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Spiroacetal Biosynthesis In Insects From Diptera Tornhymenoptera: The Giant Ichneumon Wasp Megarhyssarnnotioni Nortoni Cresson

机译:双翅目双翅目昆虫中的螺缩醛生物合成:巨型猫鼬黄蜂Megarhyssarnnotioni Nortoni Cresson

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摘要

The volatile components of the mandibular gland secretion generated by the Giant Ichneumon parasitoid wasp Megarhyssa nortoni nortoni Cresson are mainly spiroacetals and methyl ketones, and all have an odd number of carbon atoms. A biosynthetic scheme rationalizing the formation of these diverse components is presented. This scheme is based on the results of incorporation studies using ~2H-labeled precursors and [~(18)O]dioxygen. The key steps are postulated to be decarboxylation of β-ketoacid equivalents, β-oxidation (chain shortening), and monooxygenase-mediated hydroxylation leading to a putative ketodiol that cyclizes to spiroacetals. The generality of the role of monooxygenases in spiroacetal formation in insects is considered, and overall, a cohesive, internally consistent theory of spiroacetal generation by insects is presented, against which future hypotheses will have to be compared.
机译:巨人鱼寄生寄生黄蜂Megarhyssa nortoni nortoni Cresson产生的下颌腺分泌物的挥发性成分主要是螺缩醛和甲基酮,并且都具有奇数个碳原子。提出了合理化这些多样化成分形成的生物合成方案。该方案基于使用〜2H标记的前体和[〜(18)O]双氧进行掺入研究的结果。假定关键步骤是β-酮酸当量的脱羧,β-氧化(链缩短)和单加氧酶介导的羟基化作用,导致推定的酮二醇环化为螺缩醛。考虑了单加氧酶在昆虫螺缩醛形成中作用的一般性,总的来说,提出了一种内聚的,内部一致的昆虫产生螺缩醛的理论,必须与之进行比较。

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