State Key Laboratory of Plant Physiology and Biochemistry, College of Biological Science, China Agricultural University, Beijing, 100193, China.
Department of Botany, University of British Columbia, Vancouver, British Columbia, V6T 1Z4, Canada.
J Integr Plant Biol. 2022 Nov;64(11):2075-2096. doi: 10.1111/jipb.13360. Epub 2022 Oct 28.
Repression of embryonic traits during the seed-to-seedling phase transition requires the inactivation of master transcription factors associated with embryogenesis. How the timing of such inactivation is controlled is unclear. Here, we report on a novel transcriptional co-repressor, Arabidopsis thaliana SDR4L, that forms a feedback inhibition loop with the master transcription factors LEC1 and ABI3 to repress embryonic traits post-imbibition. LEC1 and ABI3 regulate their own expression by inducing AtSDR4L during mid to late embryogenesis. AtSDR4L binds to sites upstream of LEC1 and ABI4, and these transcripts are upregulated in Atsdr4l seedlings. Atsdr4l seedlings phenocopy a LEC1 overexpressor. The embryonic traits of Atsdr4l can be partially rescued by impairing LEC1 or ABI3. The penetrance and expressivity of the Atsdr4l phenotypes depend on both developmental and external cues, demonstrating the importance of AtSDR4L in seedling establishment under suboptimal conditions.
在种子到幼苗的转变阶段,胚胎特征的抑制需要与胚胎发生相关的主转录因子的失活。目前尚不清楚这种失活的时间控制是如何实现的。在这里,我们报告了一种新型转录共抑制因子,拟南芥 SDR4L,它与主转录因子 LEC1 和 ABI3 形成反馈抑制环,在吸水后抑制胚胎特征。LEC1 和 ABI3 通过在中晚期胚胎发生过程中诱导 AtSDR4L 来调节自身表达。AtSDR4L 结合 LEC1 和 ABI4 的上游位点,这些转录物在 Atsdr4l 幼苗中上调。Atsdr4l 幼苗表现出 LEC1 过表达表型。通过损害 LEC1 或 ABI3,可部分挽救 Atsdr4l 的胚胎特征。Atsdr4l 表型的出现率和表现度取决于发育和外部线索,这表明 AtSDR4L 在非最佳条件下幼苗建立中的重要性。