Auxin-Dependent Cell Cycle Reactivation through Transcriptional Regulation ofArabidopsis E2Faby Lateral Organ Boundary Proteins

生物 生长素 中柱周期 细胞生物学 拟南芥 侧根 转录因子 器官发生 细胞周期 拟南芥 细胞命运测定 细胞分裂 突变体 细胞 遗传学 基因
作者
Barbara Berckmans,Valya Vassileva,Stephan P.C. Schmid,Sara Maes,Boris Parizot,Satoshi Naramoto,Zoltán Magyar,Claire Lessa Alvim Kamei,Csaba Koncz,László Bögre,Geert Persiau,Geert De Jaeger,Jiřı́ Friml,Rüdiger Simon,Tom Beeckman,Lieven De Veylder
出处
期刊:The Plant Cell [Oxford University Press]
卷期号:23 (10): 3671-3683 被引量:173
标识
DOI:10.1105/tpc.111.088377
摘要

Abstract Multicellular organisms depend on cell production, cell fate specification, and correct patterning to shape their adult body. In plants, auxin plays a prominent role in the timely coordination of these different cellular processes. A well-studied example is lateral root initiation, in which auxin triggers founder cell specification and cell cycle activation of xylem pole–positioned pericycle cells. Here, we report that the E2Fa transcription factor of Arabidopsis thaliana is an essential component that regulates the asymmetric cell division marking lateral root initiation. Moreover, we demonstrate that E2Fa expression is regulated by the LATERAL ORGAN BOUNDARY DOMAIN18/LATERAL ORGAN BOUNDARY DOMAIN33 (LBD18/LBD33) dimer that is, in turn, regulated by the auxin signaling pathway. LBD18/LBD33 mediates lateral root organogenesis through E2Fa transcriptional activation, whereas E2Fa expression under control of the LBD18 promoter eliminates the need for LBD18. Besides lateral root initiation, vascular patterning is disrupted in E2Fa knockout plants, similarly as it is affected in auxin signaling and lbd mutants, indicating that the transcriptional induction of E2Fa through LBDs represents a general mechanism for auxin-dependent cell cycle activation. Our data illustrate how a conserved mechanism driving cell cycle entry has been adapted evolutionarily to connect auxin signaling with control of processes determining plant architecture.
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