Molecular Manipulation of the MiR396/GRF Expression Module Alters the Salt Stress Response of Arabidopsis thaliana

IF 3.3 2区 农林科学 Q1 AGRONOMY Agronomy-Basel Pub Date : 2021-08-31 DOI:10.3390/agronomy11091751
Joseph L. Pegler, D. Q. Nguyen, Jackson M. J. Oultram, C. Grof, A. Eamens
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引用次数: 10

Abstract

We previously demonstrated that microRNA396 (miR396) abundance is altered in 15-day-old Arabidopsis thaliana (Arabidopsis) whole seedlings following their exposure to a 7-day salt stress treatment regime. We, therefore, used a molecular modification approach to generate two new Arabidopsis transformant populations with reduced (MIM396 plants) and elevated (MIR396 plants) miR396 abundance. The exposure of 8-day-old wild-type Arabidopsis whole seedlings and a representative plant line of the MIM396 and MIR396 transformant populations to a 7-day salt stress treatment regime revealed unique phenotypic and physiological responses to the imposed stress by unmodified wild-type Arabidopsis plants and the MIM396 and MIR396 transformat lines. A quantitative reverse transcriptase polymerase chain reaction (RT-qPCR) approach was, therefore, applied to demonstrate that the plant line specific responses to salt stress likely stemmed from the unique molecular profile of each of the GROWTH REGULATING FACTOR (GRF) transcription factor gene family members which form posttranscriptional targets of miR396-directed expression regulation. RT-qPCR additionally revealed that, in 15-day-old Arabidopsis whole seedlings, the three previously identified putative target genes of miR396 belonging to the NEUTRAL/ALKALINE NONLYSOSOMAL CERAMIDASE-LIKE (NCER) gene family, including NCER1, NCER2, and NCER3, do not form targets of miR396-directed expression regulation at the posttranscriptional level. Taken together, the phenotypic and molecular analyses presented here demonstrate that alteration of the miR396/GRF expression module is central to the molecular response of Arabidopsis to salt stress.
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MiR396/GRF表达模块的分子操作改变拟南芥的盐胁迫反应
我们之前证明,在暴露于7天盐胁迫处理方案后,15天大的拟南芥(Arabidopsis thaliana)整株幼苗中的微小RNA396(miR396)丰度发生了改变。因此,我们使用分子修饰方法产生了两个新的拟南芥转化体群体,其MIR396丰度降低(MIM396植物)和升高(MIR396植物)。将8天大的野生型拟南芥全苗和MIM396和MIR396转化体群体的代表性植物系暴露于7天盐胁迫处理方案显示了对未修饰的野生型Arabidopsis植物和MIM396和MIR306转化体系施加的胁迫的独特表型和生理反应。因此,应用定量逆转录聚合酶链式反应(RT-qPCR)方法来证明植物系对盐胁迫的特异性反应可能源于生长调节因子(GRF)转录因子基因家族成员的独特分子谱,这些成员形成miR396定向表达调控的转录后靶点。RT-qPCR还显示,在15天大的拟南芥整株幼苗中,属于中性/碱性非溶酶体神经酰胺酶样(NCER)基因家族的三个先前鉴定的miR396靶基因,包括NCER1、NCER2和NCER3,在转录后水平上不形成miR396定向表达调控的靶点。总之,本文的表型和分子分析表明,miR396/GRF表达模块的改变是拟南芥对盐胁迫的分子反应的核心。
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来源期刊
Agronomy-Basel
Agronomy-Basel Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
6.20
自引率
13.50%
发文量
2665
审稿时长
20.32 days
期刊介绍: Agronomy (ISSN 2073-4395) is an international and cross-disciplinary scholarly journal on agronomy and agroecology. It publishes reviews, regular research papers, communications and short notes, and there is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and/or methodical details must be provided for research articles.
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