Rast-Somssich Madlen I, Žádníková Petra, Schmid Stephan, Kieffer Martin, Kepinski Stefan, Simon Rüdiger
Institute for Developmental Genetics, Cluster of Excellence in Plant Sciences (CEPLAS), Heinrich Heine Universität, Universitätstrasse 1, 40225 Düsseldorf, Germany.
Centre for Plant Sciences, Faculty of Biological Sciences, University of Leeds, Leeds LS2 9JT, UK.
J Exp Bot. 2017 May 17;68(11):2741-2755. doi: 10.1093/jxb/erx131.
Plant growth and development of new organs depend on the continuous activity of the meristems. In the shoot, patterns of organ initiation are determined by PINFORMED (PIN)-dependent auxin distribution, while the undifferentiated state of meristem cells requires activity of KNOTTED LIKE HOMEOBOX (KNOX) transcription factors. Cell proliferation and differentiation of the root meristem are regulated by the largely antagonistic functions of auxin and cytokinins. It has previously been shown that the transcription factor JAGGED LATERAL ORGANS (JLO), a member of the LATERAL ORGAN BOUNDARY DOMAIN (LBD) family, coordinates KNOX and PIN expression in the shoot and promotes root meristem growth. Here we show that JLO is required for the establishment of the root stem cell niche, where it interacts with the auxin/PLETHORA pathway. Auxin signaling involves the AUX/IAA co-repressor proteins, ARF transcription factors and F-box receptors of the TIR1/AFB1-5 family. Because jlo mutants fail to degrade the AUX/IAA protein BODENLOS, root meristem development is inhibited. We also demonstrate that the expression levels of two auxin receptors, TIR1 and AFB1, are controlled by JLO dosage, and that the shoot and root defects of jlo mutants are alleviated in jlo plants expressing TIR1 and AFB1 from a transgene. The finding that the auxin sensitivity of a plant can be differentially regulated through control of auxin receptor expression can explain how different developmental processes can be integrated by the activity of a key transcription factor.
植物新器官的生长和发育依赖于分生组织的持续活动。在地上部分,器官起始模式由依赖于PINFORMED(PIN)的生长素分布决定,而分生组织细胞的未分化状态需要KNOTTED LIKE HOMEOBOX(KNOX)转录因子的活性。根分生组织的细胞增殖和分化受生长素和细胞分裂素的主要拮抗作用调节。此前已经表明,转录因子JAGGED LATERAL ORGANS(JLO)是LATERAL ORGAN BOUNDARY DOMAIN(LBD)家族的成员,它在地上部分协调KNOX和PIN的表达,并促进根分生组织生长。在这里,我们表明JLO是建立根干细胞龛所必需的,它在其中与生长素/PLETHORA途径相互作用。生长素信号传导涉及AUX/IAA共抑制蛋白、ARF转录因子和TIR1/AFB1-5家族的F-box受体。由于jlo突变体无法降解AUX/IAA蛋白BODENLOS,根分生组织的发育受到抑制。我们还证明,两个生长素受体TIR1和AFB1的表达水平受JLO剂量控制,并且在从转基因表达TIR1和AFB1的jlo植物中,jlo突变体的地上部分和根缺陷得到缓解。通过控制生长素受体表达可以差异调节植物生长素敏感性这一发现,可以解释关键转录因子的活性如何整合不同的发育过程。