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首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >The strong induction of metallothionein gene following cadmium exposure transiently affects the expression of many genes in Eisenia fetida: A trade-off mechanism?
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The strong induction of metallothionein gene following cadmium exposure transiently affects the expression of many genes in Eisenia fetida: A trade-off mechanism?

机译:镉暴露后对金属硫蛋白基因的强烈诱导会瞬时影响费雪埃塞尼亚州许多基因的表达:权衡机制?

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Metal pollution causes disturbances at various levels of biological organization in most species. Important physiological functions could be affected in the exposed individuals and among the main physiological functions, immunity may provide one (or more) effector(s) whose expression can be directly affected by a metal exposure in various macroinvertebrates. Protein expressions were studied in order to test them as molecular biomarkers of metal exposure in Eisenia fetida. Selected effectors were calmodulin, heat shock proteins, superoxide dismutase, catalase, metallothionein, beta-adrenergic receptor kinase, pyruvate carboxylase, transcriptionally controlled tumor protein, protein kinase C, ubiquitin and cyclophilin-A. The level of expression of each gene was analysed in whole organism following exposures to cadmium in soil using real-time PCR. Metallothionein, transcriptionally controlled tumor protein and cyclophilin-A expression were also measured following copper exposures in soil because these genes seemed to be sensitive to copper. This work enabled to distinguish metallothionein and cyclophilin-A among the 15 selected effectors. A strong decrease of the number of transcripts was also detected for most effectors soon after the exposure to cadmium suggesting that a trade-off mechanism occurs. (c) 2006 Elsevier Inc. All rights reserved.
机译:在大多数物种中,金属污染会在生物组织的各个层面造成干扰。重要的生理功能可能会在暴露的个体中受到影响,而在主要的生理功能中,免疫力可能会提供一种(或多种)效应子,其表达会直接受到各种大型无脊椎动物中金属暴露的影响。为了测试这些表达,可以将其作为在埃塞俄比亚(Eisenia fetida)中金属暴露的分子生物标记物进行研究。选择的效应子是钙调蛋白,热激蛋白,超氧化物歧化酶,过氧化氢酶,金属硫蛋白,β-肾上腺素能受体激酶,丙酮酸羧化酶,转录控制的肿瘤蛋白,蛋白激酶C,泛素和亲环蛋白-A。使用实时PCR,在暴露于土壤中的镉之后,分析了整个生物体内每个基因的表达水平。在土壤中暴露铜后,还测量了金属硫蛋白,转录控制的肿瘤蛋白和亲环蛋白-A的表达,因为这些基因似乎对铜敏感。这项工作能够区分15种效应子中的金属硫蛋白和亲环蛋白A。暴露于镉后,大多数效应物的转录物数量也大大减少,这表明发生了权衡机制。 (c)2006 Elsevier Inc.保留所有权利。

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