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拟南芥 SMN2/HEN2,编码 DEAD-Box RNA 解旋酶,调控抗性基因 SMN1/RPS6 的正确表达,并参与 mekk1 和 mpk4 突变体的矮化、自身免疫表型。

Arabidopsis SMN2/HEN2, Encoding DEAD-Box RNA Helicase, Governs Proper Expression of the Resistance Gene SMN1/RPS6 and Is Involved in Dwarf, Autoimmune Phenotypes of mekk1 and mpk4 Mutants.

机构信息

Faculty and Graduate School of Agriculture, Kagawa University, 2393 Ikenobe, Miki-cho, Kita-gun, Kagawa, 761-0795 Japan.

United Graduate School of Agriculture, Ehime University, 3-5-7 Tarumi, Matsuyama, Ehime, 790-8566 Japan.

出版信息

Plant Cell Physiol. 2020 Aug 1;61(8):1507-1516. doi: 10.1093/pcp/pcaa071.

Abstract

In Arabidopsis thaliana, a mitogen-activated protein kinase pathway, MEKK1-MKK1/MKK2-MPK4, is important for basal resistance and disruption of this pathway results in dwarf, autoimmune phenotypes. To elucidate the complex mechanisms activated by the disruption of this pathway, we have previously developed a mutant screening system based on a dwarf autoimmune line that overexpressed the N-terminal regulatory domain of MEKK1. Here, we report that the second group of mutants, smn2, had defects in the SMN2 gene, encoding a DEAD-box RNA helicase. SMN2 is identical to HEN2, whose function is vital for the nuclear RNA exosome because it provides non-ribosomal RNA specificity for RNA turnover, RNA quality control and RNA processing. Aberrant SMN1/RPS6 transcripts were detected in smn2 and hen2 mutants. Disease resistance against Pseudomonas syringae pv. tomato DC3000 (hopA1), which is conferred by SMN1/RPS6, was decreased in smn2 mutants, suggesting a functional connection between SMN1/RPS6 and SMN2/HEN2. We produced double mutants mekk1smn2 and mpk4smn2 to determine whether the smn2 mutations suppress the dwarf, autoimmune phenotypes of the mekk1 and mpk4 mutants, as the smn1 mutations do. As expected, the mekk1 and mpk4 phenotypes were suppressed by the smn2 mutations. These results suggested that SMN2 is involved in the proper function of SMN1/RPS6. The Gene Ontology enrichment analysis using RNA-seq data showed that defense genes were downregulated in smn2, suggesting a positive contribution of SMN2 to the genome-wide expression of defense genes. In conclusion, this study provides novel insight into plant immunity via SMN2/HEN2, an essential component of the nuclear RNA exosome.

摘要

在拟南芥中,丝裂原活化蛋白激酶途径 MEKK1-MKK1/MKK2-MPK4 对基础抗性很重要,该途径的破坏会导致植株矮小、自身免疫表型。为了阐明该途径破坏所激活的复杂机制,我们之前基于过表达 MEKK1 的 N 端调节结构域的矮化自身免疫系开发了一种突变体筛选系统。在这里,我们报告第二组突变体 smn2 存在 SMN2 基因缺陷,该基因编码一个 DEAD 框 RNA 解旋酶。SMN2 与 HEN2 相同,其功能对核 RNA 外切体至关重要,因为它为 RNA 周转、RNA 质量控制和 RNA 加工提供了非核糖体 RNA 的特异性。在 smn2 和 hen2 突变体中检测到异常的 SMN1/RPS6 转录本。smn2 突变体中对 Pseudomonas syringae pv. tomato DC3000(hopA1)的抗病性降低,SMN1/RPS6 赋予该抗性,这表明 SMN1/RPS6 和 SMN2/HEN2 之间存在功能联系。我们产生了 mekk1smn2 和 mpk4smn2 双突变体,以确定 smn2 突变是否像 smn1 突变一样抑制 mekk1 和 mpk4 突变体的矮小、自身免疫表型。正如预期的那样,smn2 突变抑制了 mekk1 和 mpk4 的表型。这些结果表明 SMN2 参与了 SMN1/RPS6 的正常功能。使用 RNA-seq 数据的基因本体富集分析表明,防御基因在 smn2 中下调,这表明 SMN2 对防御基因的全基因组表达有积极贡献。总之,这项研究通过 SMN2/HEN2 为植物免疫提供了新的见解,SMN2/HEN2 是核 RNA 外切体的一个重要组成部分。

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