Department of Plant & Environmental New Resources, Kyung Hee University, 1732 Deogyeong-daero, Yongin 17104, Republic of Korea.
Division of Forest Biotechnology, National Institute of Forest Science, 39 Onjeong-ro, Suwon 16631, Republic of Korea.
Tree Physiol. 2020 Aug 29;40(9):1232-1246. doi: 10.1093/treephys/tpaa062.
The TALE (Three Amino acid Loop Extension) transcription factor family has been shown to control meristem formation and organogenesis in plants. To understand the functional roles of the TALE family in woody perennials, each of the TALE members of Populus trichocarpa was overexpressed in Arabidopsis as a proxy. Among them, the overexpression of PtrTALE12 (i.e., 35S::PtrTALE12) resulted in a dramatic increase of axillary shoot development with early flowering. Interestingly, expression of WUSCHEL (WUS), a central regulator of both apical and axillary meristem formation, was significantly increased in the 35S::PtrTALE12 Arabidopsis plants. Conversely, WUS expression was downregulated in 35S::PtrTALE12-SRDX (short transcriptional repressor domain) plants. Further analysis found that PtrTALE12, expressed preferentially in meristem tissues, directly regulates WUS expression in transient activation assays using Arabidopsis leaf protoplast. Yeast two-hybrid assays showed that PtrTALE12 interacts with SHOOT MERISTEMLESS (STM); however, the interaction does not affect the WUS expression. In addition, expression of both CIRCADIAN CLOCK ASSOCIATED1 (CCA1) and LATE ELONGATED HYPOCOTYL (LHY) genes was suppressed accordingly for early flowering 35S::PtrTALE12 Arabidopsis. Indeed, transgenic poplars overexpressing PtrTALE12 as well as Arabidopsis plants overexpressing AtBLH11, a close homolog of PtrTALE12, phenocopied the 35S::PtrTALE12 Arabidopsis (i.e., increased axillary shoot development). Taken together, our results suggest that PtrTALE12 functions as a positive regulator of axillary shoot formation in both Arabidopsis and poplar.
TALE(三氨基酸环延伸)转录因子家族已被证明控制植物分生组织的形成和器官发生。为了了解 TALE 家族在木本多年生植物中的功能作用,以拟南芥为代表,过表达了毛白杨中的每一个 TALE 成员。其中,PtrTALE12(即 35S::PtrTALE12)的过表达导致侧芽发育急剧增加,并提前开花。有趣的是,WUSCHEL(WUS)的表达,即顶端和侧芽分生组织形成的中央调节剂,在 35S::PtrTALE12 拟南芥植物中显著增加。相反,在 35S::PtrTALE12-SRDX(短转录抑制域)植物中,WUS 的表达下调。进一步分析发现,PtrTALE12 在分生组织组织中优先表达,直接调节拟南芥叶片原生质体瞬时激活测定中的 WUS 表达。酵母双杂交实验表明,PtrTALE12 与 SHOOT MERISTEMLESS(STM)相互作用;然而,这种相互作用并不影响 WUS 的表达。此外,CCA1 和 LHY 基因的表达也相应地受到抑制,导致 35S::PtrTALE12 拟南芥早期开花。事实上,过表达 PtrTALE12 的转基因杨树以及过表达 AtBLH11(PtrTALE12 的近同源物)的拟南芥植物,均表现出 35S::PtrTALE12 拟南芥的表型(即侧芽发育增加)。总之,我们的研究结果表明 PtrTALE12 作为拟南芥和杨树侧芽形成的正调控因子发挥作用。