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Cadmium Detoxification in Earthworms: From Genes to Cells

机译:C中的镉排毒:从基因到细胞

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Cadmium pollution has clear ecotoxicological consequences as it is readily bio-available and has a reported tendency to bio-accumulate in soil biota. Understanding the mechanisms of cadmium trafficking pathways within sentinel terrestrial invertebrates, such as the earthworm, is therefore considered to be of importance. Using X-ray microanalysis, quantitative polymerase chain reaction, and immunohis-tochemical techniques, we were able to demonstrate that the earthworm has the intrinsic capacity to efficiently sequester and compartmentalize cadmium via a metallothio-nein-mediated trafficking pathway. There is evidence that wMT-2, rather than wMT-1, is the major isoform implicated in the detoxification of cadmium and the identification of three independent wMT-2 loci (totalling over 25 kb of genomic sequence) has revealed a complex genomic organization. Complementary in silico analysis of over 6500 expressed sequence tags has identified a third metallothionein isoform, wMT-3, found to be highly enriched in embryonic tissue. In summary, this paper provides a detailed dissection of the genetic, molecular, and cellular basis of a sophisticated pathway that facilitates the uptake, accumulation, transport, and excretion of cadmium.
机译:镉污染具有明显的生态毒理学后果,因为它很容易被生物利用,并且据报告有在土壤生物中生物富集的趋势。因此,了解前哨陆地无脊椎动物(例如worm)中镉运输途径的机制很重要。使用X射线微分析,定量聚合酶链反应和免疫组化技术,我们能够证明worm具有通过金属硫代neine介导的贩运途径有效隔离和分隔镉的内在能力。有证据表明,wMT-2(而不是wMT-1)是与镉解毒有关的主要同工型,对三个独立的wMT-2位点(总计25 kb以上的基因组序列)的鉴定揭示了一个复杂的基因组组织。对超过6500个表达的序列标签进行的计算机计算机辅助分析已经确定了第三种金属硫蛋白同种型wMT-3,发现其在胚胎组织中高度富集。总而言之,本文详细介绍了复杂途径的遗传,分子和细胞基础,该途径可促进镉的吸收,积累,运输和排泄。

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