Zhang Xiaolong, Chen Yingying, Chen Hongyu, Guo Chaocheng, Su Xue, Mu Tingting, Feng Bin, Wang Yu, Liu Zhixin, Zhang Biaoming, Li Yan, Zhang Haitao, Yuan Wenya, Li Haitao
State Key Laboratory of Biocatalysis and Enzyme Engineering, School of Life Sciences, Hubei University, Wuhan 430062, China.
National Key Laboratory of Wheat and Maize Crop Science, College of Agronomy, Henan Agricultural University, Zhengzhou 450002, China.
Plant Sci. 2024 Sep;346:112149. doi: 10.1016/j.plantsci.2024.112149. Epub 2024 Jun 6.
TOPLESS/TOPLESS-RELATED (TPL/TPR) proteins belong to the Groucho (Gro)/Tup1 family co-repressors and act as broad co-repressors that modulate multiple phytohormone signalling pathways and various developmental processes in plant. However, TPL/TPR co-repressors so far are poorly understood in the rapeseed, one of the world-wide important oilseed crops. In this study, we comprehensively characterized eighteen TPL/TPR genes into five groups in the rapeseed genome. Members of TPL/TPR1/TPR4 and TPR2/TPR3 had close evolutionary relationship, respectively. All TPL/TPRs had similar expression patterns and encode conserved protein domain. In addition, we demonstrated that BnaA9.TPL interacted with all known plant repression domain (RD) sequences, which were distributed in non-redundant 24,238 (22.6 %) genes and significantly enriched in transcription factors in the rapeseed genome. These transcription factors were largely co-expressed with the TPL/TPR genes and involved in diverse pathway, including phytohormone signal transduction, protein kinases and circadian rhythm. Furthermore, BnaA9.TPL was revealed to regulate apical embryonic fate by interaction with Bna.IAA12 and suppression of PLETHORA1/2. BnaA9.TPL was also identified to regulate leaf morphology by interaction with Bna.AS1 (Asymmetric leaves 1) and suppression of KNOTTED-like homeobox genes and YABBY5. These data not only suggest the rapeseed TPL/TPRs play broad roles in different processes, but also provide useful information to uncover more TPL/TPR-mediated control of plant development in rapeseed.
无顶/无顶相关(TPL/TPR)蛋白属于Groucho(Gro)/Tup1家族共抑制因子,作为广泛的共抑制因子,调节植物中的多种植物激素信号通路和各种发育过程。然而,到目前为止,在世界重要油料作物之一的油菜中,对TPL/TPR共抑制因子的了解还很少。在本研究中,我们在油菜基因组中全面鉴定了18个TPL/TPR基因,分为五组。TPL/TPR1/TPR4和TPR2/TPR3的成员分别具有密切的进化关系。所有TPL/TPR都具有相似的表达模式,并编码保守的蛋白结构域。此外,我们证明BnaA9.TPL与所有已知的植物抑制结构域(RD)序列相互作用,这些序列分布在油菜基因组中24,238个(22.6%)非冗余基因中,并且在转录因子中显著富集。这些转录因子在很大程度上与TPL/TPR基因共表达,并参与多种途径,包括植物激素信号转导、蛋白激酶和昼夜节律。此外,发现BnaA9.TPL通过与Bna.IAA12相互作用并抑制PLETHORA1/2来调节顶端胚胎命运。还确定BnaA9.TPL通过与Bna.AS1(不对称叶1)相互作用并抑制类结瘤同源框基因和YABBY5来调节叶片形态。这些数据不仅表明油菜TPL/TPR在不同过程中发挥广泛作用,而且为揭示油菜中更多TPL/TPR介导的植物发育调控提供了有用信息。