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拟南芥ENO2 编码的 MBP-1 样蛋白在应对干旱和盐胁迫中的生物学功能。

Biological functions of Arabidopsis thaliana MBP-1-like protein encoded by ENO2 in the response to drought and salt stresses.

机构信息

Beijing Key Laboratory of Gene Resource and Molecular Development, College of Life Sciences, Beijing Normal University, Beijing, 100875, China.

College of Life and Environmental Sciences, Minzu University of China, Beijing, 100081, China.

出版信息

Physiol Plant. 2020 Mar;168(3):660-674. doi: 10.1111/ppl.13013. Epub 2019 Aug 8.

Abstract

Arabidopsis thaliana ENO2 (AtENO2) plays an important role in plant growth and development. It encodes two proteins, a full-length AtENO2 and a truncated version, AtMBP-1, alternatively translated from the second start codon of the mRNA. The AtENO2 mutant (eno2 ) exhibited reduced leaf size, shortened siliques, a dwarf phenotype and higher sensitivity to abiotic stress. The objectives of this study were to analyze the regulatory network of the ENO2 gene in plant growth development and understand the function of AtENO2/AtMBP-1 to abiotic stresses. An eno2 /35S:AtENO2-GFP line and an eno2 /35S:AtMBP-1-GFP line of Arabidopsis were obtained. Results of sequencing by 454 GS FLX identified 578 upregulated and 720 downregulated differential expressed genes (DEGs) in a pairwise comparison (WT-VS-eno2 ). All the high-quality reads were annotated using the Gene Ontology (GO) terms. The DEGs with KEGG pathway annotations occurred in 110 pathways. The metabolic pathways and biosynthesis of secondary metabolites contained more DEGs. Moreover, the eno2 /35S:AtENO2-GFP line returned to the wild-type (WT) phenotype and was tolerant to drought and salt stresses. However, the eno2 /35S:AtMBP-1-GFP line was not able to recover the WT phenotype but it has a higher tolerance to drought and salt stresses. Results from this study demonstrate that AtENO2 is critical for the growth and development, and the AtMBP-1 coded by AtENO2 is important in tolerance of Arabidopsis to abiotic stresses.

摘要

拟南芥 ENO2(AtENO2)在植物生长发育中起着重要作用。它编码两种蛋白质,一种是全长 AtENO2,另一种是从 mRNA 的第二个起始密码子翻译而来的截短版本 AtMBP-1。AtENO2 突变体(eno2)表现出叶片变小、果荚缩短、矮化表型和对非生物胁迫的敏感性增加。本研究旨在分析 ENO2 基因在植物生长发育中的调控网络,并了解 AtENO2/AtMBP-1 对非生物胁迫的功能。获得了拟南芥 eno2/35S:AtENO2-GFP 系和 eno2/35S:AtMBP-1-GFP 系。454GSFLX 测序结果在 WT-VS-eno2 中鉴定出 578 个上调和 720 个下调的差异表达基因(DEGs)。所有高质量的读数都使用基因本体论(GO)术语进行注释。具有 KEGG 途径注释的 DEGs 发生在 110 条途径中。代谢途径和次生代谢物的生物合成包含更多的 DEGs。此外,eno2/35S:AtENO2-GFP 系恢复为野生型(WT)表型,并耐受干旱和盐胁迫。然而,eno2/35S:AtMBP-1-GFP 系无法恢复 WT 表型,但对干旱和盐胁迫具有更高的耐受性。本研究结果表明,AtENO2 对生长发育至关重要,由 AtENO2 编码的 AtMBP-1 在拟南芥耐受非生物胁迫方面很重要。

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