Chloroplasts are a common feature of plant cells and aspects of their metabolism, including photosynthesis, are influenced by low-temperature conditions. Chloroplasts contain a small circular genome that encodes essential components of the photosynthetic apparatus and chloroplast transcription/translation machinery. Here, we show that in Arabidopsis, a nuclear-encoded sigma factor that controls chloroplast transcription (SIGMA FACTOR5) contributes to adaptation to low-temperature conditions. This process involves the regulation of SIGMA FACTOR5 expression in response to cold by the bZIP transcription factors ELONGATED HYPOCOTYL5 and ELONGATED HYPOCOTYL5 HOMOLOG. The response of this pathway to cold is gated by the circadian clock, and it enhances photosynthetic efficiency during long-term cold and freezing exposure. We identify a process that integrates low-temperature and circadian signals, and modulates the response of chloroplasts to low-temperature conditions.
Low-temperature and circadian signals are integrated by the sigma factor SIG5.
低温和昼夜节律信号由 sigma 因子 SIG5 整合
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作者:Cano-Ramirez Dora L, Panter Paige E, Takemura Tokiaki, de Fraine Tara Saskia, de Barros Dantas LuÃza Lane, Dekeya Richard, Barros-Galvão Thiago, Paajanen Pirita, Bellandi Annalisa, Batstone Tom, Manley Bethan F, Tanaka Kan, Imamura Sousuke, Franklin Keara A, Knight Heather, Dodd Antony N
| 期刊: | Nature Plants | 影响因子: | 13.600 |
| 时间: | 2023 | 起止号: | 2023 Apr;9(4):661-672 |
| doi: | 10.1038/s41477-023-01377-1 | 靶点: | IGM |
| 研究方向: | 信号转导 | ||
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