Hermawaty Dina, Setyobudi Titis, Nugrahapraja Husna, Turjaman Maman, Faizal Ahmad
Plant Science and Biotechnology Research Group, School of Life Sciences and Technology, Institut Teknologi Bandung, West Java, 40132, Indonesia.
Department of Biotechnology, Indonesia International Institute for Life Sciences, Jakarta, Indonesia.
Sci Rep. 2025 Jan 23;15(1):2977. doi: 10.1038/s41598-025-87486-7.
Agarwood is a highly prized resinous wood produced by select members of the Thymelaeaceae plant family. Its formation in Aquilaria species has been expedited using various induction techniques, revealing insights into factors affecting the chemical constituents of artificially induced agarwood. Building on this, our research delved into the potential of another Thymelaeaceae member, Gyrinops versteegii, as an alternate agarwood source. Inoculation of juvenile G. versteegii stems with local strain of Fusarium solani successfully induced the production of sesquiterpenes and chromone compounds. On a molecular level, a de novo transcriptome reconstruction and analysis highlighted biological processes related to the plant-type hypersensitive response and DNA damage 2 days post-fungal inoculation. Notably, terpenoid biosynthesis was observed only in the group exposed to the fungus for an extended duration (28 days), where DNA damage response also played a pivotal role. Despite the inherent limitations of de novo transcriptome reconstruction, capturing only a few of sesquiterpenes biosynthesis-related genes, our findings underscore the potential of G. verteegii in producing high-quality agarwood. Future high-resolution transcriptome data could further elucidate this promising avenue.
沉香是瑞香科植物家族中特定成员所产生的一种备受珍视的含树脂木材。利用各种诱导技术加速了沉香属植物中沉香的形成,这揭示了影响人工诱导沉香化学成分的因素。在此基础上,我们的研究深入探讨了瑞香科的另一个成员——越南蜜香树作为替代沉香来源的潜力。用当地的茄病镰刀菌菌株接种越南蜜香树幼茎,成功诱导了倍半萜和色酮化合物的产生。在分子水平上,从头转录组重建和分析突出了真菌接种后2天与植物型超敏反应和DNA损伤相关的生物学过程。值得注意的是,萜类生物合成仅在长时间暴露于真菌的组中观察到(28天),其中DNA损伤反应也起关键作用。尽管从头转录组重建存在固有局限性,仅捕获了少数与倍半萜生物合成相关的基因,但我们的研究结果强调了越南蜜香树在生产高质量沉香方面的潜力。未来的高分辨率转录组数据可能会进一步阐明这一有前景的途径。