Luo Qishan, Huang Gan, Lin Xiaohui, Wang Xiaojing, Wang Yaqin
Guangdong Provincial Key Laboratory of Biotechnology for Plant Development, School of Life Sciences, South China Normal University, Guangzhou, Guangdong Province, 510631, China.
College of Landscape Architecture and Art, Henan Agricultural University, Zhengzhou, Henan Province, 450002, China.
BMC Plant Biol. 2025 Feb 4;25(1):143. doi: 10.1186/s12870-025-06177-7.
The BZR family genes encode plant-specific transcription factors as pivotal regulators of plant BR signaling pathways, critically influencing plant growth and development.
In this study, we performed a genome-wide investigation of the BZR family gene in gerbera to identify the key components of the BR pathway that may function in petal growth. The identified BZR genes, named GhBEH1-7 (GhBEH1, GhBEH2, GhBEH3, GhBEH4, GhBEH5, GhBEH6, GhBEH7), are distributed across chromosomes 3, 5, 10, 11, 12, 14 and 15. These genes exhibit similar exon-intron structures and possess typical BZR family structures. Phylogenetic analysis clustered these genes into two distinct subgroups. Analysis of cis-acting elements revealed their involvement in hormone response, stress response, and growth regulation. Subcellular localization analysis indicated nuclear localization for GhBEH1 and GhBEH2, while the remaining five genes exhibited dual localization in the nucleus and cytoplasm. The transactivation assay indicated that GhBEH1 and GhBEH2 may function as transcriptional repressors, contrasting with the transcriptional activation observed for the other five genes. Notably, seven GhBEHs exhibit various expression patterns under different growth stages of ray florets and BR treatment conditions. Meanwhile GhBEH1 and GhBEH2 showed pronounced responsiveness to BR stimulation.
Our work explains genome-wide identification, characterization, and expression analysis of gerbera's BZR transcription factor family. We hinted that these seven GhBEHs are involved in petal growth and development regulation. These findings provide a basis for further studies on the biological function of the BZR gene family in petal growth and a theoretical basis for future horticultural application in gerbera.
BZR家族基因编码植物特异性转录因子,是植物油菜素内酯(BR)信号通路的关键调节因子,对植物生长发育有至关重要的影响。
在本研究中,我们对非洲菊中的BZR家族基因进行了全基因组研究,以鉴定可能在花瓣生长中起作用的BR信号通路关键成分。鉴定出的BZR基因命名为GhBEH1 - 7(GhBEH1、GhBEH2、GhBEH3、GhBEH4、GhBEH5、GhBEH6、GhBEH7),分布在第3、5、10、11、12、14和15号染色体上。这些基因具有相似的外显子 - 内含子结构,并拥有典型的BZR家族结构。系统发育分析将这些基因分为两个不同的亚组。顺式作用元件分析表明它们参与激素应答、胁迫应答和生长调节。亚细胞定位分析表明GhBEH1和GhBEH2定位于细胞核,而其余五个基因在细胞核和细胞质中呈双重定位。反式激活试验表明,GhBEH1和GhBEH2可能作为转录抑制因子发挥作用,这与其他五个基因观察到的转录激活情况形成对比。值得注意的是,七个GhBEH在舌状小花的不同生长阶段和BR处理条件下表现出不同的表达模式。同时,GhBEH1和GhBEH2对BR刺激表现出明显的反应。
我们的工作阐述了非洲菊BZR转录因子家族的全基因组鉴定、特征分析及表达分析。我们推测这七个GhBEH参与花瓣生长发育调控。这些发现为进一步研究BZR基因家族在花瓣生长中的生物学功能提供了基础,并为非洲菊未来的园艺应用提供了理论依据。