Department of Plant Bio Sciences, Faculty of Agriculture, Iwate University, Morioka 020-8550, Japan.
State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, Guangxi Key Lab of Sugarcane Biology, College of Agriculture, Guangxi University, Nanning 530004, China.
Int J Mol Sci. 2020 Nov 10;21(22):8441. doi: 10.3390/ijms21228441.
The phytohormone auxin and microRNA-mediated regulation of gene expressions are key regulators of plant growth and development at both optimal and under low-temperature stress conditions. However, the mechanistic link between microRNA and auxin in regulating plant cold stress response remains elusive. To better understand the role of microRNA (miR) in the crosstalk between auxin and cold stress responses, we took advantage of the mutants of with altered response to auxin transport and signal. Screening of the mutants for root growth recovery after cold stress at 4 °C revealed that the auxin signaling mutant, solitary root 1 (; mutation in ), shows a hypersensitive response to cold stress. Genome-wide expression analysis of miRs in the wild-type and mutant roots using next-generation sequencing revealed 180 known and 71 novel cold-responsive microRNAs. Cold stress also increased the abundance of 26-31 nt small RNA population in compared with wild type. Comparative analysis of microRNA expression shows significant differential expression of 13 known and 7 novel miRs in at 4 °C compared with wild type. Target gene expression analysis of the members from one potential candidate miR, miR169, revealed the possible involvement of miR169/ module in the Aux/IAA14-mediated cold stress response. Taken together, these results indicate that SLR/IAA14, a transcriptional repressor of auxin signaling, plays a crucial role in integrating miRs in auxin and cold responses.
植物激素生长素和 microRNA 介导的基因表达调控是植物在最佳和低温胁迫条件下生长和发育的关键调节剂。然而,microRNA 和生长素在调节植物冷应激反应中的机制联系仍不清楚。为了更好地理解 microRNA (miR) 在生长素和冷应激反应之间串扰中的作用,我们利用改变生长素运输和信号响应的突变体进行研究。在 4°C 低温胁迫后对突变体的根生长恢复进行筛选,结果表明生长素信号突变体 solitary root 1 ( ; 突变位于 ) 对冷胁迫表现出超敏反应。使用下一代测序对野生型和 突变体根中的 miRs 进行全基因组表达分析,揭示了 180 个已知和 71 个新的冷响应 microRNAs。与野生型相比,冷胁迫还增加了 中 26-31 nt 小 RNA 群体的丰度。与野生型相比,microRNA 表达的比较分析显示,在 4°C 时,13 个已知和 7 个新的 miR 在 中有显著差异表达。对一个潜在候选 miR miR169 的成员的靶基因表达分析表明,miR169/模块可能参与了 Aux/IAA14 介导的冷应激反应。总之,这些结果表明,SLR/IAA14,生长素信号的转录抑制子,在整合生长素和冷反应中的 microRNAs 方面发挥着关键作用。