Key Laboratory of Plant Protection Resources and Pest Management, National Ministry of Education, Northwest A&F University, Yangling, Shaanxi, 712100, China.
Sci Rep. 2017 May 23;7(1):2308. doi: 10.1038/s41598-017-02393-w.
Cantharidin is a defensive toxin biosynthesized by blister beetles. It is well known for medical applications and toxicity. However, the biosynthesis process of cantharidin is still not well understood. In the present study, three genes (methyl farnesoate epoxidase (EcMFE), juvenile hormone acid O-methyltransferase (EcJHAMT) and juvenile hormone epoxide hydrolase (EcJHEH)) were identified from Epicauta chinensis. The temporal and spatial expression patterns of these three genes revealed that the expression levels of EcMFE and EcJHEH were high in the first instar larval stage of E. chinensis with EcJHEH transcripts highest in the fifth larval instar. The expression level of EcJHAMT was significantly higher in the 2 and 3 larval instars. The transcripts of EcMFE, EcJHEH and EcJHAMT showed a similar tendency with the cantharidin production in male blister beetles after mating. We verified the functions of these three genes in cantharidin biosynthesis using the RNA interference method. Interference of EcMFE and EcJHEH significantly inhibited the biosynthesis of cantharidin in male E. chinensis after mating, but interference of EcJHAMT has no apparent influence on cantharidin biosynthesis. We propose that EcMFE and EcJHEH may be involved in the biosynthesis of cantharidin, but JH III might not be the direct precursor of cantharidin.
斑蝥素是由芫菁科甲虫合成的一种防御性毒素。它以医学应用和毒性而闻名。然而,斑蝥素的生物合成过程仍未得到很好的理解。本研究从中国豆芫菁中鉴定出三个基因(法尼酯甲基氧化酶(EcMFE)、保幼激素酸 O-甲基转移酶(EcJHAMT)和保幼激素环氧水解酶(EcJHEH))。这三个基因的时空表达模式表明,EcMFE 和 EcJHEH 的表达水平在中华豆芫菁的第一龄幼虫期较高,EcJHEH 的转录物在第五龄幼虫期最高。EcJHAMT 的表达水平在 2 龄和 3 龄幼虫期显著较高。EcMFE、EcJHEH 和 EcJHAMT 的转录物与交配后雄性芫菁甲虫斑蝥素的产生具有相似的趋势。我们使用 RNA 干扰方法验证了这三个基因在斑蝥素生物合成中的功能。干扰 EcMFE 和 EcJHEH 显著抑制了雄性中华豆芫菁交配后的斑蝥素生物合成,但干扰 EcJHAMT 对斑蝥素生物合成没有明显影响。我们提出 EcMFE 和 EcJHEH 可能参与斑蝥素的生物合成,但 JH III 可能不是斑蝥素的直接前体。