Natural Products Laboratory, Institute of Biology, Leiden University, NL-2300 RA Leiden.
Chem Biodivers. 2012 Jun;9(6):1033-44. doi: 10.1002/cbdv.201100274.
While the 1,4-naphthoquinone derivatives 7-methyljuglone (1) and plumbagin (2) possess a diverse and well documented array of biological activities, relatively little remains known about the functional significance of these compounds in planta and, in particular, their possible relation to carnivorous syndromes. In addition, the chemotaxonomic distribution of naphthoquinones (NQs) amongst species of Drosera L. is of phytopharmaceutical interest. Following the quantitative assessment of interspecific variation of 1 and 2 in 13 species and cultivars of Drosera, our findings demonstrate that these NQs are ubiquitously coproduced in, generally, species-specific ratios, and that 1 appears negatively associated with the occurrence of pigmentation in sundews. The prospective antifeedant function of 1 was evaluated in relation to allocation in various organs and ontogenetic phases of D. capensis L., revealing that significantly higher levels were accumulated in young and reproductive organs, most likely for defensive purposes. Investigation into the relationship between the biosynthesis of NQs and carnivory showed that production of 1 is optimally induced and localized in leaves in response to capture of insect prey. As a whole, these findings reveal the clear importance of this secondary metabolite in ecological interactions as well as holding implication for future bioactivity studies on the genus.
虽然 1,4-萘醌衍生物 7-甲基胡桃醌(1)和铅丹(2)具有多种多样且有充分文献记载的生物活性,但关于这些化合物在植物体内的功能意义,特别是它们与肉食综合征的可能关系,人们知之甚少。此外,萘醌(NQs)在猪笼草属物种中的化学分类分布具有植物药物学意义。在对 13 种猪笼草属物种和品种中的 1 和 2 的种间变异进行定量评估后,我们的研究结果表明,这些 NQs 普遍以特定物种特异性的比例共同产生,并且 1 似乎与食虫植物的色素沉着的发生呈负相关。1 的潜在抗食作用与 D. capensis L. 的各种器官和个体发育阶段的分配有关,结果表明,1 在年轻和生殖器官中积累的水平明显更高,很可能是出于防御目的。对 NQs 生物合成与肉食性之间的关系进行研究表明,1 的产生在响应昆虫猎物捕获时在叶片中得到最佳诱导和本地化。总的来说,这些发现表明这种次生代谢物在生态相互作用中具有明显的重要性,同时也为该属的未来生物活性研究提供了启示。