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August 16, 2025Nature Communications22 citationsOpen Access

Pangenome analysis of transposable element insertion polymorphisms reveals features underlying cold tolerance in rice

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YQYong-Qing QianZZZu-Wen ZhouTOTao Ouyang

Key Points

  • Cold tolerance genes OsCACT and OsPTR are identified through transposable element insertion polymorphism analysis, indicating their role in rice adaptability.
  • A total of 30,316 transposable element insertion polymorphism sites were discovered across 165 rice accessions, highlighting significant genetic diversity.
  • Analysis involved a pangenome graph and resequencing data, demonstrating the impact of transposable elements on epigenetic differentiation under cold stress.
  • Findings suggest that transposable elements are crucial for regulatory networks in rice response to cold, with potential applications in breeding efforts.

Abstract

Transposable elements (TEs) introduce genetic and epigenetic variability, contributing to gene expression patterns that drive adaptive evolution in plants. Here, we investigate TE architecture and its effect on cold tolerance in rice. By analyzing a pangenome graph and the resequencing data of 165 rice accessions, we identify 30,316 transposable element insertion polymorphism (TIP) sites, highlighting significant diversity among polymorphic TEs (pTEs). We observe that pTEs exhibit increased H3K27me3 enrichment, suggesting a potential role in epigenetic differentiation under cold stress and in the transcriptional regulation of the cold response. We identify 26,914 TEs responsive to cold stress from transcriptome data, indicating their potential significance in regulatory networks for this response. Our TIP-GWAS analysis reveal two cold tolerance genes OsCACT and OsPTR. The biological functions of these genes are confirmed using knockout and overexpression lines. Our web tool ( https://cbi.gxu.edu.cn/RICEPTEDB/ ) makes all pTEs available to researchers for further analysis. These findings provide valuable targets for breeding cold-tolerant rice varieties, indicating the potential importance of pTEs in crop enhancement.

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Cite This Study

Qian et al. (2025) studied this question.

synapsesocial.com/papers/68af4314ad7bf08b1ead15c2https://doi.org/10.1038/s41467-025-62887-4
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