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小麦含一个手指结构域的 DNA 结合转录因子基因的全基因组分析:进化特征和多种非生物胁迫响应。

Genome-wide analysis of wheat DNA-binding with one finger (Dof) transcription factor genes: evolutionary characteristics and diverse abiotic stress responses.

机构信息

College of Life Science, Capital Normal University, Xisanhuan Beilu No. 105, 100048, Beijing, People's Republic of China.

Hubei Collaborative Innovation Center for Grain Industry (HCICGI), Yangtze University, Jingzhou, 434025, China.

出版信息

BMC Genomics. 2020 Apr 3;21(1):276. doi: 10.1186/s12864-020-6691-0.

Abstract

BACKGROUND

DNA binding with one finger (Dof) transcription factors play important roles in plant growth and abiotic stress responses. Although genome-wide identification and analysis of the DOF transcription factor family has been reported in other species, no relevant studies have emerged in wheat. The aim of this study was to investigate the evolutionary and functional characteristics associated with plant growth and abiotic stress responses by genome-wide analysis of the wheat Dof transcription factor gene family.

RESULTS

Using the recently released wheat genome database (IWGSC RefSeq v1.0), we identified 96 wheat Dof gene family members, which were phylogenetically clustered into five distinct subfamilies. Gene duplication analysis revealed a broad and heterogeneous distribution of TaDofs on the chromosome groups 1 to 7, and obvious tandem duplication genes were present on chromosomes 2 and 3.Members of the same gene subfamily had similar exon-intron structures, while members of different subfamilies had obvious differences. Functional divergence analysis indicated that type-II functional divergence played a major role in the differentiation of the TaDof gene family. Positive selection analysis revealed that the Dof gene family experienced different degrees of positive selection pressure during the process of evolution, and five significant positive selection sites (30A, 31 T, 33A, 102G and 104S) were identified. Additionally, nine groups of coevolving amino acid sites, which may play a key role in maintaining the structural and functional stability of Dof proteins, were identified. The results from the RNA-seq data and qRT-PCR analysis revealed that TaDof genes exhibited obvious expression preference or specificity in different organs and developmental stages, as well as in diverse abiotic stress responses. Most TaDof genes were significantly upregulated by heat, PEG and heavy metal stresses.

CONCLUSIONS

The genome-wide analysis and identification of wheat DOF transcription factor family and the discovery of important amino acid sites are expected to provide new insights into the structure, evolution and function of the plant Dof gene family.

摘要

背景

具有一个手指结构域(Dof)的 DNA 结合转录因子在植物生长和非生物胁迫响应中发挥着重要作用。尽管已经在其他物种中报道了全基因组鉴定和分析 DOF 转录因子家族,但在小麦中尚未出现相关研究。本研究旨在通过全基因组分析小麦 Dof 转录因子基因家族,探讨与植物生长和非生物胁迫响应相关的进化和功能特征。

结果

利用最近发布的小麦基因组数据库(IWGSC RefSeq v1.0),我们鉴定了 96 个小麦 Dof 基因家族成员,这些成员在系统进化上被聚类为五个不同的亚家族。基因复制分析表明,TaDofs 在染色体组 1 到 7 上广泛且呈异质分布,并且在染色体 2 和 3 上存在明显的串联重复基因。同一基因亚家族的成员具有相似的外显子-内含子结构,而不同亚家族的成员则具有明显的差异。功能分化分析表明,II 型功能分化在 TaDof 基因家族的分化中起着主要作用。正选择分析表明,Dof 基因家族在进化过程中经历了不同程度的正选择压力,并且鉴定出了 5 个显著的正选择位点(30A、31T、33A、102G 和 104S)。此外,还鉴定出了 9 组共进化的氨基酸位点,这些位点可能在维持 Dof 蛋白的结构和功能稳定性方面发挥着关键作用。RNA-seq 数据和 qRT-PCR 分析的结果表明,TaDof 基因在不同器官和发育阶段以及各种非生物胁迫响应中表现出明显的表达偏好或特异性。大多数 TaDof 基因在热、PEG 和重金属胁迫下显著上调。

结论

本研究对小麦 DOF 转录因子家族进行了全基因组分析和鉴定,并发现了重要的氨基酸位点,这有望为植物 Dof 基因家族的结构、进化和功能提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ee9/7118883/b26ab4b72a76/12864_2020_6691_Fig1_HTML.jpg

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