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系统分析滨藜属 bZIP 基因家族在盐胁迫下的作用。

Systematic analysis of bZIP gene family in Suaeda australis reveal their roles under salt stress.

机构信息

Fishery College, Zhejiang Ocean University, Zhoushan, 316022, Zhejiang, China.

School of Teacher Education, Nanjing Xiaozhuang University, Nanjing, 211171, Jiangsu, China.

出版信息

BMC Plant Biol. 2024 Aug 30;24(1):816. doi: 10.1186/s12870-024-05535-1.

Abstract

BACKGROUND

Suaeda australis is one of typical halophyte owing to high levels of salt tolerance. In addition, the bZIP gene family assumes pivotal functions in response to salt stress. However, there are little reports available regarding the bZIP gene family in S. australis.

RESULTS

In this study, we successfully screened 44 bZIP genes within S. australis genome. Subsequently, we conducted an extensive analysis, encompassing investigations into chromosome location, gene structure, phylogenetic relationship, promoter region, conserved motif, and gene expression profile. The 44 bZIP genes were categorized into 12 distinct groups, exhibiting an uneven distribution among the 9 chromosomes of S. australis chromosomes, but one member (Sau23745) was mapped on unanchored scaffolds. Examination of cis-regulatory elements revealed that bZIP promoters were closely related to anaerobic induction, transcription start, and light responsiveness. Comparative transcriptome analysis between ST1 and ST2 samples identified 2,434 DEGs, which were significantly enriched in some primary biological pathways related to salt response-regulating signaling based on GO and KEGG enrichment analysis. Expression patterns analyses clearly discovered the role of several differently expressed SabZIPs, including Sau08107, Sau08911, Sau11415, Sau16575, and Sau19276, which showed higher expression levels in higher salt concentration than low concentration and a response to salt stress. These expression patterns were corroborated through RT-qPCR analysis. The six differentially expressed SabZIP genes, all localized in the nucleus, exhibited positive regulation involved in the salt stress response. SabZIP14, SabZIP26, and SabZIP36 proteins could bind to the promoter region of downstream salt stress-related genes and activate their expressions.

CONCLUSIONS

Our findings offer valuable insights into the evolutionary trajectory of the bZIP gene family in S. australis and shed light on their roles in responding to salt stress. In addition to fundamental genomic information, these results would serve as a foundational framework for future investigations into the regulation of salt stress responses in S. australis.

摘要

背景

盐地碱蓬是一种典型的盐生植物,具有较高的耐盐性。此外,bZIP 基因家族在响应盐胁迫方面起着关键作用。然而,关于盐地碱蓬的 bZIP 基因家族的报道很少。

结果

本研究在盐地碱蓬基因组中成功筛选到 44 个 bZIP 基因。随后,我们进行了广泛的分析,包括染色体定位、基因结构、系统发育关系、启动子区、保守基序和基因表达谱分析。这 44 个 bZIP 基因被分为 12 个不同的组,在盐地碱蓬的 9 条染色体上不均匀分布,但有一个成员(Sau23745)被定位在未锚定的支架上。顺式调控元件分析表明,bZIP 启动子与厌氧诱导、转录起始和光响应密切相关。ST1 和 ST2 样本之间的比较转录组分析鉴定出 2434 个 DEGs,根据 GO 和 KEGG 富集分析,这些基因显著富集在一些与盐响应调节信号相关的主要生物学途径中。表达模式分析清楚地发现了几个表达不同的 SabZIP 的作用,包括 Sau08107、Sau08911、Sau11415、Sau16575 和 Sau19276,它们在高盐浓度下的表达水平高于低盐浓度,并对盐胁迫有反应。这些表达模式通过 RT-qPCR 分析得到了证实。这 6 个差异表达的 SabZIP 基因都定位于细胞核内,表现出对盐胁迫反应的正向调控。SabZIP14、SabZIP26 和 SabZIP36 蛋白可以结合到下游盐胁迫相关基因的启动子区域,并激活它们的表达。

结论

本研究为盐地碱蓬 bZIP 基因家族的进化轨迹提供了有价值的见解,并揭示了它们在响应盐胁迫方面的作用。除了基本的基因组信息外,这些结果还将为未来研究盐地碱蓬盐胁迫反应的调控提供基础框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fd4/11363414/2e575c9ef170/12870_2024_5535_Fig1_HTML.jpg

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