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黄瓜(L.)中的B3超家族:鉴定、进化、表达模式及其在腺毛发育中的功能

B3 Superfamily in Cucumber ( L.): Identification, Evolution, Expression Patterns, and Function in Glandular Trichome Development.

作者信息

Dong Mingming, Sun Lei, Wang Wujun, Wang Yaru, Shan Li, Liu Xingwang, Ren Huazhong

机构信息

Sanya Institute of China Agricultural University, Sanya 572019, China.

Frontier Technology Research Institute of China Agricultural University in Shenzhen, Shenzhen 518119, China.

出版信息

Int J Mol Sci. 2025 Apr 24;26(9):4031. doi: 10.3390/ijms26094031.

Abstract

The B3 transcription factor superfamily, crucial for plant growth and stress adaptation, remains poorly characterized in cucumber (), a globally important vegetable crop. Here, we conducted the first genome-wide identification of 52 B3 superfamily genes in cucumber, classifying them into LAV, ARF, RAV, and REM subfamilies through integrated phylogenetic and structural analyses. These genes exhibited conserved B3 domains with lineage-specific motif architectures and diverse exon-intron organizations, particularly within the structurally divergent REM subfamily. Collinearity analysis revealed segmental duplication as a key driver of family expansion, notably between syntenic REM clusters on chromosomes 2 () and 6 (). Promoter -element profiling identified enrichment in hormone-responsive and stress adaptation motifs, suggesting functional diversification in signaling pathways. Furthermore, tissue-specific expression divergence was observed across 10 organs, with ARF members displaying broad regulatory roles and REM genes showing apical meristem enrichment. Strikingly, exhibited glandular trichome-specific expression, a novel finding, given RAVs' lack of trichome-related functions. Spatial validation via in situ hybridization localized transcripts to trichome glandular head cells. Functional investigation using virus-induced gene silencing (VIGS) demonstrated that suppression caused significant glandular trichome shriveling, implicating its role in maintaining glandular cavity integrity. This study provides the first comprehensive genomic inventory of B3 transcription factors in cucumber, providing evolutionary insights and functional frameworks for future functional genomics studies.

摘要

B3转录因子超家族对植物生长和胁迫适应至关重要,但在全球重要蔬菜作物黄瓜中,其特征仍鲜为人知。在此,我们首次对黄瓜中的52个B3超家族基因进行了全基因组鉴定,通过系统发育和结构综合分析将它们分为LAV、ARF、RAV和REM亚家族。这些基因表现出保守的B3结构域,具有特定谱系的基序结构和多样的外显子-内含子组织,特别是在结构上不同的REM亚家族中。共线性分析表明,片段重复是该家族扩张的关键驱动力,特别是在2号和6号染色体上的同线REM簇之间。启动子元件分析确定了激素响应和胁迫适应基序的富集,表明信号通路中存在功能多样化。此外,在10个器官中观察到组织特异性表达差异,ARF成员发挥广泛的调控作用,而REM基因在顶端分生组织中富集。引人注目的是,表现出腺毛特异性表达,鉴于RAV缺乏与毛状体相关的功能,这是一个新发现。通过原位杂交进行的空间验证将转录本定位到毛状体腺头细胞。使用病毒诱导基因沉默(VIGS)进行的功能研究表明,抑制会导致腺毛显著萎缩,这表明其在维持腺腔完整性中的作用。本研究提供了黄瓜中B3转录因子的首个全面基因组清单,为未来的功能基因组学研究提供了进化见解和功能框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52e8/12071739/1d1f9ddd7d24/ijms-26-04031-g001.jpg

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