4.7 Review

The Roles of Temperature-Related Post-Transcriptional Regulation in Cereal Floral Development

期刊

PLANTS-BASEL
卷 10, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/plants10112230

关键词

cereal crops; temperature; alternative splicing; non-coding RNA; breeding targets

资金

  1. UKRI [MR/S031677/1]
  2. The Rank Prize New Lecturer award
  3. UKRI [MR/S031677/1] Funding Source: UKRI

向作者/读者索取更多资源

Temperature is a critical environmental signal in regulating plant growth and development, leading to the evolution of multiple temperature responsive regulatory mechanisms at the molecular level in plants. Recent studies have identified and understood these molecular mechanisms in temperate cereals, and developed methods to increase the robustness of crop yield.
Temperature is a critical environmental signal in the regulation of plant growth and development. The temperature signal varies across a daily 24 h period, between seasons and stochastically depending on local environmental events. Extracting important information from these complex signals has led plants to evolve multiple temperature responsive regulatory mechanisms at the molecular level. In temperate cereals, we are starting to identify and understand these molecular mechanisms. In addition, we are developing an understanding of how this knowledge can be used to increase the robustness of crop yield in response to significant changes in local and global temperature patterns. To enable this, it is becoming apparent that gene regulation, regarding expression and post-transcriptional regulation, is crucial. Large transcriptomic studies are identifying global changes in spliced transcript variants and regulatory non-coding RNAs in response to seasonal and stress temperature signals in many of the cereal crops. Understanding the functions of these variants and targets of the non-coding RNAs will greatly increase how we enable the adaptation of crops. This review considers our current understanding and areas for future development.

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