Centre for Research in Agricultural Genomics (CRAG), CSIC-IRTA-UAB-UB, Campus UAB, Bellaterra (Cerdanyola del Vallès), 08193, Barcelona, Spain.
Institució Catalana de Recerca i Estudis Avançats, 08010, Barcelona, Spain.
Plant J. 2019 Nov;100(3):522-535. doi: 10.1111/tpj.14455. Epub 2019 Aug 12.
In the age-dependent pathway, microRNA 156 (miR156) is essential for the correct timing of developmental transitions. miR156 negatively regulates several SPL genes, which promote the juvenile-to-adult and floral transitions in part through upregulation of miR172. The transcriptional repressors TEMPRANILLO1 (TEM1) and TEM2 delay flowering in Arabidopsis thaliana at least through direct repression of FLOWERING LOCUS T (FT) and gibberellin biosynthetic genes, and have also been reported to participate in the length of the juvenile phase. Levels of TEM mRNA and miR156 decrease gradually, allowing progression through developmental phases. Given these similarities, we hypothesized that TEMs and the miR156/SPL/miR172 module could act through a common genetic pathway. We analyzed the effect of TEMs on levels of miR156, SPL and miR172, tested binding of TEMs to these genes using chromatin immunoprecipitation and analyzed the genetic interaction between TEMs and miR172. We found that TEMs played a stronger role in the floral transition than in the juvenile-to-adult transition. TEM1 repressed MIR172A, MIR172B and MIR172C expressions and bound in vivo to at least MIR172C sequences. Genetic analyses indicated that TEMs affect the regulation of developmental timing through miR172.
在年龄依赖的途径中,microRNA 156(miR156)对于发育转变的正确时间至关重要。miR156 负调控几个 SPL 基因,这些基因通过上调 miR172 促进从幼年到成年和花发育的转变。转录抑制因子 TEMPRANILLO1(TEM1)和 TEM2 通过直接抑制开花位点 T(FT)和赤霉素生物合成基因至少在拟南芥中延迟开花,并且也被报道参与幼年期的长度。TEM mRNA 和 miR156 的水平逐渐降低,允许通过发育阶段的进展。鉴于这些相似性,我们假设 TEM 和 miR156/SPL/miR172 模块可以通过共同的遗传途径起作用。我们分析了 TEM 对 miR156、SPL 和 miR172 水平的影响,使用染色质免疫沉淀测试了 TEM 与这些基因的结合,并分析了 TEM 和 miR172 之间的遗传相互作用。我们发现 TEM 在花发育转变中比在幼年到成年的转变中发挥更强的作用。TEM1 抑制 MIR172A、MIR172B 和 MIR172C 的表达,并在体内与至少 MIR172C 序列结合。遗传分析表明,TEM 通过 miR172 影响发育时间的调节。