FOUR LIPS plays a role in meristemoid‐to‐GMC fate transition during stomatal development in Arabidopsis

突变体 生物 警卫室 拟南芥 过渡(遗传学) 细胞生物学 转录因子 细胞命运测定 遗传学 抄写(语言学) 等位基因 基因 语言学 哲学
作者
Ping Li,Chen Liang,Xuefan Gu,Mingfeng Zhao,Wenjin Wang,Suiwen Hou
出处
期刊:Plant Journal [Wiley]
卷期号:114 (2): 424-436 被引量:1
标识
DOI:10.1111/tpj.16146
摘要

SUMMARY Meristemoids, which are stomatal precursor cells, exhibit self‐renewal and differentiation abilities. However, the only known core factor associated with meristemoid division termination and fate transition is the heterodimer formed by the basic helix–loop–helix proteins MUTE and SCREAMs (SCRMs). FOUR LIPS (FLP), a well‐known transcription factor that restricts guard mother cell (GMC) division, is a direct target of MUTE. Whether FLP involves in meristemoid differentiation is unknown. Through sensitized genetic screening of flp‐1 , we identified a mute‐like ( mutl ) mutant with arrested meristemoids. The mutant carried a novel allele of the MUTE locus, i.e., mute‐4 . Intriguingly, mute‐4 is a hypomorphic allele that exhibits wild‐type appearance with slightly delayed meristemoid‐to‐GMC transition, whereas it renders an unexpected mutl epidermis with most meristemoids arrested and very few stomata when combined with flp ( flp mute‐4 ), suggesting that FLP is a positive regulator during this transition process. Consistently, the expression of FLP increased during GMC commitment, and the number of cells at this stage was markedly increased in flp . flp scrm double mutants produced arrested meristemoids similar to mute , and FLP was able to interact physically with SCRM. Taken together, our results demonstrate that FLP functions together with MUTE and SCRMs to direct meristemoid‐to‐GMC fate transition.

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