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首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >Role of crustacean hyperglycemic hormone (CHH) in the environmental stressor-exposed intertidal copepod Tigriopus japonicus
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Role of crustacean hyperglycemic hormone (CHH) in the environmental stressor-exposed intertidal copepod Tigriopus japonicus

机译:甲壳类高血糖激素(CHH)在环境应激源暴露的潮间co足pe Tigriopus japonicus中的作用

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摘要

To identify and characterize CHH (TJ-CHH) gene in the copepod Tigriopus japonicus, we analyzed the full-length cDNA sequence, genomic structure, and promoter region. The full-length TJ-CHH cDNA was 716 bp in length, encoding 136 amino acid residues. The deduced amino acid sequences of TJ-CHH showed a high similarity of the CHH mature domain to other crustaceans. Six conserved cysteine residues and five conserved structural motifs in the CHH mature peptide domain were also observed. The genomic structure of the TJ-CHH gene contained three exons and two introns in its open reading frame (ORF), and several transcriptional elements were detected in the promoter region of the TJ-CHH gene. To investigate transcriptional change of TJ-CHH under environmental stress, T. japonicus were exposed to heat treatment, UV-B radiation, heavy metals, and water-accommodated fractions (WAFs) of Iranian crude oil. Upon heat stress, TJ-CHH transcripts were elevated at 30 C and 35 C for 96 h in a time-course experiment. UV-B radiation led to a decreased pattern of the TJ-CHH transcript 48 h and more after radiation (12 kJ/m~2). After exposure of a fixed dose (12 kJ/m~2) in a time-course experiment, TJ-CHH transcript was down-regulated in time-dependent manner with a lowest value at 12 h. However, the TJ-CHH transcript level was increased in response to five heavy metal exposures for 96 h. Also, the level of the TJ-CHH transcript was significantly up-regulated at 20% of WAFs after exposure to WAFs for 48 h and then remarkably reduced in a dose-dependent manner. These findings suggest that the enhanced TJ-CHH transcript level is associated with a cellular stress response of the TJ-CHH gene as shown in decapod crustaceans. This study is also helpful for a better understanding of the detrimental effects of environmental changes on the CHH-triggered copepod metabolism.
机译:为了鉴定和鉴定the足类Tigriopus japonicus中的CHH(TJ-CHH)基因,我们分析了全长cDNA序列,基因组结构和启动子区域。 TJ-CHH cDNA全长716 bp,编码136个氨基酸残基。 TJ-CHH推导的氨基酸序列显示出CHH成熟域与其他甲壳类的高度相似性。在CHH成熟肽结构域中还观察到六个保守的半胱氨酸残基和五个保守的结构基序。 TJ-CHH基因的基因组结构在其开放阅读框(ORF)中包含3个外显子和2个内含子,并且在TJ-CHH基因的启动子区域检测到一些转录元件。为了研究在环境胁迫下TJ-CHH的转录变化,将日本血吸虫暴露于伊朗原油的热处理,UV-B辐射,重金属和水吸收馏分(WAF)中。在热应激下,在一个时程实验中,TJ-CHH转录本在30°C和35°C升高96小时。 UV-B辐射导致TJ-CHH转录本的图案减少48h,且辐射后更多(12 kJ / m〜2)。在时程实验中暴露固定剂量(12 kJ / m〜2)后,TJ-CHH转录本以时间依赖性方式下调,最低值在12 h时。但是,TJ-CHH转录本水平响应于5次重金属暴露96小时而增加。同样,在暴露于WAF 48小时后,在20%的WAF下,TJ-CHH转录物的水平显着上调,然后以剂量依赖性方式显着降低。这些发现表明,增强的TJ-CHH转录水平与TJ-CHH基因的细胞应激反应有关,如十足动物甲壳类动物所示。这项研究也有助于更好地了解环境变化对CHH触发的co足类新陈代谢的有害影响。

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