edaeda edulis DREB2和VPase的基因分析及表达

Q4 Biochemistry, Genetics and Molecular Biology Mexican Journal of Biotechnology Pub Date : 2023-07-01 DOI:10.29267/mxjb.2023.8.3.25
G. V. Cerrillo-Rojas, R. Soria-Guerra, A. E. Ochoa-Alfaro, Hans Christian Correa-Aguado, Daniela A. Díaz-García, C. Garcidueñas-Piña, J. F. Morales-Domínguez
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引用次数: 0

摘要

土壤盐分严重影响植物,特别是作物。盐生植物对盐度胁迫具有抗性,因为它们已经发展出几种抗性基因机制,如液泡焦磷酸酶(VPase)将Na+酶切区隔成液泡,以及转录因子如脱水敏感元件结合蛋白(DREB)的上调表达。盐生植物是耐盐基因的潜在来源,被认为是这类胁迫的研究模式。本研究利用盐生植物碱蓬对DREB和VPase基因进行了鉴定、表征、计算机分析和表达。SeDREB和SeVP的推导氨基酸序列与同源序列显示出>80%的相似性,并且包含这些蛋白质的保守结构域和基序特征。系统发育表明,SeDREB属于在盐度中表达的A2亚组,而SeVP属于K依赖性液泡蛋白组。在计算机上共同探索分析显示了与几种与盐度和干旱有关的蛋白质的相互作用。野生植物的根和叶中的基因表达高于体外植物。S.edulis所居住的土壤的pH值为9.2,EC=4.2 dS m-1,钠的迁移因子为3.4,这表明植物对这种金属的吸附更高。
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Characterization, in silico analysis and expression of DREB2 and VPase from Suaeda edulis
Soil salinity severely affects plants and specially to crop plants. Halophytes are resistant to salinity stress since they have developed several gene mechanisms of resistance, such as the enzymatic Na+ compartmentalization into vacuoles by vacuolar Pyrophosphatase (VPase) and the up-expression of transcription factors such as Dehydration-sensitive Element-Binding proteins (DREB). Halophytes are a potential source of salt-resistance genes and are considered as a study model for this type of stress. In this study, thehalophyte Suaeda edulis was used for the identification, characterization, in silico analysis and expression of the DREB and VPase genes. Deduced amino acid sequences of SeDREB and SeVP showed >80% similarity with their homologous and contain conserved domains and motifs characteristic of these proteins. Phylogeny showed that SeDREB is in the subgroup A2 that is expressed in salinity, while SeVP is in the group of the K-dependent vacuolar proteins. In silico coexpresion analysis showed the interaction with several proteins related with salinity and drought. The expression of genes was higher in roots and leaves in wild plants than in in vitro plants. The soil inhabited by S. edulis has a pH 9.2, an EC=4.2 dS m-1, as well as a translocation factor for sodium of 3.4, which indicates a higher adsorption of this metal by the plant.
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来源期刊
Mexican Journal of Biotechnology
Mexican Journal of Biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
1.30
自引率
0.00%
发文量
12
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