Skirycz Aleksandra, Radziejwoski Amandine, Busch Wolfgang, Hannah Matthew A, Czeszejko Joanna, Kwaśniewski Mirosław, Zanor Maria-Inès, Lohmann Jan U, De Veylder Lieven, Witt Isabell, Mueller-Roeber Bernd
Cooperative Research Group, Max-Planck Institute of Molecular Plant Physiology, Am Mühlenberg 1, 14476 Potsdam-Golm, Germany.
Plant J. 2008 Dec;56(5):779-92. doi: 10.1111/j.1365-313X.2008.03641.x. Epub 2008 Sep 4.
In contrast to animal growth, plant growth is largely post-embryonic. Therefore plants have developed new mechanisms to precisely regulate cell proliferation by means of internal and external stimuli whilst the general core cell cycle machinery is conserved between eukaryotes. In this work we demonstrate a role for the Arabidopsis thaliana DNA-binding-with-one-finger (DOF) transcription factor OBP1 in the control of cell division upon developmental signalling. Inducible overexpression of OBP1 resulted in a significant overrepresentation of cell cycle genes among the upregulated transcripts. Direct targets of OBP1, as verified by chromatin immunoprecipitation, include at least the core cell cycle gene CYCD3;3 and the replication-specific transcription factor gene AtDOF2;3. Consistent with our molecular data, short-term activation of OBP1 in cell cultures affected cell cycle re-entry, shortening the duration of the G(1) phase and the overall length of the cell cycle, whilst constitutive overexpression of OBP1 in plants influenced cell size and cell number, leading to a dwarfish phenotype. Expression during embryogenesis, germination and lateral root initiation suggests an important role for OBP1 in cell cycle re-entry, operating as a transcriptional regulator of key cell cycle genes. Our findings provide significant input into our understanding of how cell cycle activity is incorporated into plant growth and development.
与动物生长不同,植物生长主要是胚胎后生长。因此,植物已经发展出新的机制,通过内部和外部刺激精确调节细胞增殖,而真核生物之间的一般核心细胞周期机制是保守的。在这项工作中,我们证明了拟南芥单指DNA结合(DOF)转录因子OBP1在发育信号传导控制细胞分裂中的作用。OBP1的诱导性过表达导致上调转录本中细胞周期基因的显著富集。通过染色质免疫沉淀验证,OBP1的直接靶标至少包括核心细胞周期基因CYCD3;3和复制特异性转录因子基因AtDOF2;3。与我们的分子数据一致,细胞培养物中OBP1的短期激活影响细胞周期再进入,缩短G(1)期的持续时间和细胞周期的总长度,而植物中OBP1的组成型过表达影响细胞大小和细胞数量,导致矮小表型。在胚胎发生、萌发和侧根起始过程中的表达表明OBP1在细胞周期再进入中起重要作用,作为关键细胞周期基因的转录调节因子。我们的发现为我们理解细胞周期活动如何融入植物生长和发育提供了重要依据。