School of Life Science, Anhui Agricultural University, Hefei, China.
Plant Sci. 2025 Jan;350:112314. doi: 10.1016/j.plantsci.2024.112314. Epub 2024 Nov 3.
German chamomile (Matricaria chamomilla L.) is a traditional medicinal aromatic plant, and the sesquiterpenoids in its flowers have important medicinal value. The (E)-β-farnesene (EβF) is one of the active sesquiterpenoid components and is also a major component of aphid alarm pheromones. In this study, two EβF synthase (βFS) genes (McβFS1 and McβFS2), were cloned from German chamomile. Subcellular localization analysis showed that both McβFS1 and McβFS2 were localized in the cytoplasm and nucleus. Tissue-specific expression analysis revealed that McβFS1 and McβFS2 were expressed in all flower stages, with the highest levels observed during the tubular flower extension stage. Prokaryotic expression and enzyme activity results showed that McβFS1 and McβFS2 possess catalytic activity. Overexpression of McβFS1 and McβFS2 in the hairy roots of German chamomile led to the accumulation of EβF, demonstrating enzyme activity in vivo. The promoters of McβFS1 and McβFS2 were cloned and analyzed. After treating German chamomile with methyl jasmonate (MeJA) and methyl salicylate (MeSA), the transcription levels of McβFS1 and McβFS2 were found to be regulated by both hormones. In addition, feeding experiments showed that aphid infestation upregulated the expression levels of McβFS1 and McβFS2. Our study provides valuable insights into the biosynthesis of EβF, laying a foundation for further research into its metabolic pathways.
德国洋甘菊(Matricaria chamomilla L.)是一种传统的药用芳香植物,其花朵中的倍半萜烯具有重要的药用价值。(E)-β-法尼烯(EβF)是一种活性倍半萜烯成分,也是蚜虫报警信息素的主要成分之一。本研究从德国洋甘菊中克隆得到两个(E)-β-法尼烯合酶(βFS)基因(McβFS1 和 McβFS2)。亚细胞定位分析表明,McβFS1 和 McβFS2 均定位于细胞质和细胞核。组织特异性表达分析显示,McβFS1 和 McβFS2 在所有花阶段均有表达,在管状花延伸阶段表达量最高。原核表达和酶活性结果表明,McβFS1 和 McβFS2 具有催化活性。在德国洋甘菊的毛状根中过表达 McβFS1 和 McβFS2 导致 EβF 的积累,证明了体内的酶活性。克隆并分析了 McβFS1 和 McβFS2 的启动子。用茉莉酸甲酯(MeJA)和水杨酸甲酯(MeSA)处理德国洋甘菊后,发现 McβFS1 和 McβFS2 的转录水平受到这两种激素的调节。此外,饲喂实验表明,蚜虫取食会上调 McβFS1 和 McβFS2 的表达水平。本研究为 EβF 的生物合成提供了有价值的见解,为进一步研究其代谢途径奠定了基础。