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骆驼蓬中 bZIP 转录因子的全基因组分析:对发育和应激反应的意义。

Genome-wide profiling of bZIP transcription factors in Camelina sativa: implications for development and stress response.

机构信息

Department of Bioinformatics and Biotechnology, Government College University, Faisalabad, Pakistan.

Department of Biology, College of Science, Princess Nourah Bint Abdulrahman University, P.O. Box 84428, Riyadh, 11671, Saudi Arabia.

出版信息

BMC Genom Data. 2024 Oct 14;25(1):88. doi: 10.1186/s12863-024-01270-6.

Abstract

BACKGROUND

The bZIP transcription factor family, characterized by a bZIP domain, plays vital roles in plant stress responses and development. While this family has been extensively studied in various plant species, its specific functions in Camelina sativa (False Flax) remain underexplored.

METHODS AND RESULTS

This study identified 71 bZIP transcription factors in C. sativa, classified into nine distinct groups based on phylogenetic analysis. Subcellular localization predicted a nucleus-specific expression for these bZIPs. Analysis of GRAVY scores revealed a range from 0.469 to -1.256, indicating a spectrum from hydrophobic to hydrophilic properties. Motif analysis uncovered 10 distinct motifs, with one motif being universally present in all CsbZIPs. Conserved domain analysis highlighted several domains beyond the core bZIP domain. Protein-protein interaction predictions suggested a robust network involving CsbZIPs. Moreover, promoter analysis revealed over 60 types of cis-elements, including those responsive to stress. Expression studies through RNA-seq and Real-time RT-qPCR demonstrated high expression of CsbZIPs in roots, leaves, flowers, and stems. Specifically, CsbZIP01, CsbZIP02, CsbZIP44, and CsbZIP60 were consistently up-regulated under cold, salt, and drought stresses, whereas CsbZIP34 and CsbZIP35 were down-regulated.

CONCLUSION

This study presents the first comprehensive genome-wide profiling of bZIP transcription factors in Camelina sativa, providing novel insights into their roles in plant development and stress response mechanisms. By identifying and characterizing the bZIP gene family in C. sativa, this research offers new opportunities for improving stress tolerance and crop resilience through targeted genetic approaches, addressing key challenges in agriculture under changing environmental conditions.

摘要

背景

bZIP 转录因子家族以 bZIP 结构域为特征,在植物应激反应和发育中发挥着重要作用。虽然该家族在各种植物物种中得到了广泛研究,但在荠蓝中其特定功能仍未得到充分探索。

方法和结果

本研究在荠蓝中鉴定出 71 个 bZIP 转录因子,根据系统发育分析将其分为九个不同的组。亚细胞定位预测这些 bZIP 蛋白在细胞核中特异性表达。甘氨酸丰富度(GRAVY)评分分析显示其范围为 0.469 至-1.256,表明其具有从疏水性到亲水性的特性。基序分析揭示了 10 个不同的基序,其中一个基序普遍存在于所有 CsbZIP 中。保守结构域分析突出了核心 bZIP 结构域之外的几个结构域。蛋白质-蛋白质相互作用预测表明存在一个涉及 CsbZIP 的稳健网络。此外,启动子分析揭示了超过 60 种顺式元件,包括对胁迫响应的元件。通过 RNA-seq 和实时 RT-qPCR 的表达研究表明,CsbZIP 在根、叶、花和茎中均有高表达。具体而言,CsbZIP01、CsbZIP02、CsbZIP44 和 CsbZIP60 在冷、盐和干旱胁迫下持续上调,而 CsbZIP34 和 CsbZIP35 下调。

结论

本研究首次全面分析了荠蓝中的 bZIP 转录因子,为其在植物发育和应激反应机制中的作用提供了新的见解。通过鉴定和表征荠蓝中的 bZIP 基因家族,本研究为通过靶向遗传方法提高植物的耐受力和作物的抗逆性提供了新的机会,从而应对气候变化条件下农业面临的关键挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efdd/11479404/e240b1cd18c8/12863_2024_1270_Fig1_HTML.jpg

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