Division of Biological Science, Graduate School of Science and Technology, Nara Institute of Science and Technology, 8916-5, Takayama, Ikoma, Nara, 630-0192, Japan.
Smurfit Institute of Genetics, Trinity College Dublin, D02 PN40, Dublin, Ireland.
Nat Commun. 2024 Feb 6;15(1):1098. doi: 10.1038/s41467-024-45371-3.
In angiosperms, the transition from floral-organ maintenance to abscission determines reproductive success and seed dispersion. For petal abscission, cell-fate decisions specifically at the petal-cell base are more important than organ-level senescence or cell death in petals. However, how this transition is regulated remains unclear. Here, we identify a jasmonic acid (JA)-regulated chromatin-state switch at the base of Arabidopsis petals that directs local cell-fate determination via autophagy. During petal maintenance, co-repressors of JA signaling accumulate at the base of petals to block MYC activity, leading to lower levels of ROS. JA acts as an airborne signaling molecule transmitted from stamens to petals, accumulating primarily in petal bases to trigger chromatin remodeling. This allows MYC transcription factors to promote chromatin accessibility for downstream targets, including NAC DOMAIN-CONTAINING PROTEIN102 (ANAC102). ANAC102 accumulates specifically at the petal base prior to abscission and triggers ROS accumulation and cell death via AUTOPHAGY-RELATED GENEs induction. Developmentally induced autophagy at the petal base causes maturation, vacuolar delivery, and breakdown of autophagosomes for terminal cell differentiation. Dynamic changes in vesicles and cytoplasmic components in the vacuole occur in many plants, suggesting JA-NAC-mediated local cell-fate determination by autophagy may be conserved in angiosperms.
在被子植物中,从花器官维持到脱落的转变决定了生殖成功和种子散布。对于花瓣脱落,花瓣细胞基底处的细胞命运决定比花瓣中器官水平的衰老或细胞死亡更为重要。然而,这种转变是如何被调控的仍然不清楚。在这里,我们鉴定了拟南芥花瓣基底处受茉莉酸(JA)调控的染色质状态开关,该开关通过自噬来指导局部细胞命运决定。在花瓣维持过程中,JA 信号的共抑制因子在花瓣基底处积累,从而阻止 MYC 活性,导致 ROS 水平降低。JA 作为一种从雄蕊传播到花瓣的空气传播信号分子,主要在花瓣基底处积累,以触发染色质重塑。这使得 MYC 转录因子能够促进下游靶标(包括 NAC 结构域包含蛋白 102(ANAC102))的染色质可及性。ANAC102 在脱落前特异性地在花瓣基底处积累,并通过自噬诱导 ROS 积累和细胞死亡。花瓣基底处发育诱导的自噬导致终末细胞分化的成熟、液泡内的空泡运输和自噬体的分解。在许多植物中,液泡中的囊泡和细胞质成分会发生动态变化,这表明 JA-NAC 介导的通过自噬的局部细胞命运决定可能在被子植物中是保守的。