首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >BIOGENIC MONOAMINES IN THE BRAIN AND THE CORPUS CARDIACUM BETWEEN ALBINO AND NORMAL STRAINS OF THE MIGRATORY LOCUST, LOCUSTA MIGRATORIA
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BIOGENIC MONOAMINES IN THE BRAIN AND THE CORPUS CARDIACUM BETWEEN ALBINO AND NORMAL STRAINS OF THE MIGRATORY LOCUST, LOCUSTA MIGRATORIA

机译:蝗群游走蝗的白化病菌和正常菌在脑和THE体中的生物型单胺

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Biogenic monoamines and related compounds were analyzed in the brain and the corpus cardiacum of normal and albino strains of the migratory locust, Locusta migratoria, using a three-dimensional HPLC system with multiple coulometric electrochemical detection. Evidence for the following metabolic pathways was obtained: tyrosine-4 --> dihydroxyphenylalanine (L-dopa) --> dopamine --> norepinephrine --> epinephrine; dopamine --> 3-0-methyl dopa --> homovanillic acid, and dopamine --> 3,4-dihydroxyphenylacetic acid --> homovanillic acid in the case of catecholamines; tyrosine-4 --> tyramine --> hydroxyphenylacetic acid and tyramine --> octopamine in the case of phenolamines; and tryptophan --> 5-hydroxytryptamine --> 5-hydroxyindoleacetic acid and tryptophan --> kynurenine in the case of indolealkylamines. The proposed kynurenine pathway is reported for the first time in the neuroendocrine system of an insect. The dearest difference between the albino and control insects was associated with kynurenine. Kynurenine was absent from brain and corpus cardiacum of the fifth instar nymphs on day 0. It was found on day 1 of the fifth nymphal instar and on day 0 of adulthood. However, in albino nymphs, the level was half of that in the controls and kynurenine was not detected in the female brain on day 1. The possible involvement of kynurenine in the development of body color is discussed. (C) 1997 Elsevier Science Inc. [References: 33]
机译:使用带有多个库仑电化学检测的三维HPLC系统,分析了蝗虫正常种群和迁徙蝗虫的正常和白化病菌株的大脑和cardiac体中的生物单胺和相关化合物。获得了以下代谢途径的证据:酪氨酸-4->二羟基苯丙氨酸(L-多巴)->多巴胺->去甲肾上腺素->肾上腺素;多巴胺-> 3-0-甲基多巴->高香草酸,多巴胺-> 3,4-二羟基苯基乙酸->儿茶酚胺为高香草酸;对于酚胺,酪氨酸-4->酪胺->羟苯基乙酸和酪胺->八甲胺;如果是吲哚烷基胺,则色​​氨酸-> 5-羟基色胺-> 5-羟基吲哚乙酸和色氨酸->犬尿氨酸。拟议的犬尿氨酸途径首次在昆虫的神经内分泌系统中报道。白化病昆虫与对照昆虫之间最大的差异与犬尿氨酸有关。在第0天的第5龄若虫的大脑和cardiac体中不存在Kynurenine。在第5个若虫的幼龄的第1天和成年的第0天发现了Kynurenine。但是,在白化若虫中,该水平仅为对照的一半,在第1天在女性大脑中未检测到犬尿氨酸。讨论了犬尿氨酸可能参与了体色的发展。 (C)1997 Elsevier Science Inc. [参考:33]

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