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藻类信息素的生物合成。以复合千里光(Senecio isatideus)为对象的模型研究。

Biosynthesis of algal pheromones. A model study with the composite Senecio isatideus.

作者信息

Boland W, Mertes K

出版信息

Eur J Biochem. 1985 Feb 15;147(1):83-91. doi: 10.1111/j.1432-1033.1985.tb08722.x.

DOI:10.1111/j.1432-1033.1985.tb08722.x
PMID:4038647
Abstract

Several cyclic and alicyclic C11 hydrocarbons have been shown to act as gamete releasing and/or attracting pheromones during sexual reproduction of brown algae (Phaeophyceae). The same compounds are also found in the essential oils of various plants, of which the occurrence of the cycloheptadiene-pheromone ectocarpene in Senecio isatideus (Compositae) is noteworthy. Administration of [3H]dodeca-3,6,9-trienoic acid to cuttings of this plant leads to incorporation of radioactivity into ectocarpene. Double-bond-deuterated nona-3,6-dienoic acid is converted to fucoserratene, the pheromone of several Fucales, which is certainly not present among the hydrocarbons of Senecio. This proves that the pool of medium-chain, multiply unsaturated fatty acids includes precursors of all types of highly unsaturated hydrocarbons. Appropriately labelled (deuterium markers) fatty acid homologues were synthesized and applied to Senecio plantlets to unravel the mechanistic aspects. The results strongly suggest radical initiation of the pheromone biosynthesis by abstraction of a single hydrogen from a 1,4-pentadienyl segment of the fatty acid followed by oxidation to the corresponding cation. This causes fragmentation of the reactive intermediate into an olefine and carbon dioxide by neighbouring-group participation of the flanking double bonds. A tentative biosynthetic scheme is deduced from the experimental results which also sets the stereochemistry of the algal pheromones into a uniform mechanistic concept.

摘要

几种环状和脂环族C11碳氢化合物已被证明在褐藻(褐藻纲)有性繁殖过程中充当配子释放和/或吸引信息素。在各种植物的精油中也发现了相同的化合物,其中值得注意的是千里光属植物(菊科)中存在环庚二烯信息素外果皮素。给这种植物的插条施用[3H]十二碳-3,6,9-三烯酸会导致放射性掺入外果皮素中。双键氘代壬-3,6-二烯酸会转化为岩藻素,这是几种墨角藻目的信息素,而千里光的碳氢化合物中肯定不存在这种物质。这证明中链多不饱和脂肪酸库包括所有类型高度不饱和碳氢化合物的前体。合成了适当标记(氘标记)的脂肪酸同系物并应用于千里光幼苗,以阐明其作用机制。结果强烈表明,信息素生物合成是通过从脂肪酸的1,4-戊二烯基片段中提取一个氢原子,然后氧化为相应的阳离子来引发自由基反应的。这会导致反应性中间体通过相邻双键的邻基参与作用断裂成烯烃和二氧化碳。从实验结果推导出一个初步的生物合成方案,该方案也将藻类信息素的立体化学纳入一个统一的作用机制概念中。

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