Komatsu Aino, Fujibayashi Mizuki, Kumagai Kazato, Suzuki Hidemasa, Hata Yuki, Takebayashi Yumiko, Kojima Mikiko, Sakakibara Hitoshi, Kyozuka Junko
Graduate School of Life Sciences, Tohoku University, Sendai, Japan.
RIKEN Center for Sustainable Resource Science, Yokohama, Japan.
Nat Commun. 2025 Feb 1;16(1):1263. doi: 10.1038/s41467-024-55728-3.
Marchantia polymorpha reproduces vegetatively (asexually) by producing propagules known as gemmae within gemma cups and sexually through spores. We previously reported that KARRIKIN INSENSITIVE2 (KAI2)-dependent signaling promotes gemma cup and gemma formation. KAI2A perceives unidentified endogenous ligand(s), tentatively referred to as KAI2 ligands (KL). Perception of KL by KAI2 triggers MORE AXILLARY GROWTH2 (MAX2)-dependent proteolysis of MpSUPPRESSOR of MORE AXILLALRY GROWTH2 1-LIKE (MpSMXL). In this study, we identify genes working downstream of KAI2-dependent signaling in M. polymorpha. We find that KAI2-dependent signaling positively controls the expression of MpLONELY GUY (MpLOG), encoding a cytokinin biosynthesis enzyme. Disruption of the MpLOG function decreases endogenous cytokinin levels and causes defects similar to KAI2-dependent signaling mutants. Moreover, supplying exogenous cytokinins rescues the defects of Mplog and KAI2-dependent signaling mutants, implying that cytokinins work downstream of KAI2-dependent signaling. Activation of MpLOG by KAI2-dependent signaling occurs in a highly cell-type-specific manner, leading to cell-specific induction of GEMMA CUP-ASSOCIATED MYB1 (GCAM1), the master regulator of vegetative reproduction of M. polymorpha. We propose a genetic cascade, starting from KAI2-dependent signaling, that promotes vegetative reproduction through the induction of MpLOG and GCAM1. The interaction between KAI2-dependent signaling and cytokinin in M. polymorpha provides insights into the function and evolution of KAI2-dependent signaling.
多形苔通过在芽杯内产生称为芽球的繁殖体进行营养繁殖(无性繁殖),并通过孢子进行有性繁殖。我们之前报道过,依赖于KARRIKIN INSENSITIVE2(KAI2)的信号传导促进芽杯和芽球的形成。KAI2A感知未鉴定的内源性配体,暂称为KAI2配体(KL)。KAI2对KL的感知触发了依赖于MORE AXILLARY GROWTH2(MAX2)的多形苔MORE AXILLALRY GROWTH2 1-LIKE抑制因子(MpSMXL)的蛋白水解。在本研究中,我们鉴定了多形苔中KAI2依赖信号下游起作用的基因。我们发现,KAI2依赖信号正向调控编码细胞分裂素生物合成酶的多形苔孤独家伙(MpLONELY GUY,MpLOG)的表达。MpLOG功能的破坏会降低内源性细胞分裂素水平,并导致与KAI2依赖信号突变体类似的缺陷。此外,供应外源细胞分裂素可挽救Mplog和KAI2依赖信号突变体的缺陷,这意味着细胞分裂素在KAI2依赖信号下游起作用。KAI2依赖信号对MpLOG的激活以高度细胞类型特异性的方式发生,导致多形苔营养繁殖的主要调节因子芽杯相关MYB1(GCAM1)的细胞特异性诱导。我们提出了一个从KAI2依赖信号开始的遗传级联反应,该反应通过诱导MpLOG和GCAM1促进营养繁殖。多形苔中KAI2依赖信号与细胞分裂素之间的相互作用为KAI2依赖信号的功能和进化提供了见解。