Wagner Doris, Meyerowitz Elliot M
Division of Biology 156-29, California Institute of Technology, Pasadena, CA 91125, USA.
Curr Biol. 2002 Jan 22;12(2):85-94. doi: 10.1016/s0960-9822(01)00651-0.
The plant-specific transcriptional activator LEAFY (LFY) is a central regulator of the transition to reproductive development in Arabidopsis. LFY has a second, later role in the induction of floral homeotic gene expression. Available data suggests that, while LFY activity is controlled via interaction with tissue-specific coactivators, other mechanisms exist that regulate LFY activity, the identity of which are not known.
We have identified a novel component in the temporal control of the switch from vegetative to reproductive development in Arabidopsis thaliana. The SPLAYED (SYD) gene product acts with LFY to regulate shoot apical meristem identity. SYD is also involved in the regulation of floral homeotic gene expression. In addition, mutations in SYD cause LFY-independent phenotypes that indicate that SYD is necessary for meristem maintenance during reproductive development and that SYD is required for proper carpel and ovule development. SYD encodes a presumptive Arabidopsis homolog of the yeast Snf2p ATPase, which is implicated in transcriptional control via chromatin remodeling.
SYD acts as a LFY-dependent repressor of the meristem identity switch in the floral transition, most likely by altering the activity of the LFY transcription factor. That SYD regulates flowering in response to environmental stimuli suggests that the effect of environmental cues on plant development may be achieved in part by regulating transcription factor activity via alteration of the chromatin state.
植物特异性转录激活因子LEAFY(LFY)是拟南芥中向生殖发育转变的核心调节因子。LFY在诱导花同源异型基因表达方面具有第二个较晚的作用。现有数据表明,虽然LFY活性通过与组织特异性共激活因子的相互作用来控制,但还存在其他调节LFY活性的机制,其具体身份尚不清楚。
我们在拟南芥从营养生长向生殖发育转变的时间控制中鉴定出一个新成分。SPLAYED(SYD)基因产物与LFY共同作用来调节茎尖分生组织的身份。SYD也参与花同源异型基因表达的调控。此外,SYD的突变会导致不依赖LFY的表型,这表明SYD在生殖发育过程中对分生组织的维持是必需的,并且SYD对正常的心皮和胚珠发育是必需的。SYD编码一种推测的酵母Snf2p ATP酶的拟南芥同源物,该酶通过染色质重塑参与转录控制。
SYD作为花发育转变中分生组织身份转换的LFY依赖性抑制因子,很可能是通过改变LFY转录因子的活性来实现其功能。SYD响应环境刺激调节开花,这表明环境信号对植物发育的影响可能部分是通过改变染色质状态来调节转录因子活性来实现的。