Department of Plant Science, McGill University, 21, 111 Lakeshore, Sainte-Anne-de-Bellevue, Canada.
New Phytol. 2021 Feb;229(3):1615-1634. doi: 10.1111/nph.16945. Epub 2020 Oct 26.
Plants that successfully acclimate to stress can resume growth under stressful conditions. The grass Brachypodium distachyon can grow a cold-adaptive morphology during cold acclimation. Studies on transcriptional memory (TM) have revealed that plants can be primed for stress by adjusting their transcriptional responses, but the function of TM in stress acclimation is not well understood. We investigated the function of TM during cold acclimation in B. distachyon. Quantitative polymerase chain reaction (qPCR), RNA-seq and chromatin immunoprecipitation qPCR analyses were performed on plants exposed to repeated episodes of cold to characterize the presence and stability of TM during the stress and growth responses of cold acclimation. Transcriptional memory mainly dampened stress responses as growth resumed and as B. distachyon became habituated to cold stress. Although permanent on vernalization gene VRN1, TMs were short-term and reversible on cold-stress genes. Growing under cold conditions also coincided with the acquisition of new and targeted cold-induced transcriptional responses. Overall, TM provided plasticity to cold stress responses during cold acclimation in B. distachyon, leading to stress habituation, acquired stress responses, and resumed growth. Our study shows that chromatin-associated TMs are involved in tuning plant responses to environmental change and, as such, regulate both stress and developmental components that characterize cold-climate adaptation in B. distachyon.
成功适应压力的植物在压力条件下可以恢复生长。冷驯化过程中,短根茎雀麦可以生长出一种适应寒冷的形态。关于转录记忆(TM)的研究表明,植物可以通过调整其转录反应来为压力做好准备,但 TM 在压力适应中的功能还不是很清楚。我们研究了 TM 在短根茎雀麦冷驯化过程中的功能。对反复经历寒冷的植物进行定量聚合酶链反应(qPCR)、RNA-seq 和染色质免疫沉淀 qPCR 分析,以描述 TM 在冷驯化过程中压力和生长反应中的存在和稳定性。随着生长的恢复和短根茎雀麦适应寒冷压力,转录记忆主要减弱了压力反应。虽然 vernalization 基因 VRN1 上的 TM 是永久性的,但冷应激基因上的 TM 是短期的和可逆的。在寒冷条件下生长也与获得新的和有针对性的冷诱导转录反应同时发生。总的来说,TM 在短根茎雀麦的冷驯化过程中为冷应激反应提供了可塑性,导致应激习惯化、获得应激反应和恢复生长。我们的研究表明,与染色质相关的 TM 参与调节植物对环境变化的反应,因此调节了短根茎雀麦适应寒冷气候的应激和发育成分。