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Psychoactive plant- and mushroom-associated alkaloids from two behavior modifying cicada pathogens

机译:来自两种行为的精神活性植物和蘑菇相关的生物碱修饰蝉病原体

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Entomopathogenic fungi routinely kill their hosts before releasing infectious spores, but a few species keep insects alive while sporulating, which enhances dispersal. Transcriptomics- and metabolomics-based studies of entomopathogens with post-mortem dissemination from their parasitized hosts have unraveled infection processes and host responses. However, the mechanisms underlying active spore transmission by Entomophthoralean fungi in living insects remain elusive. Here we report the discovery, through metabolomics, of the plant-associated amphetamine, cathinone, in four Massospora cicadinainfected periodical cicada populations, and the mushroom-associated tryptamine, psilocybin, in annual cicadas infected with Massospora platypediae or Massospora levispora, which likely represent a single fungal species. The absence of some fungal enzymes necessary for cathinone and psilocybin biosynthesis along with the inability to detect intermediate metabolites or gene orthologs are consistent with possibly novel biosynthesis pathways in Massospora. The neurogenic activities of these compounds suggest the extended phenotype of Massospora that modifies cicada behavior to maximize dissemination is chemically-induced. (C) 2019 The Authors. Published by Elsevier Ltd.
机译:肺疗法真菌在释放传染性孢子之前常常杀死他们的宿主,但是少量物种在孢子花束时保持昆虫,这增强了分散。从其寄生宿主的验尸分析血散素的转录组和代谢组合的研究具有解开的感染过程和宿主反应。然而,在活虫中昆虫孢子醛真菌的活跃孢子传播的机制仍然难以捉摸。在这里,我们通过植物相关的疗法,Cathinone,Cathinone,在四个Massospora含有CICADADINFECTECATIONADA群体,蘑菇相关的TOTTAMINE,PSILOCYBIN,在感染Massospora铂蛋白酶或MassoSpora Levispora的年度Cicadas,这可能代表了单一真菌物种。没有一些针对天链蛋白酶和psilocybin生物合成所必需的真菌酶以及无法检测中间代谢物或基因脱发的必然性与MassoSpora中可能新的生物合成途径一致。这些化合物的神经源性活性表明了MassoSpora的扩展表型,以改变蝉行为以最大化传播的化学诱导。 (c)2019年作者。 elsevier有限公司出版

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