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马铃薯脱水应答元件结合(DREB)基因家族的全基因组启动子分析、同源建模和蛋白质相互作用网络。

Genome-wide promoter analysis, homology modeling and protein interaction network of Dehydration Responsive Element Binding (DREB) gene family in Solanum tuberosum.

机构信息

Department of Plant Biotechnology, Atta-ur-Rahman School of Applied Biosciences, National University of Sciences and Technology, Islamabad, Pakistan.

出版信息

PLoS One. 2021 Dec 16;16(12):e0261215. doi: 10.1371/journal.pone.0261215. eCollection 2021.

Abstract

Dehydration Responsive Element Binding (DREB) regulates the expression of numerous stress-responsive genes, and hence plays a pivotal role in abiotic stress responses and tolerance in plants. The study aimed to develop a complete overview of the cis-acting regulatory elements (CAREs) present in S. tuberosum DREB gene promoters. A total of one hundred and four (104) cis-regulatory elements (CREs) were identified from 2.5kbp upstream of the start codon (ATG). The in-silico promoter analysis revealed variable sets of cis-elements and functional diversity with the predominance of light-responsive (30%), development-related (20%), abiotic stress-responsive (14%), and hormone-responsive (12%) elements in StDREBs. Among them, two light-responsive elements (Box-4 and G-box) were predicted in 64 and 61 StDREB genes, respectively. Two development-related motifs (AAGAA-motif and as-1) were abundant in StDREB gene promoters. Most of the DREB genes contained one or more Myeloblastosis (MYB) and Myelocytometosis (MYC) elements associated with abiotic stress responses. Hormone-responsive element i.e. ABRE was found in 59 out of 66 StDREB genes, which implied their role in dehydration and salinity stress. Moreover, six proteins were chosen corresponding to A1-A6 StDREB subgroups for secondary structure analysis and three-dimensional protein modeling followed by model validation through PROCHECK server by Ramachandran Plot. The predicted models demonstrated >90% of the residues in the favorable region, which further ensured their reliability. The present study also anticipated pocket binding sites and disordered regions (DRs) to gain insights into the structural flexibility and functional annotation of StDREB proteins. The protein association network determined the interaction of six selected StDREB proteins with potato proteins encoded by other gene families such as MYB and NAC, suggesting their similar functional roles in biological and molecular pathways. Overall, our results provide fundamental information for future functional analysis to understand the precise molecular mechanisms of the DREB gene family in S. tuberosum.

摘要

脱水响应元件结合(DREB)调节众多应激响应基因的表达,因此在植物的非生物胁迫响应和耐受中起着关键作用。本研究旨在全面了解马铃薯 DREB 基因启动子中存在的顺式作用调控元件(CAREs)。从起始密码子(ATG)上游的 2.5kbp 共鉴定了 104 个顺式调控元件(CREs)。计算机启动子分析揭示了不同的顺式元件集和功能多样性,其中光响应(30%)、发育相关(20%)、非生物胁迫响应(14%)和激素响应(12%)元件在 StDREBs 中占主导地位。其中,在 64 和 61 个 StDREB 基因中分别预测到两个光响应元件(Box-4 和 G-box)。在 StDREB 基因启动子中丰富的两种发育相关基序(AAGAA 基序和 as-1)。大多数 DREB 基因含有一个或多个与非生物胁迫反应相关的 Myeloblastosis(MYB)和 Myelocytometosis(MYC)元件。在 59 个 StDREB 基因中发现了激素响应元件 ABRE,这表明它们在脱水和盐胁迫中的作用。此外,根据 A1-A6 StDREB 亚组选择了六个蛋白质进行二级结构分析和三维蛋白质建模,然后通过 PROCHECK 服务器的 Ramachandran 图对模型进行验证。预测模型显示,在有利区域的残基中,有>90%的残基,这进一步确保了它们的可靠性。本研究还预测了口袋结合位点和无序区域(DRs),以深入了解 StDREB 蛋白的结构灵活性和功能注释。蛋白质相互作用网络确定了六个选定的 StDREB 蛋白与其他基因家族(如 MYB 和 NAC)编码的马铃薯蛋白之间的相互作用,表明它们在生物和分子途径中具有相似的功能作用。总的来说,我们的研究结果为进一步的功能分析提供了基础信息,以了解马铃薯 DREB 基因家族的精确分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/804d/8675703/9db2ba271e83/pone.0261215.g001.jpg

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