Botany, University of Osnabrück, Osnabrück, 49076, Germany.
Max Planck Institute for Chemical Ecology, Jena, 07745, Germany.
New Phytol. 2019 Dec;224(4):1627-1641. doi: 10.1111/nph.16132. Epub 2019 Oct 6.
TCP transcription factors are key regulators of angiosperm cell proliferation processes. It is unknown whether their regulatory growth capacities are conserved across land plants, which we examined in liverworts, one of the earliest diverging land plant lineages. We generated knockout mutants for MpTCP1, the single TCP-P clade gene in Marchantia polymorpha, and characterized its function by conducting cell proliferation and morphological analyses as well as messenger RNA expression, transcriptome, chemical, and DNA binding studies. Mptcp1 lines show a reduced vegetative thallus growth and extra tissue formation in female reproductive structures. Additionally, mutant plants reveal increased hydrogen peroxide (H O ) levels and an enhanced pigmentation in the thallus caused by formation of secondary metabolites, such as aminochromes. MpTCP1 proteins interact redox dependently with DNA and regulate the expression of a comprehensive redox network, comprising enzymes involved in H O metabolism. MpTCP1 regulates Marchantia growth in a context-dependent manner. Redox sensitivity of the DNA binding capacity of MpTCP1 proteins provides a mechanism to respond to altered redox conditions. Our data suggest that MpTCP1 activity could thereby have contributed to diversification of land plant morphologies and to adaptations to abiotic and biotic challenges, as experienced by liverworts during early land plant colonization.
TCP 转录因子是调控被子植物细胞增殖过程的关键因子。其调控生长的能力是否在所有陆地植物中保守,我们在最早分化的陆地植物系统之一的苔类植物中进行了研究。我们生成了 Marchantia polymorpha 中单个 TCP-P 分支基因 MpTCP1 的敲除突变体,并通过细胞增殖和形态分析以及信使 RNA 表达、转录组、化学和 DNA 结合研究来表征其功能。Mptcp1 系表现出生长缓慢,雌性生殖结构中出现额外的组织形成。此外,突变体植物中过氧化氢(H₂O)水平升高,次级代谢产物如氨基酸色素的形成导致叶状体的色素沉着增强。MpTCP1 蛋白与 DNA 进行依赖于氧化还原的相互作用,并调节包括参与 H₂O 代谢的酶在内的全面氧化还原网络的表达。MpTCP1 以依赖于上下文的方式调节 Marchantia 的生长。MpTCP1 蛋白的 DNA 结合能力的氧化还原敏感性为响应变化的氧化还原条件提供了一种机制。我们的数据表明,MpTCP1 的活性可能有助于陆地植物形态的多样化以及对苔类植物在早期陆地植物定殖过程中经历的非生物和生物挑战的适应。