Kang Min-Jeong, Jin Hong-Shi, Noh Yoo-Sun, Noh Bosl
School of Biological Sciences, Seoul National University, Seoul, 151-747, Korea.
Plant Genomics and Breeding Institute, Seoul National University, Seoul, 151-742, Korea.
New Phytol. 2015 Apr;206(1):281-294. doi: 10.1111/nph.13161. Epub 2014 Nov 18.
Posttranslational acetylation of histones is reversibly regulated by histone deacetylases (HDACs). Despite the evident significance of HDACs in Arabidopsis development, the biological roles and underlying molecular mechanisms of many HDACs are yet to be elucidated. By a reverse-genetic approach, we isolated an hda9 mutant and performed phenotypic analyses on it. In order to address the role of HDA9 in flowering, genetic, molecular, and biochemical approaches were employed. hda9 flowered early under noninductive short-day (SD) conditions and had increased expression of the floral integrator FLOWERING LOCUS T (FT) and the floral activator AGAMOUS-LIKE 19 (AGL19) compared with the wild-type. The hda9 mutation increased histone acetylation and RNA polymerase II occupancy at AGL19 but not at FT during active transcription, and the HDA9 protein directly targeted AGL19. AGL19 expression was higher under SD than under inductive long-day (LD) conditions, and an AGL19 overexpression caused a strong up-regulation of FT. A genetic analysis showed that an agl19 mutation is epistatic to the hda9 mutation, masking both the early flowering and the increased FT expression of hda9. Taken together, our data indicate that HDA9 prevents precocious flowering under SD conditions by curbing the hyperactivation of AGL19, an upstream activator of FT, through resetting the local chromatin environment.
组蛋白的翻译后乙酰化受组蛋白去乙酰化酶(HDACs)可逆调控。尽管HDACs在拟南芥发育中具有明显重要性,但许多HDACs的生物学作用和潜在分子机制仍有待阐明。通过反向遗传学方法,我们分离出一个hda9突变体并对其进行了表型分析。为了探究HDA9在开花过程中的作用,我们采用了遗传学、分子生物学和生物化学方法。与野生型相比,hda9在非诱导性短日照(SD)条件下开花提前,且花整合因子开花位点T(FT)和花激活因子类AGAMOUS 19(AGL19)的表达增加。在活跃转录过程中,hda9突变增加了AGL19位点的组蛋白乙酰化和RNA聚合酶II的占据,但FT位点没有变化,并且HDA9蛋白直接靶向AGL19。AGL19在SD条件下的表达高于诱导性长日照(LD)条件,AGL19过表达导致FT强烈上调。遗传分析表明,agl19突变对hda9突变呈上位性,掩盖了hda9的早花和FT表达增加的表型。综上所述,我们的数据表明,HDA9通过重置局部染色质环境,抑制FT上游激活因子AGL19的过度激活,从而防止SD条件下的过早开花。