<p>Climate change and soil degradation pose increasingly serious threats to global food security, highlighting the need for continued innovation and diversification in plant breeding strategies. Plant growth and development rely on precise and dynamic regulation of gene expression that enables rapid responses to environmental cues. Increasing evidence highlights the central roles of <i>cis</i>-regulatory elements (CREs), including RNA sequence motifs, RNA modifications, and secondary or tertiary RNA structures, in post-transcriptional control. These CREs are enriched within the untranslated regions (UTRs) of plant mRNAs. In this review, we summarize the diverse CREs characterized to date, particularly those located within the 3′UTR, and describe how they function together with trans-acting factors like RNA-binding proteins to regulate mRNA stability, translation efficiency, subcellular localization, and non-cell-autonomous mobility. These processes constitute key mechanisms for the spatiotemporal regulation of gene expression that underlies plant environmental responses and resilience. We further discuss emerging opportunities and challenges in harnessing 3′UTR CREs as targets and tools for next-generation crop improvement. By integrating recent advances in post-transcriptional biology with molecular breeding frameworks, 3′UTR CREs offer a promising framework for achieving precise, tunable, and robust regulation of agronomically important traits.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Editing the message: 3′UTR cis-regulatory elements at the nexus of post-transcriptional regulation and crop improvement

  • Zeqin Zhang,
  • Sirui Liu,
  • Saikat Paul,
  • Michitaka Notaguchi,
  • Wenna Zhang,
  • Munenori Kitagawa

摘要

Climate change and soil degradation pose increasingly serious threats to global food security, highlighting the need for continued innovation and diversification in plant breeding strategies. Plant growth and development rely on precise and dynamic regulation of gene expression that enables rapid responses to environmental cues. Increasing evidence highlights the central roles of cis-regulatory elements (CREs), including RNA sequence motifs, RNA modifications, and secondary or tertiary RNA structures, in post-transcriptional control. These CREs are enriched within the untranslated regions (UTRs) of plant mRNAs. In this review, we summarize the diverse CREs characterized to date, particularly those located within the 3′UTR, and describe how they function together with trans-acting factors like RNA-binding proteins to regulate mRNA stability, translation efficiency, subcellular localization, and non-cell-autonomous mobility. These processes constitute key mechanisms for the spatiotemporal regulation of gene expression that underlies plant environmental responses and resilience. We further discuss emerging opportunities and challenges in harnessing 3′UTR CREs as targets and tools for next-generation crop improvement. By integrating recent advances in post-transcriptional biology with molecular breeding frameworks, 3′UTR CREs offer a promising framework for achieving precise, tunable, and robust regulation of agronomically important traits.