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首页> 外文期刊>General and comparative endocrinology >Identification and developmental expression of the enzymes responsible for dopamine, histamine, octopamine and serotonin biosynthesis in the copepod crustacean Calanus finmarchicus
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Identification and developmental expression of the enzymes responsible for dopamine, histamine, octopamine and serotonin biosynthesis in the copepod crustacean Calanus finmarchicus

机译:the足类甲壳动物Calaus finmarchicus中负责多巴胺,组胺,章鱼胺和5-羟色胺生物合成的酶的鉴定和发育表达

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摘要

Neurochemicals are likely to play key roles in physiological/behavioral control in the copepod crustacean Calanus finmarchicus, the biomass dominant zooplankton for much of the North Atlantic Ocean. Previously, a de novo assembled transcriptome consisting of 206,041 unique sequences was used to characterize the peptidergic signaling systems of Calanus. Here, this assembly was mined for transcripts encoding enzymes involved in amine biosynthesis. Using known Drosophila melanogaster proteins as templates, transcripts encoding putative Calanus homologs of tryptophan-phenylalanine hydroxylase (dopamine, octopamine and serotonin biosynthesis), tyrosine hydroxylase (dopamine biosynthesis), DOPA decarboxylase (dopamine and serotonin biosynthesis), histidine decarboxylase (histamine biosynthesis), tyrosine decarboxylase (octopamine biosynthesis), tyramine β-hydroxylase (octopamine biosynthesis) and tryptophan hydroxylase (serotonin biosynthesis) were identified. Reverse BLAST and domain analyses show that the proteins deduced from these transcripts possess sequence homology to and the structural hallmarks of their respective enzyme families. Developmental profiling revealed a remarkably consistent pattern of expression for all transcripts, with the highest levels of expression typically seen in the early nauplius and early copepodite. These expression patterns suggest roles for amines during development, particularly in the metamorphic transitions from embryo to nauplius and from nauplius to copepodite. Taken collectively, the data presented here lay a strong foundation for future gene-based studies of aminergic signaling in this and other copepod species, in particular assessment of the roles they may play in developmental control.
机译:神经化学物质可能在rust足类甲壳纲甲壳类动物finmarchicus(北大西洋大部分地区的生物质优势浮游动物)的生理/行为控制中发挥关键作用。以前,由206,041个独特序列组成的从头组装转录组用于表征Calanus的肽能信号转导系统。在这里,该程序集被挖掘出来,用于编码参与胺生物合成的酶的转录本。使用已知的果蝇黑腹果蝇蛋白作为模板,编码色氨酸-苯丙氨酸羟化酶(多巴胺,章鱼胺和5-羟色胺的生物合成),酪氨酸羟化酶(多巴胺的生物合成),DOPA脱羧酶(多巴胺和5-羟色胺生物合成)的推定Calanus同源物的转录本鉴定了酪氨酸脱羧酶(章鱼胺的生物合成),酪胺β-羟化酶(章鱼胺的生物合成)和色氨酸羟化酶(血清素的生物合成)。反向BLAST和结构域分析表明,从这些转录物推导的蛋白质与它们各自的酶家族具有序列同源性并具有结构特征。发育概况显示,所有转录本的表达模式都非常一致,通常在无节幼体和早足足类的早期都表现出最高水平的表达。这些表达模式暗示了胺在发育过程中的作用,特别是在从胚胎到无节幼体以及从无节幼体到copopodite的变质转变中。综上所述,此处提供的数据为该类和其他studies足类物种中胺能信号的未来基于基因的研究奠定了坚实的基础,尤其是评估它们在发育控制中可能发挥的作用。

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