昆虫和甲壳类幼体激素及其前体的生物合成和释放:寻找统一的节肢动物内分泌学

Michel Cusson , Koichiro J. Yagi , Qi Ding , Hanne Duve , Alan Thorpe , Jeremy N. McNeil , Stephen S. Tobe
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引用次数: 86

摘要

现在看来,节肢动物产生和释放的幼崽激素(JH)和相关化合物的种类比以前认为的要多。例如,在成年小龙虾克氏原螯虾(Procambarus clarkii)中,与昆虫同种体(CA)结构相似的下颌器官会释放法尼松酸(FA)和法尼松酸甲酯(MF),这是JH III的直接前体,但不会释放JH III本身。在斑双翅蠊的幼虫中,JH III的产生在第4期后半段停止,但CA在此期间继续产生和释放FA。同一物种的胚胎在HPLC上也释放出jhiii和一种与MF溶出的产物。在成虫中,CA除释放jh3外,还释放jh3二环氧化物,也可能释放6,7-环氧化物。在鳞翅目中,雄性CA产生并释放JH酸I、II和III,以及一种我们初步鉴定为homo-(和/或)dihomo-FA的产物。在雌性中,CA产生并释放三种常见的JH同源物和一种我们认为是雄性化合物的酯化产物,homo/dihomo-MF。虽然JH前体从其合成位点释放可能导致其在外周组织中转化为活性激素,但这一过程的证据有限。研究这些化合物的生物活性和生物合成的发育变化及其调控,将为这些化合物定义为激素或其他物质提供必要的信息,并提高我们对节肢动物JH生物合成途径进化的理解。
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Biosynthesis and release of juvenile hormone and its precursors in insects and crustaceans: The search for a unifying arthropod endocrinology

It now appears that arthropods produce and release a wider variety of juvenile hormones (JH) and related compounds than previously thought. For instance, in the adult crayfish, Procambarus clarkii, the mandibular organs, the homologous structure to insect corpora allata (CA), release both farnesoic acid (FA) and methyl farnesoate (MF), the immediate precursors of JH III, but not JH III itself. In larvae of the cockroach Diploptera punctata, JH III production ceases during the last half of the 4th stadium, but the CA continue to produce and release FA throughout this period. The embryos of the same species also release JH III and a product that coelutes with MF on HPLC. In adult blowfly, Calliphora vomitoria, the CA release JH III bisepoxide and possibly the 6,7-epoxide, in addition to JH III. In the lepidopteran species Pseudaletia unipuncta, male CA produce and release JH acids I, II, and III as well as a product which we have tentatively identified as homo-(and/or) dihomo-FA. In the females, CA produce and release the three common JH homologues and a product that we believe is the esterified version of the male compound, homo/dihomo-MF. Although the release of JH precursors from their sites of synthesis might result in their conversion to the active hormone in peripheral tissues, there is only limited evidence for such a process. Studies on biological activities of these compounds and on the developmental changes in biosynthesis and its regulation should provide information necessary for the defining of these compounds as hormones or otherwise and should improve our understanding of the evolution of the JH biosynthetic pathway in the phylum Arthropoda.

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