOI Listing

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