Daly J W, Highet R J, Myers C W
Toxicon. 1984;22(6):905-19. doi: 10.1016/0041-0101(84)90182-x.
Several taxa of small frogs from the southern hemisphere contain alkaloids similar or identical to compounds previously known only from neotropical poison frogs of the family Dendrobatidae. Skin of the Brazilian toad Melanophryniscus moreirae (family Bufonidae) contains a new alkaloid 8-hydroxy-8-methyl-6-(5'-hydroxy-2'-methyl-hexylidene)-1-azabicycl o-[4.3.0] nonane (C16H29NO2), which is designated pumiliotoxin 267C. Such a structure is typical of the pumiliotoxin-A class of dendrobatid alkaloids. Melanophyryniscus moreirae contains smaller quantities of an alkaloid (C19H33NO3) identical in chromatographic and mass spectral properties to the dendrobatid alkaloid allopumiliotoxin 323B. Allopumiliotoxin 323B and an isomer of 267C occur with unidentified alkaloids in skin of the Australian frog Pseudophryne semimarmorata (family Myobatrachidae) and also in the skin of the Madagascan frog Mantella aurantiaca (family Ranidae, subfamily Mantellinae). In addition to new compounds, Mantella aurantiaca and M. madagascariensis also contain other alkaloids (e.g. histrionicotoxin and pumiliotoxin B) that were known previously only in dendrobatid frogs. Such alkaloids have not been detected in a phylogenetically wide array of other anuran amphibians, and the dendrobatid alkaloids thus become an evolutionary enigma. Certain of these compounds may have arisen convergently from new biosynthetic pathways in several families of frogs, or these alkaloids may represent parallel expression of shared-primitive pathways that are unexpressed or lost in related frogs.
来自南半球的几种小型蛙类含有与以前仅在箭毒蛙科新热带毒蛙中发现的化合物相似或相同的生物碱。巴西蟾蜍黑蟾(蟾蜍科)的皮肤中含有一种新的生物碱8-羟基-8-甲基-6-(5'-羟基-2'-甲基-亚己基)-1-氮杂双环[4.3.0]壬烷(C16H29NO2),该生物碱被命名为箭毒蛙毒素267C。这种结构是箭毒蛙生物碱中箭毒蛙毒素A类的典型结构。黑蟾含有少量生物碱(C19H33NO3),其色谱和质谱性质与箭毒蛙生物碱别箭毒蛙毒素323B相同。别箭毒蛙毒素323B和267C的一种异构体与未鉴定的生物碱一起存在于澳大利亚蛙半纹拟姬蛙(姬蛙科)的皮肤中,也存在于马达加斯加蛙曼氏彩蛙(蛙科,曼蛙亚科)的皮肤中。除了新化合物外,曼氏彩蛙和马达加斯加彩蛙还含有其他生物碱(如组氨毒素和箭毒蛙毒素B),这些生物碱以前仅在箭毒蛙中发现。在种类广泛的其他无尾两栖动物中尚未检测到此类生物碱,因此箭毒蛙生物碱成为一个进化之谜。这些化合物中的某些可能是在几个蛙类家族中通过新的生物合成途径趋同产生的,或者这些生物碱可能代表了在相关蛙类中未表达或已丢失的共同原始途径的平行表达。