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ROP GTPase 循环在活跃和不活跃状态之间的调节对于地钱的营养器官发生是必不可少的。

Regulation of ROP GTPase cycling between active and inactive states is essential for vegetative organogenesis in Marchantia polymorpha.

机构信息

Department of Biology, Graduate School of Science, Kobe University, Kobe, 657-8501Japan.

Division of Biological Science, Graduate School of Science and Technology, Nara Institute of Science and Technology (NAIST), Ikoma, 630-0192Japan.

出版信息

Development. 2024 Oct 15;151(20). doi: 10.1242/dev.202928. Epub 2024 Sep 10.

DOI:10.1242/dev.202928
PMID:39133134
Abstract

Rho/Rac of plant (ROP) GTPases are plant-specific proteins that function as molecular switches, activated by guanine nucleotide exchange factors (GEFs) and inactivated by GTPase-activating proteins (GAPs). The bryophyte Marchantia polymorpha contains single copies of ROP (MpROP), GEFs [ROPGEF and SPIKE (SPK)] and GAPs [ROPGAP and ROP ENHANCER (REN)]. MpROP regulates the development of various tissues and organs, such as rhizoids, gemmae and air chambers. The ROPGEF KARAPPO (MpKAR) is essential for gemma initiation, but the functions of other ROP regulatory factors are less understood. This study focused on two GAPs: MpROPGAP and MpREN. Mpren single mutants showed defects in thallus growth, rhizoid tip growth, gemma development, and air-chamber formation, whereas Mpropgap mutants showed no visible abnormalities. However, Mpropgap Mpren double mutants had more severe phenotypes than the Mpren single mutants, suggesting backup roles of MpROPGAP in processes involving MpREN. Overexpression of MpROPGAP and MpREN resulted in similar gametophyte defects, highlighting the importance of MpROP activation/inactivation cycling (or balancing). Thus, MpREN predominantly, and MpROPGAP as a backup, regulate gametophyte development, likely by controlling MpROP activation in M. polymorpha.

摘要

植物 ROP(Rho/Rac of plant)GTPases 是植物特异性蛋白,作为分子开关发挥作用,被鸟嘌呤核苷酸交换因子(GEFs)激活,被 GTP 酶激活蛋白(GAPs)失活。苔藓植物 Marchantia polymorpha 含有单个 ROP(MpROP)拷贝、GEFs [ROPGEF 和 SPIKE(SPK)]和 GAPs [ROPGAP 和 ROP 增强子(REN)]。MpROP 调节各种组织和器官的发育,如假根、芽基和气囊。ROPGEF KARAPPO(MpKAR)对于芽基起始是必需的,但其他 ROP 调节因子的功能了解较少。本研究集中于两种 GAP:MpROPGAP 和 MpREN。Mpren 单突变体在叶状体生长、假根尖端生长、芽基发育和气囊形成方面表现出缺陷,而 Mpropgap 突变体则没有明显的异常。然而,Mpropgap Mpren 双突变体比 Mpren 单突变体具有更严重的表型,表明 MpROPGAP 在涉及 MpREN 的过程中具有备份作用。MpROPGAP 和 MpREN 的过表达导致类似的配子体缺陷,突出了 MpROP 激活/失活循环(或平衡)的重要性。因此,MpREN 主要,而 MpROPGAP 作为备份,调节配子体发育,可能通过控制 M. polymorpha 中的 MpROP 激活来实现。

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