Wang Yin-Hua, Ye Xing, Zhao Bi-Yao, Wang Wen-Jing, Zhou Zheng-Feng, Zhang Xiang-Qian, Du Juan, Song Jian-Ling, Huang Xiao-Ling, Ouyang Kun-Xi, Zhong Tian-Xiu, Liao Fei-Xiong
Department of Grassland Science, College of Forestry and Landscape Architecture, South China Agricultural University, Guangzhou, China.
Guangdong Engineering Research Center for Grassland Science, Guangzhou, China.
Front Plant Sci. 2024 Jul 29;15:1400301. doi: 10.3389/fpls.2024.1400301. eCollection 2024.
Members of the plant-specific B3 transcription factor superfamily play crucial roles in various plant growth and developmental processes. Despite numerous valuable studies on B3 genes in other species, little is known about the B3 superfamily in pearl millet.
Here, through comparative genomic analysis, we identified 70 B3 proteins in pearl millet and categorized them into four subfamilies based on phylogenetic affiliations: ARF, RAV, LAV, and REM. We also mapped the chromosomal locations of these proteins and analyzed their gene structures, conserved motifs, and gene duplication events, providing new insights into their potential functional interactions. Using transcriptomic sequencing and real-time quantitative PCR, we determined that most genes exhibit upregulated expression under drought and high-temperature stresses, indicating their involvement in stress response regulation. To delve deeper into the abiotic stress roles of the B3 family, we focused on a specific gene within the RAV subfamily, , cloning it and overexpressing it in tobacco. overexpression led to increased drought sensitivity in the transgenic plants due to decreased proline levels and peroxidase activity.
This study not only adds to the existing body of knowledge on the B3 family's characteristics but also advances our functional understanding of the genes in pearl millet, reinforcing the significance of these factors in stress adaptation mechanisms.
植物特有的B3转录因子超家族成员在植物各种生长和发育过程中发挥着关键作用。尽管对其他物种中的B3基因已有大量有价值的研究,但对珍珠粟中的B3超家族却知之甚少。
在此,通过比较基因组分析,我们在珍珠粟中鉴定出70个B3蛋白,并根据系统发育关系将它们分为四个亚家族:ARF、RAV、LAV和REM。我们还绘制了这些蛋白的染色体定位图,并分析了它们的基因结构、保守基序和基因复制事件,为它们潜在的功能相互作用提供了新的见解。利用转录组测序和实时定量PCR,我们确定大多数基因在干旱和高温胁迫下表现出上调表达,表明它们参与了应激反应调节。为了更深入地探究B3家族在非生物胁迫中的作用,我们聚焦于RAV亚家族中的一个特定基因,将其克隆并在烟草中过表达。该基因的过表达导致转基因植物中脯氨酸水平和过氧化物酶活性降低,从而使其对干旱的敏感性增加。
本研究不仅增加了关于B3家族特征的现有知识体系,还推进了我们对珍珠粟中该基因功能的理解,强化了这些因子在胁迫适应机制中的重要性。