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植物 SYNTAXIN OF PLANTS81 通过 ROS 信号调节根分生组织活性和干细胞龛维持。

SYNTAXIN OF PLANTS81 regulates root meristem activity and stem cell niche maintenance via ROS signaling.

机构信息

Key Laboratory of Saline-alkali Vegetation Ecology Restoration, Ministry of Education, College of Life Sciences, Northeast Forestry University, Harbin 150040, China.

Peking University Institute of Advanced Agricultural Sciences, Shandong Laboratory of Advanced Agricultural Sciences at Weifang, Weifang, Shandong 261000, China.

出版信息

Plant Physiol. 2023 Feb 12;191(2):1365-1382. doi: 10.1093/plphys/kiac530.

Abstract

Root growth and development depend on continuous cell division and differentiation in root tips. In these processes, reactive oxygen species (ROS) play a critical role as signaling molecules. However, few ROS signaling regulators have been identified. In this study, we found knockdown of a syntaxin gene, SYNTAXIN OF PLANTS81 in Arabidopsis thaliana (AtSYP81) resulted in a severe reduction in root meristem activity and disruption of root stem cell niche (SCN) identity. Subsequently, we found AtSYP81 was highly expressed in roots and localized on the endoplasmic reticulum (ER). Interestingly, the reduced expression of AtSYP81 conferred a decreased number of peroxisomes in root meristem cells, raising a possibility that AtSYP81 regulates root development through peroxisome-mediated ROS production. Further transcriptome analysis revealed that class III peroxidases, which are responsible for intracellular ROS homeostasis, showed significantly changed expression in the atsyp81 mutants and AtSYP81 overexpression lines, adding evidence of the regulatory role of AtSYP81 in ROS signaling. Accordingly, rescuing the decreased ROS level via applying ROS donors effectively restored the defects in root meristem activity and SCN identity in the atsyp81 mutants. APETALA2 (AP2) transcription factors PLETHORA1 and 2 (PLT1 and PLT2) were then established as the downstream effectors in this pathway, while potential crosstalk between ROS signaling and auxin signaling was also indicated. Taken together, our findings suggest that AtSYP81 regulates root meristem activity and maintains root SCN identity by controlling peroxisome- and peroxidase-mediated ROS homeostasis, thus both broadening and deepening our understanding of the biological roles of SNARE proteins and ROS signaling.

摘要

根的生长和发育依赖于根尖中持续的细胞分裂和分化。在这些过程中,活性氧(ROS)作为信号分子起着关键作用。然而,已经鉴定出的 ROS 信号调节剂很少。在这项研究中,我们发现拟南芥(Arabidopsis thaliana)Syntaxin 基因(AtSYP81)的敲低导致根分生组织活性严重降低,并破坏根干细胞龛(SCN)的特性。随后,我们发现 AtSYP81 在根中高度表达,并定位于内质网(ER)上。有趣的是,AtSYP81 的表达减少导致根分生组织细胞中过氧化物酶体的数量减少,这表明 AtSYP81 通过过氧化物酶体介导的 ROS 产生来调节根发育。进一步的转录组分析表明,负责细胞内 ROS 稳态的 III 类过氧化物酶在 atsyp81 突变体和 AtSYP81 过表达系中表达明显改变,这为 AtSYP81 在 ROS 信号转导中的调节作用提供了证据。相应地,通过应用 ROS 供体来恢复降低的 ROS 水平,有效地恢复了 atsyp81 突变体中根分生组织活性和 SCN 特性的缺陷。APETALA2 (AP2) 转录因子 PLETHORA1 和 2 (PLT1 和 PLT2) 随后被确定为该途径中的下游效应子,而 ROS 信号转导和生长素信号转导之间的潜在串扰也被表明。总之,我们的研究结果表明,AtSYP81 通过控制过氧化物酶体和过氧化物酶介导的 ROS 稳态来调节根分生组织的活性并维持根 SCN 的特性,从而拓宽和深化了我们对 SNARE 蛋白和 ROS 信号转导的生物学作用的理解。

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