Centro de Estudios Fotosintéticos y Bioquímicos (CEFOBI), Universidad Nacional de Rosario, Suipacha 531, Rosario, Argentina.
BMC Plant Biol. 2012 Jun 15;12:92. doi: 10.1186/1471-2229-12-92.
Plants living at high altitudes are typically exposed to elevated UV-B radiation, and harbor mechanisms to prevent the induced damage, such as the accumulation of UV-absorbing compounds. The maize R2R3-MYB transcription factor P1 controls the accumulation of several UV-B absorbing phenolics by activating a subset of flavonoid biosynthetic genes in leaves of maize landraces adapted to high altitudes.
Here, we studied the UV-B regulation of P1 in maize leaves of high altitude landraces, and we investigated how UV-B regulates P1 binding to the CHS promoter in both low and high altitude lines. In addition, we analyzed whether the expansion in the P1 expression domain between these maize landraces and inbred lines is associated to changes in the molecular structure of the proximal promoter, distal enhancer and first intron of P1. Finally, using transient expression experiments in protoplasts from various maize genotypes, we investigated whether the different expression patterns of P1 in the high altitude landraces could be attributed to trans- or cis-acting elements.
Together, our results demonstrate that, although differences in cis-acting elements exist between the different lines under study, the different patterns of P1 expression are largely a consequence of effects in trans.
生活在高海拔地区的植物通常会受到增强的 UV-B 辐射的影响,因此它们拥有防止诱导损伤的机制,例如积累 UV 吸收化合物。玉米 R2R3-MYB 转录因子 P1 通过激活一组适应高海拔的玉米地方品种叶片中类黄酮生物合成基因,控制几种 UV-B 吸收类黄酮的积累。
在这里,我们研究了 P1 在高海拔地方品种玉米叶片中对 UV-B 的调节,我们研究了 UV-B 如何调节 P1 在低海拔和高海拔品系中与 CHS 启动子的结合。此外,我们分析了 P1 表达域在这些玉米地方品种和自交系之间的扩张是否与 P1 的近端启动子、远端增强子和第一内含子的分子结构变化有关。最后,通过来自各种玉米基因型原生质体的瞬时表达实验,我们研究了 P1 在高海拔地方品种中的不同表达模式是否归因于顺式或反式作用元件。
总之,我们的研究结果表明,尽管研究中不同的系之间存在顺式作用元件的差异,但 P1 表达模式的不同主要是反式作用的结果。