Grunewald Wim, De Smet Ive, De Rybel Bert, Robert Helene S, van de Cotte Brigitte, Willemsen Viola, Gheysen Godelieve, Weijers Dolf, Friml Jiří, Beeckman Tom
1] Department of Plant Systems Biology, VIB, and Bioinformatics, Ghent University, 9052 Ghent, Belgium [2] Department of Plant Biotechnology and Bioinformatics, Ghent University, 9052 Ghent, Belgium.
EMBO Rep. 2013 Dec;14(12):1136-42. doi: 10.1038/embor.2013.169. Epub 2013 Oct 25.
The development of a multicellular embryo from a single zygote is a complex and highly organized process that is far from understood. In higher plants, apical-basal patterning mechanisms are crucial to correctly specify root and shoot stem cell niches that will sustain and drive post-embryonic plant growth and development. The auxin-responsive AtWRKY23 transcription factor is expressed from early embryogenesis onwards and the timing and localization of its expression overlaps with the root stem cell niche. Knocking down WRKY23 transcript levels or expression of a dominant-negative WRKY23 version via a translational fusion with the SRDX repressor domain affected both apical-basal axis formation as well as installation of the root stem cell niche. WRKY23 expression is affected by two well-known root stem cell specification mechanisms, that is, SHORTROOT and MONOPTEROS-BODENLOS signalling and can partially rescue the root-forming inability of mp embryos. On the basis of these results, we postulate that a tightly controlled WRKY23 expression is involved in the regulation of both auxin-dependent and auxin-independent signalling pathways towards stem cell specification.
从单个受精卵发育成多细胞胚胎是一个复杂且高度有序的过程,目前人们对此还知之甚少。在高等植物中,顶基模式形成机制对于正确指定根和茎干细胞龛至关重要,这些干细胞龛将维持并驱动胚后植物的生长和发育。生长素应答型AtWRKY23转录因子从胚胎发生早期就开始表达,其表达的时间和定位与根干细胞龛重叠。通过与SRDX阻遏域的翻译融合来降低WRKY23转录水平或表达显性负性WRKY23版本,会影响顶基轴的形成以及根干细胞龛的建立。WRKY23的表达受两种众所周知的根干细胞指定机制影响,即SHORTROOT和MONOPTEROS - BODENLOS信号传导,并且可以部分挽救mp胚胎形成根的无能。基于这些结果,我们推测,严格控制的WRKY23表达参与了向干细胞指定的生长素依赖性和生长素非依赖性信号通路的调节。