Toyota Masao, Omatsu Ikuko, Braggins John, Asakawa Yoshinori
Faculty of Pharmaceutical Sciences, Tokushima Bunri University, Yamashiro-cho, Tokushima, Japan.
Chem Pharm Bull (Tokyo). 2011;59(4):480-3. doi: 10.1248/cpb.59.480.
The ether extract of the New Zealand liverwort Marsupidium epiphytum gave four new prenyl bibenzyl derivatives, along with a known prenyl bibenzyl derivative which has been isolated from the Ecuadorian liverwort Lethocolea glossophylla; their structures were determined by 2D-NMR spectrum. The chemical constituents of Marsupidium epiphytum are highly characteristic since they elaborate dihydrooxepin type compounds and prenyl type bibenzyls. These structures are closely related to those found in Radula spp. (Radulaceae), although bibenzyls with two prenyl groups have not been isolated from the Radula spp. Although Marsupidium spp. are different from Radula spp. morphologically, the constituents are closely related. This is the first example of isolation of prenyl bibenzyl derivatives from M. epiphytum, a species which has not previously been investigated phytochemically.
新西兰叶苔类植物附生扁萼苔(Marsupidium epiphytum)的乙醚提取物得到了四种新的异戊烯基联苄衍生物,以及一种从厄瓜多尔叶苔类植物舌叶扁萼苔(Lethocolea glossophylla)中分离出的已知异戊烯基联苄衍生物;它们的结构通过二维核磁共振光谱确定。附生扁萼苔的化学成分具有高度特征性,因为它们能合成二氢恶庚因型化合物和异戊烯基型联苄。这些结构与在耳叶苔属(Radula spp.,耳叶苔科)中发现的结构密切相关,尽管尚未从耳叶苔属中分离出具有两个异戊烯基的联苄。虽然扁萼苔属在形态上与耳叶苔属不同,但它们的成分密切相关。这是首次从附生扁萼苔中分离出异戊烯基联苄衍生物,该物种此前尚未进行过植物化学研究。