The plant circadian clock operates through interconnected transcriptional-translational feedback loops,comprising circadian-regulated transcriptional activators and repressors at the core oscillator.These transcriptio...The plant circadian clock operates through interconnected transcriptional-translational feedback loops,comprising circadian-regulated transcriptional activators and repressors at the core oscillator.These transcription factors(TFs)not only regulate the timing of gene expression within the oscillator but also orchestrate downstream transcriptomic regulation in output pathways by directly binding to promoters of key genes.To date,most plant TFs identified in these loops are transcriptional repressors,supporting a clock model dominated by repressive interactions.However,a number of studies have reported the presence of transcriptional activators in newly identified feedback loops.Interestingly,some TFs can function as both activators and repressors of circadian-regulated genes,offering new insights into clock regulatory mechanisms.This review revisits transcriptional activation and repression in core oscillator genes,offering a conceptual framework to advance the understanding of their roles,particularly in the regulation of clock output pathways.展开更多
基金supported by the National Key R&D Program of China(2024YFD1200803)the Guangdong Basic Research Center of Excellence for Precise Breeding of Future Crops(FCBRCE-202518)+3 种基金the Natural Science Foundation of Guangdong Province(2024A1515011112)the Guangdong Basic and Applied Research(2023A1515110413)the China Postdoctoral Science Foundation(2024M750953)the National Natural Science Foundation of China(32400226).
文摘The plant circadian clock operates through interconnected transcriptional-translational feedback loops,comprising circadian-regulated transcriptional activators and repressors at the core oscillator.These transcription factors(TFs)not only regulate the timing of gene expression within the oscillator but also orchestrate downstream transcriptomic regulation in output pathways by directly binding to promoters of key genes.To date,most plant TFs identified in these loops are transcriptional repressors,supporting a clock model dominated by repressive interactions.However,a number of studies have reported the presence of transcriptional activators in newly identified feedback loops.Interestingly,some TFs can function as both activators and repressors of circadian-regulated genes,offering new insights into clock regulatory mechanisms.This review revisits transcriptional activation and repression in core oscillator genes,offering a conceptual framework to advance the understanding of their roles,particularly in the regulation of clock output pathways.