首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >De novo biosynthesis of the aggregation pheromone components ipsenol and ipsdienol by the pine bark beetles Ips paraconfusus Lanier and Ips pini (Say) (Coleoptera: Scolytidae).
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De novo biosynthesis of the aggregation pheromone components ipsenol and ipsdienol by the pine bark beetles Ips paraconfusus Lanier and Ips pini (Say) (Coleoptera: Scolytidae).

机译:由松树皮甲虫Ips paraconfusus Lanier和Ips pini(说)(鞘翅目:鞘翅目)从头开始生物合成聚集信息素成分ipsenol和ipsdienol。

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摘要

The California five-spined ips, Ips paraconfusus Lanier, produces the myrcene-derived acyclic monoterpene alcohols ipsenol (2-methyl-6-methylene-7-octen-4-ol) and ipsdienol (2-methyl-6-methylene-2,7-octadien-4-ol) as components of its aggregation pheromone. The pine engraver beetle, Ips pini (Say), produces only ipsdienol. Previous studies have shown that myrcene, a monoterpene in the pines colonized by these beetles, is a direct precursor to these pheromone components. In vivo radiolabeling studies reported here showed that male I. paraconfusus incorporated [1-14C]acetate into ipsenol, ipsdienol, and amitinol (trans-2-methyl-6-methylene-3,7-octadien-2-ol), while male I. pini incorporated [1-14C]acetate into ipsdienol and amitinol. Females of these species produced neither labeled nor unlabeled pheromone components. The purified radiolabeled monoterpene alcohols from-males were identified by comparison of their HPLC and GC retention times with those of unlabeled standards. HPLC-purified fractions containing the individual radiolabeled components were analyzed by GC-MS and were shown to include only the pure alcohols. To further confirm that ipsdienol and ipsenol were radiolabeled, diastereomeric ester derivatives of the isolated alcohols were synthesized and analyzed by HPLC and GC-MS. After derivatization of the radiolabeled alcohols, the HPLC analysis demonstrated expected shifts in retention times with conservation of naturally occurring stereochemistry. The results provide direct evidence for de novo biosynthesis of ipsenol, ipsdienol, and amitinol by bark beetles.
机译:加利福尼亚州的五纺ips,parapsusus Lanier,生产月桂烯衍生的无环单萜醇ipsenol(2-甲基-6-亚甲基-7-辛烯-4-醇)和ipsdienol(2-甲基-6-亚甲基-2, 7-octadien-4-ol)作为其聚集信息素的成分。松刻甲虫Ips pini(Say)仅生产ipsdienol。先前的研究表明,月桂烯是由这些甲虫定居的松树中的单萜,是这些信息素成分的直接前体。此处报道的体内放射性标记研究表明,雄性副鸡I.将[1-14C]乙酸酯掺入ipsenol,ipsdienol和Amitinol(反式-2-甲基-6-亚甲基-3,7-辛二烯-2-醇)中矮牵牛将[1-14C]乙酸酯掺入ipsdienol和mitimilin中。这些物种的雌性既不产生标记的信息素组分也未产生未标记的信息素组分。通过比较雄性动物的纯化的放射性标记的单萜醇的HPLC和GC保留时间与未标记的标准品的保留时间,可以鉴定出它们。通过GC-MS分析包含单个放射性标记成分的HPLC纯化馏分,结果表明仅包含纯醇。为了进一步确认对ipsdienol和ipsenol进行了放射性标记,合成了分离出的醇的非对映体酯衍生物,并通过HPLC和GC-MS分析。放射性标记的醇衍生化后,HPLC分析表明保留时间发生了预期的变化,同时保留了自然发生的立体化学。该结果为树皮甲虫从头开始生物合成ipsenol,ipsdienol和amimitinol提供了直接证据。

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