MacKinnon Kirk J-M, Cole Benjamin J, Yu Chang, Coomey Joshua H, Hartwick Nolan T, Remigereau Marie-Stanislas, Duffy Tomás, Michael Todd P, Kay Steve A, Hazen Samuel P
Biology Department, University of Massachusetts, Amherst, MA, 01003, USA.
Molecular and Cellular Biology Graduate Program, University of Massachusetts, Amherst, MA, 01003, USA.
New Phytol. 2020 Sep;227(6):1709-1724. doi: 10.1111/nph.16507. Epub 2020 Apr 1.
Plants are continuously exposed to diurnal fluctuations in light and temperature, and spontaneous changes in their physical or biotic environment. The circadian clock coordinates regulation of gene expression with a 24 h period, enabling the anticipation of these events. We used RNA sequencing to characterize the Brachypodium distachyon transcriptome under light and temperature cycles, as well as under constant conditions. Approximately 3% of the transcriptome was regulated by the circadian clock, a smaller proportion than reported in most other species. For most transcripts that were rhythmic under all conditions, including many known clock genes, the period of gene expression lengthened from 24 to 27 h in the absence of external cues. To functionally characterize the cyclic transcriptome in B. distachyon, we used Gene Ontology enrichment analysis, and found several terms significantly associated with peak expression at particular times of the day. Furthermore, we identified sequence motifs enriched in the promoters of similarly phased genes, some potentially associated with transcription factors. When considering the overlap in rhythmic gene expression and specific pathway behavior, thermocycles was the prevailing cue that controlled diurnal gene regulation. Taken together, our characterization of the rhythmic B. distachyon transcriptome represents a foundational resource with implications in other grass species.
植物不断受到光照和温度的昼夜波动以及其物理或生物环境的自发变化影响。生物钟以24小时为周期协调基因表达的调控,从而能够预测这些事件。我们使用RNA测序来表征短柄草在光照和温度周期以及恒定条件下的转录组。约3%的转录组受生物钟调控,这一比例低于大多数其他物种的报道。对于在所有条件下都有节律的大多数转录本,包括许多已知的生物钟基因,在没有外部信号的情况下,基因表达周期从24小时延长到了27小时。为了从功能上表征短柄草中的循环转录组,我们进行了基因本体富集分析,发现了几个与一天中特定时间的峰值表达显著相关的术语。此外,我们在相位相似的基因启动子中鉴定出了富集的序列基序,其中一些可能与转录因子有关。在考虑节律性基因表达和特定途径行为的重叠时,温度循环是控制昼夜基因调控的主要信号。总之,我们对有节律的短柄草转录组的表征代表了一种基础资源,对其他禾本科物种具有启示意义。