Gene Discovery Research Group, RIKEN Center for Sustainable Resource Sciences, Ibaraki 305-0074, Japan;
Imaging Frontier Center, Research Institute for Science and Technology, Tokyo University of Science, Chiba 278-0022, Japan.
Proc Natl Acad Sci U S A. 2022 Feb 8;119(6). doi: 10.1073/pnas.2120219119.
Plant root growth is indeterminate but continuously responds to environmental changes. We previously reported on the severe root growth defect of a double mutant in and () modulating the unfolded protein response (UPR). To elucidate the mechanism by which seedlings develop a short root, we obtained a series of suppressor mutants, called , for rescued root growth. We focused here on , which is defective in the general transcription factor component TBP-ASSOCIATED FACTOR 12b (TAF12b). The expression of hundreds of genes, including the bZIP60-UPR regulon, was induced in the mutant, but these inductions were markedly attenuated in the mutant. In view of this, we assigned transcriptional cofactor activity via physical interaction with bZIP60 to NOBIRO6/TAF12b. The single / mutant also showed an altered sensitivity to endoplasmic reticulum stress for both UPR and root growth responses, demonstrating that NOBIRO6/TAF12b contributes to environment-responsive root growth control through UPR.
植物根系生长是不定的,但会持续响应环境变化。我们之前曾报道过,在()调节未折叠蛋白反应(UPR)的双突变体中,根系生长严重缺陷。为了阐明突变体幼苗短根发育的机制,我们获得了一系列被称为的抑制突变体,这些突变体能挽救根的生长。我们在此重点关注,它是一般转录因子成分 TBP 相关因子 12b(TAF12b)的缺陷型。在突变体中,数百个基因的表达被诱导,包括 bZIP60-UPR 调控基因,但在突变体中,这些诱导明显减弱。鉴于此,我们通过与 bZIP60 的物理相互作用分配转录共因子活性给 NOBIRO6/TAF12b。/ 单突变体也表现出对内质网应激的敏感性改变,无论是 UPR 还是根生长反应,表明 NOBIRO6/TAF12b 通过 UPR 有助于环境响应的根生长调控。