Cao Kefan, Mu Yingtong, Lu Sihai, Zhao Yanyan
Key Laboratory of Grassland Resources of Ministry of Education, College of Grassland Science, Inner Mongolia Agricultural University, Hohhot 010018, China.
National Engineering Research Center for Miniaturized Detection Systems, Northwest University, Xi'an 710069, China.
Genes (Basel). 2025 Jul 26;16(8):878. doi: 10.3390/genes16080878.
Gibberellins (GAs) are essential phytohormones that regulate seed dormancy release and germination. (L.) Fries ex Nym is a traditional medicinal plant whose seed germination is often hindered by physiological dormancy. In this study, we systematically investigated the effects of exogenous GA on the seed germination of and elucidated the underlying molecular regulatory mechanisms via transcriptomic analysis. GA treatment (500 mg/L for 24 h) significantly improved the germination rate, vigor index, and other germination traits. RNA-seq analysis identified time-dependent transcriptional changes in GA-treated seeds across three developmental stages (24 h, 72 h, and 96 h). KEGG enrichment and K-means clustering revealed dynamic actiSvation of hormonal signaling, secondary metabolism, and DNA replication pathways. WGCNA uncovered two hormone-responsive co-expression modules (Red and Lightcyan) corresponding to early and late stages of germination, respectively. Key genes related to ABA and GA biosynthesis and signal transduction showed phase-specific expression, highlighting the coordinated hormonal regulation during seed germination. Our findings provide new insights into the molecular basis of GA-regulated seed germination and offer theoretical support for the cultivation and utilization of .
赤霉素(GAs)是调节种子休眠解除和萌发的必需植物激素。绵毛马兜铃(Aristolochia mollissima (Hance) Hemsl.)是一种传统药用植物,其种子萌发常受生理休眠的阻碍。在本研究中,我们系统地研究了外源赤霉素对绵毛马兜铃种子萌发的影响,并通过转录组分析阐明了潜在的分子调控机制。赤霉素处理(500 mg/L处理24小时)显著提高了萌发率、活力指数和其他萌发特性。RNA测序分析确定了在三个发育阶段(24小时、72小时和96小时)经赤霉素处理的种子中随时间变化的转录变化。KEGG富集和K均值聚类揭示了激素信号传导、次生代谢和DNA复制途径的动态激活。加权基因共表达网络分析(WGCNA)发现了两个分别对应萌发早期和晚期的激素响应共表达模块(红色和浅青色)。与脱落酸和赤霉素生物合成及信号转导相关的关键基因表现出阶段特异性表达,突出了种子萌发过程中激素的协同调控作用。我们的研究结果为赤霉素调节种子萌发的分子基础提供了新的见解,并为绵毛马兜铃的栽培和利用提供了理论支持。