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非生物胁迫下转录因子的全基因组综合鉴定与表达谱分析

Comprehensive Genome-Wide Identification and Expression Profiling of Transcription Factors in Under Abiotic Stress.

作者信息

Ali Akhtar, Khan Noor Muhammad, Jiang Yiqi, Zhou Guangzhen, Wan Yinglang

机构信息

Hainan Key Laboratory for Sustainable Utilization of Tropical Bioresources, School of Tropical Agriculture and Forestry, Hainan University, Haikou 570228, China.

The Ministry of Education Key Laboratory for Ecology of Tropical Islands, Key Laboratory of Tropical Animal and Plant Ecology of Hainan Province, College of Life Sciences, Hainan Normal University, Haikou 571158, China.

出版信息

Int J Mol Sci. 2024 Dec 1;25(23):12936. doi: 10.3390/ijms252312936.

Abstract

The basic helix-loop-helix () transcription factor (TF) family, the second-largest among eukaryotes, is known for its evolutionary and functional diversity across plant species. However, genes have not yet been characterized in . In this study, we identified 76 genes, which exhibit a variety of physicochemical properties. Phylogenetic analysis revealed evolutionary relationships between genes () and their counterparts in (). These analyses also highlighted conserved amino acid motifs (S, R, K, P, L, A, G, and D), conserved domains, and evolutionary changes, such as insertions, deletions, and exon gains or losses. Promoter analysis of genes revealed 76 cis-elements related to growth, phytohormones, light, and stress. Gene duplication analysis revealed four tandem duplications and twenty-three segmental duplications, while in the Areca genome exhibited significant synteny with genes from , , , , , and . Furthermore, relative expression analysis showed that under drought stress (DS), , , , and showed distinct upregulation in leaves at specific time points, while all nine genes were upregulated in roots. Under salt stress (SS), , , , and were upregulated in leaves, and , , and exhibited differential expression in roots at various time points. This study provides valuable insights into the bHLH superfamily in , offering a solid foundation for further investigation into its role in responding to abiotic stresses.

摘要

基本螺旋-环-螺旋(bHLH)转录因子(TF)家族是真核生物中第二大家族,以其在不同植物物种间的进化和功能多样性而闻名。然而,槟榔(Areca)中的bHLH基因尚未得到表征。在本研究中,我们鉴定出76个bHLH基因,它们表现出多种理化性质。系统发育分析揭示了槟榔bHLH基因(AcbHLHs)与其在其他植物中的对应基因之间的进化关系。这些分析还突出了保守的氨基酸基序(S、R、K、P、L、A、G和D)、保守结构域以及进化变化,如插入、缺失和外显子的获得或丢失。对槟榔bHLH基因的启动子分析揭示了76个与生长、植物激素、光和胁迫相关的顺式作用元件。基因复制分析揭示了四个串联重复和二十三个片段重复,而槟榔基因组中的AcbHLHs与来自椰子(Cocos nucifera)、油棕(Elaeis guineensis)、海枣(Phoenix dactylifera)、枣椰(Phoenix sylvestris)、鱼尾葵(Caryota mitis)和假槟榔(Archontophoenix alexandrae)的bHLH基因表现出显著的共线性。此外,相对表达分析表明,在干旱胁迫(DS)下,AcbHLH001、AcbHLH002、AcbHLH003和AcbHLH004在叶片特定时间点表现出明显的上调,而所有九个AcbHLH基因在根中均上调。在盐胁迫(SS)下,AcbHLH001、AcbHLH002、AcbHLH003和AcbHLH004在叶片中上调,AcbHLH005、AcbHLH006和AcbHLH007在根中不同时间点表现出差异表达。本研究为槟榔中的bHLH超家族提供了有价值的见解,为进一步研究其在应对非生物胁迫中的作用奠定了坚实基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cfc/11640848/c41895a56735/ijms-25-12936-g001.jpg

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