Rius Sebastián P, Emiliani Julia, Casati Paula
Facultad de Ciencias Bioquímicas y Farmacéuticas, Centro de Estudios Fotosintéticos y Bioquímicos (CEFOBI-CONICET), Universidad Nacional de Rosario Rosario, Argentina.
Front Plant Sci. 2016 Apr 21;7:523. doi: 10.3389/fpls.2016.00523. eCollection 2016.
P1 is a R2R3-MYB transcription factor that regulates the accumulation of a specific group of flavonoids in maize floral tissues, such as flavones and phlobaphenes. P1 is also highly expressed in leaves of maize landraces adapted to high altitudes and higher levels of UV-B radiation. In this work, we analyzed the epigenetic regulation of the P1 gene by UV-B in leaves of different maize landraces. Our results demonstrate that DNA methylation in the P1 proximal promoter, intron1 and intron2 is decreased by UV-B in all lines analyzed; however, the basal DNA methylation levels are lower in the landraces than in B73, a low altitude inbred line. DNA demethylation by UV-B is accompanied by a decrease in H3 methylation at Lys 9 and 27, and by an increase in H3 acetylation. smRNAs complementary to specific regions of the proximal promoter and of intron 2 3' end are also decreased by UV-B; interestingly, P1 smRNA levels are lower in the landraces than in B73 both under control conditions and after UV-B exposure, suggesting that smRNAs regulate P1 expression by UV-B in maize leaves. Finally, we investigated if different P1 targets in flower tissues are also regulated by this transcription factor in response to UV-B. Some targets analyzed show an induction in maize landraces in response to UV-B, with higher basal expression levels in the landraces than in B73; however, not all the transcripts analyzed were found to be regulated by UV-B in leaves.
P1是一种R2R3-MYB转录因子,可调节玉米花组织中特定类黄酮的积累,如黄酮和紫黄质。P1在适应高海拔和更高水平UV-B辐射的玉米地方品种的叶片中也高度表达。在这项研究中,我们分析了不同玉米地方品种叶片中UV-B对P1基因的表观遗传调控。我们的结果表明,在所有分析的品系中,UV-B均可降低P1近端启动子、内含子1和内含子2中的DNA甲基化;然而,地方品种的基础DNA甲基化水平低于低海拔自交系B73。UV-B介导的DNA去甲基化伴随着赖氨酸9和27处H3甲基化的减少以及H3乙酰化的增加。与近端启动子和内含子2 3'端特定区域互补的小RNA(smRNA)也因UV-B而减少;有趣的是,无论是在对照条件下还是UV-B处理后,地方品种中的P1 smRNA水平均低于B73,这表明smRNA在玉米叶片中通过UV-B调节P1的表达。最后,我们研究了花组织中不同的P1靶标是否也受该转录因子调控以响应UV-B。一些分析的靶标在玉米地方品种中表现出对UV-B的诱导作用,地方品种中的基础表达水平高于B73;然而,并非所有分析的转录本在叶片中都受UV-B调控。