Plant Biotechnology Center and Department of Molecular Genetics, The Ohio State University, Columbus, OH 43210, USA.
Plant J. 2011 Oct;68(2):337-50. doi: 10.1111/j.1365-313X.2011.04690.x. Epub 2011 Aug 4.
We previously identified SlFSM1 as an early fruit-specific gene encoding a short protein harboring a non-canonical SANT/MYB-like domain. Here, we investigated the role of FSM1 during fruit development in tomato and its mode of action. By analyzing tomato plants ectopically expressing FSM1, we established that it negatively affects cell expansion, particularly of those cells with the highest potential to expand, such as those residing inner to the vascular bundles in the fruit pericarp. This function of FSM1 differs from that of the snapdragon FSM1-like gene, RAD, which through an antagonistic activity with DIV participates in establishing floral asymmetry. Revealing an additional component of the FSM1/RAD regulatory complex, we show here that FSM1 physically interacts with FSB1, a previously uncharacterized factor harboring an atypical MYB repeat. We also demonstrate that FSB1 physically interacts with the transcription factor MYBI, a homolog of DIV. Our results show that the formation of the FSB1-MYBI complex is competed by FSM1, which recognizes in FSB1 the same region as MYBI does. Taken together, these studies expose a function for the FSM1/FSB1/MYBI complex in controlling tomato cell expansion, while revealing a mechanism by which competing MYB-MYB interactions could participate in the control of gene expression.
我们之前发现 SlFSM1 是一个早期果实特异性基因,编码一个含有非典型 SANT/MYB 样结构域的短蛋白。在这里,我们研究了 FSM1 在番茄果实发育过程中的作用及其作用模式。通过分析番茄植物中外源表达 FSM1,我们发现它会负调控细胞的扩张,特别是那些具有最大扩张潜力的细胞,如位于果实果皮维管束内部的细胞。FSM1 的这一功能与金鱼草 FSM1 样基因 RAD 不同,RAD 通过与 DIV 的拮抗活性参与建立花部的不对称性。揭示了 FSM1/RAD 调控复合物的另一个组成部分,我们在这里表明 FSM1 与 FSB1 发生物理互作,FSB1 是一个以前未被表征的含有非典型 MYB 重复的因子。我们还证明了 FSB1 与转录因子 MYBI 发生物理互作,MYBI 是 DIV 的同源物。我们的研究结果表明,FSB1-MYBI 复合物的形成受到 FSM1 的竞争,FSM1 识别 FSB1 的区域与 MYBI 相同。综上所述,这些研究揭示了 FSM1/FSB1/MYBI 复合物在控制番茄细胞扩张中的作用,同时揭示了竞争的 MYB-MYB 相互作用如何参与基因表达的调控。