Graduate School of Bio-Applications and Systems Engineering, Tokyo University of Agriculture and Technology, Koganei, Tokyo 184-8588, Japan.
Nat Prod Rep. 2015 Jul;32(7):1007-41. doi: 10.1039/c4np00138a.
Insect pheromones are some of the most interesting natural products because they are utilized for interspecific communication between various insects, such as beetles, moths, ants, and cockroaches. A large number of compounds of many kinds have been identified as pheromone components, reflecting the diversity of insect species. While this review deals only with chiral methyl-branched pheromones, the chemical structures of more than one hundred non-terpene compounds have been determined by applying excellent analytical techniques. Furthermore, their stereoselective syntheses have been achieved by employing trustworthy chiral sources and ingenious enantioselective reactions. The information has been reviewed here not only to make them available for new research but also to understand the characteristic chemical structures of the chiral pheromones. Since biosynthetic studies are still limited, it might be meaningful to examine whether the structures, particularly the positions and configurations of the branched methyl groups, are correlated with the taxonomy of the pheromone producers and also with the function of the pheromones in communication systems.
昆虫信息素是最有趣的天然产物之一,因为它们被用于各种昆虫(如甲虫、蛾、蚂蚁和蟑螂)之间的种间交流。已经鉴定出大量的多种化合物作为信息素成分,反映了昆虫物种的多样性。虽然这篇综述仅涉及手性甲基支链信息素,但通过应用出色的分析技术,已经确定了 100 多种非萜类化合物的化学结构。此外,通过使用可靠的手性源和巧妙的对映选择性反应,已经实现了它们的立体选择性合成。在这里综述这些信息不仅是为了使它们能够用于新的研究,也是为了了解手性信息素的特征化学结构。由于生物合成研究仍然有限,因此检查结构(特别是支链甲基的位置和构型)是否与信息素产生者的分类学以及信息素在通讯系统中的功能相关联可能具有意义。