Saddic Louis A, Huvermann Bärbel, Bezhani Staver, Su Yanhui, Winter Cara M, Kwon Chang Seob, Collum Richard P, Wagner Doris
Department of Biology, University of Pennsylvania, Philadelphia, PA 19104-6018, USA.
Development. 2006 May;133(9):1673-82. doi: 10.1242/dev.02331. Epub 2006 Mar 22.
The timing of the switch from vegetative to reproductive development is crucial for species survival. The plant-specific transcription factor and meristem identity regulator LEAFY (LFY) controls this switch in Arabidopsis, in part via the direct activation of two other meristem identity genes, APETALA1 (AP1) and CAULIFLOWER (CAL). We recently identified five new direct LFY targets as candidates for the missing meristem identity regulators that act downstream of LFY. Here, we demonstrate that one of these, the class I homeodomain leucine-zipper transcription factor LMI1, is a meristem identity regulator. LMI1 acts together with LFY to activate CAL expression. The interaction between LFY, LMI1 and CAL resembles a feed-forward loop transcriptional network motif. LMI1 has additional LFY-independent roles in the formation of simple serrated leaves and in the suppression of bract formation. The temporal and spatial expression of LMI1 supports a role in meristem identity and leaf/bract morphogenesis.
从营养生长向生殖发育转变的时机对于物种存活至关重要。植物特异性转录因子和分生组织特征调控因子LEAFY(LFY)在拟南芥中控制这一转变,部分是通过直接激活另外两个分生组织特征基因APETALA1(AP1)和CAULIFLOWER(CAL)来实现的。我们最近鉴定出五个新的LFY直接靶标,作为在LFY下游起作用的缺失的分生组织特征调控因子的候选者。在此,我们证明其中一个,即I类同源域亮氨酸拉链转录因子LMI1,是一个分生组织特征调控因子。LMI1与LFY共同作用来激活CAL的表达。LFY、LMI1和CAL之间的相互作用类似于前馈环转录网络基序。LMI1在单锯齿叶的形成以及苞片形成的抑制中具有额外的不依赖LFY的作用。LMI1的时空表达支持其在分生组织特征以及叶/苞片形态发生中的作用。