Li Jieni, Zhang Yuexiong, Li Zhenyong, Dai Hang, Luan Xin, Zhong Tianxiu, Chen Shu, Xie Xin-Ming, Qin Gang, Zhang Xiang-Qian, Peng Haifeng
College of Forestry and Landscape Architecture, South China Agricultural University, Guangzhou, 510642, China.
Guangdong Provincial Key Laboratory of Food Intelligent Manufacturing, College of Food Science and Engineering, Foshan University, Foshan, 528000, China.
Plant Mol Biol. 2023 May;112(1-2):47-59. doi: 10.1007/s11103-023-01347-3. Epub 2023 Apr 25.
Leucine-rich repeat extensins (LRXs) are required for plant growth and development through affecting cell growth and cell wall formation. LRX gene family can be classified into two categories: predominantly vegetative-expressed LRX and reproductive-expressed PEX. In contrast to the tissue specificity of Arabidopsis PEX genes in reproductive organs, rice OsPEX1 is also highly expressed in roots in addition to reproductive tissue. However, whether and how OsPEX1 affects root growth is unclear. Here, we found that overexpression of OsPEX1 retarded root growth by reducing cell elongation likely caused by an increase of lignin deposition, whereas knockdown of OsPEX1 had an opposite effect on root growth, indicating that OsPEX1 negatively regulated root growth in rice. Further investigation uncovered the existence of a feedback loop between OsPEX1 expression level and GA biosynthesis for proper root growth. This was supported by the facts that exogenous GA application downregulated transcript levels of OsPEX1 and lignin-related genes and rescued the root developmental defects of the OsPEX1 overexpression mutant, whereas OsPEX1 overexpression reduced GA level and the expression of GA biosynthesis genes. Moreover, OsPEX1 and GA showed antagonistic action on the lignin biosynthesis in root. OsPEX1 overexpression upregulated transcript levels of lignin-related genes, whereas exogenous GA application downregulated their expression. Taken together, this study reveals a possible molecular pathway of OsPEX1mediated regulation of root growth through coordinate modulation of lignin deposition via a negative feedback regulation between OsPEX1 expression and GA biosynthesis.
富含亮氨酸的重复伸展蛋白(LRXs)通过影响细胞生长和细胞壁形成来参与植物的生长发育。LRX基因家族可分为两类:主要在营养组织中表达的LRX和在生殖组织中表达的PEX。与拟南芥PEX基因在生殖器官中的组织特异性不同,水稻OsPEX1除了在生殖组织中高表达外,在根中也有高表达。然而,OsPEX1是否以及如何影响根的生长尚不清楚。在此,我们发现过表达OsPEX1会通过减少可能由木质素沉积增加引起的细胞伸长来抑制根的生长,而敲低OsPEX1对根的生长有相反的作用,这表明OsPEX1在水稻中对根的生长起负调控作用。进一步的研究发现,为了实现根的正常生长,OsPEX1表达水平与赤霉素(GA)生物合成之间存在一个反馈环。以下事实支持了这一点:外源施加GA会下调OsPEX1和木质素相关基因的转录水平,并挽救OsPEX1过表达突变体的根发育缺陷,而OsPEX1过表达会降低GA水平以及GA生物合成基因的表达。此外,OsPEX1和GA在根的木质素生物合成中表现出拮抗作用。OsPEX1过表达会上调木质素相关基因的转录水平,而外源施加GA则会下调它们的表达。综上所述,本研究揭示了一条可能的分子途径,即OsPEX1通过在OsPEX1表达和GA生物合成之间的负反馈调节来协同调节木质素沉积,从而介导对根生长的调控。