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EBS1 结合 S-核糖核酸酶和油菜素内酯信号通路特异性地调控拟南芥耐重碳酸盐胁迫。

An S-ribonuclease binding protein EBS1 and brassinolide signaling are specifically required for Arabidopsis tolerance to bicarbonate.

机构信息

State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Lin'an, Hangzhou, China.

Key Laboratory of Saline-Alkali Vegetation Ecology Restoration, Ministry of Education, College of Life Science, Northeast Forestry University, Harbin, China.

出版信息

J Exp Bot. 2021 Feb 24;72(4):1449-1459. doi: 10.1093/jxb/eraa524.

Abstract

Bicarbonate (NaHCO3) present in soils is usually considered to be a mixed stress for plants, with salts and high pH. NaHCO3-specific signaling in plants has rarely been reported. In this study, transcriptome analyses were conducted in order to identify NaHCO3-specific signaling in Arabidopsis. Weighted correlation network analysis was performed to isolate NaHCO3-specific modules in comparison with acetate treatment. The genes in the NaHCO3-root-specific module, which exhibited opposite expression to that in sodium acetate treatments, were further examined with their corresponding knock-out mutants. The gene Exclusively Bicarbonate Sensitive 1 (EBS1) encoding an S-ribonuclease binding protein, was identified to be specifically involved in plant tolerance to NaHCO3, but not to the other two alkaline salts, acetate and phosphate. We also identified the genes that are commonly regulated by bicarbonate, acetate and phosphate. Multiple brassinosteroid-associated gene ontology terms were enriched in these genes. Genetic assays showed that brassinosteroid signaling positively regulated plant tolerance to NaHCO3 stress, but negatively regulated tolerance to acetate and phosphate. Overall, our data identified bicarbonate-specific genes, and confirmed that alkaline stress is mainly dependent on the specificities of the weak acid ions, rather than high pH.

摘要

土壤中的碳酸氢盐(NaHCO3)通常被认为是对植物具有盐和高 pH 双重胁迫的物质。植物中碳酸氢盐特异性信号的报道很少。在这项研究中,进行了转录组分析,以鉴定拟南芥中碳酸氢盐特异性信号。通过与乙酸盐处理进行比较,进行了加权相关网络分析以分离碳酸氢盐特异性模块。与在乙酸钠处理中表现出相反表达的碳酸氢盐-根特异性模块中的基因,用其相应的敲除突变体进一步进行了检查。鉴定出编码 S-核糖核酸酶结合蛋白的基因 Exclusively Bicarbonate Sensitive 1 (EBS1) 特异性参与植物对碳酸氢盐的耐受性,而不是对另外两种碱性盐(乙酸盐和磷酸盐)的耐受性。我们还鉴定了共同受碳酸氢盐、乙酸盐和磷酸盐调控的基因。这些基因中富含多个油菜素甾体相关的基因本体术语。遗传分析表明,油菜素甾体信号正向调节植物对碳酸氢盐胁迫的耐受性,但负向调节对乙酸盐和磷酸盐的耐受性。总的来说,我们的数据鉴定了碳酸氢盐特异性基因,并证实碱性胁迫主要依赖于弱酸离子的特异性,而不是高 pH 值。

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