Australian Centre for Plant Functional Genomics, PMB 1, Glen Osmond, SA 5064, Australia.
New Phytol. 2011 Jun;190(4):823-837. doi: 10.1111/j.1469-8137.2011.03733.x. Epub 2011 Apr 21.
Plant development is adapted to changing environmental conditions for optimizing growth. This developmental adaptation is influenced by signals from the environment, which act as stimuli and may include submergence and fluctuations in water status, light conditions, nutrient status, temperature and the concentrations of toxic compounds. The homeodomain-leucine zipper (HD-Zip) I and HD-Zip II transcription factor networks regulate these plant growth adaptation responses through integration of developmental and environmental cues. Evidence is emerging that these transcription factors are integrated with phytohormone-regulated developmental networks, enabling environmental stimuli to influence the genetically preprogrammed developmental progression. Dependent on the prevailing conditions, adaptation of mature and nascent organs is controlled by HD-Zip I and HD-Zip II transcription factors through suppression or promotion of cell multiplication, differentiation and expansion to regulate targeted growth. In vitro assays have shown that, within family I or family II, homo- and/or heterodimerization between leucine zipper domains is a prerequisite for DNA binding. Further, both families bind similar 9-bp pseudopalindromic cis elements, CAATNATTG, under in vitro conditions. However, the mechanisms that regulate the transcriptional activity of HD-Zip I and HD-Zip II transcription factors in vivo are largely unknown. The in planta implications of these protein-protein associations and the similarities in cis element binding are not clear.
植物的发育过程会适应环境变化,以优化生长。这种发育适应性受到环境信号的影响,这些信号可以作为刺激因素,包括淹没和水分状况波动、光照条件、养分状况、温度以及有毒化合物浓度等。同源域亮氨酸拉链(HD-Zip)I 和 HD-Zip II 转录因子网络通过整合发育和环境线索来调节这些植物生长适应反应。有证据表明,这些转录因子与植物激素调节的发育网络整合在一起,使环境刺激能够影响遗传上预先编程的发育进程。根据当前的条件,成熟和新生器官的适应性由 HD-Zip I 和 HD-Zip II 转录因子通过抑制或促进细胞增殖、分化和扩张来调节靶向生长来控制。体外实验表明,在家族 I 或家族 II 内,亮氨酸拉链结构域之间的同型和/或异型二聚化是 DNA 结合的前提条件。此外,这两个家族在体外条件下都能结合类似的 9 个碱基对的伪回文顺式元件 CAATNATTG。然而,HD-Zip I 和 HD-Zip II 转录因子在体内调节转录活性的机制在很大程度上尚不清楚。这些蛋白质-蛋白质相互作用的植物体内意义以及顺式元件结合的相似性尚不清楚。