OsPEX1, an extensin-like protein, negatively regulates root growth in a gibberellin-mediated manner in rice

被引:0
|
作者
Jieni Li
Yuexiong Zhang
Zhenyong Li
Hang Dai
Xin Luan
Tianxiu Zhong
Shu Chen
Xin-Ming Xie
Gang Qin
Xiang-Qian Zhang
Haifeng Peng
机构
[1] South China Agricultural University,College of Forestry and Landscape Architecture
[2] Foshan University,Guangdong Provincial Key Laboratory of Food Intelligent Manufacturing, College of Food Science and Engineering
[3] Guangxi Academy of Agricultural Sciences,Rice Research Institute, Guangxi Key Laboratory of Rice Genetics and Breeding
[4] Guangdong Academy of Agricultural Sciences,Rice Research Institute
[5] South China Agricultural University,Guangdong Laboratory for Lingnan Modern Agriculture,College of Life Sciences
来源
Plant Molecular Biology | 2023年 / 112卷
关键词
Rice; Leucine-rich repeat extensin-like protein; Gibberellin; Lignin; Root growth;
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学科分类号
摘要
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 GA3 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 GA3 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.
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页码:47 / 59
页数:12
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