Suen Der-Fen, Schmidt Wolfgang
a Agricultural Biotechnology Research Center , Taipei , Taiwan.
b Institute of Plant and Microbial Biology , Taipei , Taiwan.
Plant Signal Behav. 2018 Apr 3;13(4):e1435963. doi: 10.1080/15592324.2018.1435963. Epub 2018 Feb 20.
Phenotypic plasticity is dependent on the correct interpretation of environmental cues. We recently showed that the deubiquitinase OTU5 is required for orchestrating internal and external signals, tuning the morphogenesis of epidermal cells to the prevailing conditions. Homozygous otu5 mutants developed long and dense root hairs, resembling phosphate-deficient plants. The phenotype of otu5 plants was similar to that of arp6 plants, which carries a mutation that compromises the deposition of H2A.Z. Homozygous otu5 arp6 double mutants exhibited a synergistic phenotype, suggesting that the two mutations are functionally related. In a multi-omics approach comprising genome-wide DNA methylation, detection of various post-translational histone modifications as well as transcriptomic and proteomic surveys, we found that OTU5 is critical for maintaining the abundance of stimulus-responsive proteins, probably by modulating chromatin structure. It is concluded that changes in protein abundance and phenotypic readout in response to environmental signals are regulated by a complex interplay between various levels of gene expression.
表型可塑性依赖于对环境信号的正确解读。我们最近发现,去泛素化酶OTU5是协调内部和外部信号所必需的,它能根据当前条件调节表皮细胞的形态发生。纯合otu5突变体长出了又长又密的根毛,类似于缺磷植物。otu5植物的表型与arp6植物相似,arp6植物携带的突变会损害H2A.Z的沉积。纯合otu5 arp6双突变体表现出协同表型,表明这两个突变在功能上相关。在一种多组学方法中,包括全基因组DNA甲基化、各种翻译后组蛋白修饰的检测以及转录组和蛋白质组调查,我们发现OTU5可能通过调节染色质结构来维持刺激反应蛋白的丰度,这一点至关重要。得出的结论是,蛋白质丰度的变化和对环境信号的表型响应是由基因表达各水平之间复杂的相互作用所调控的。