Banni M, Dondero F, Jebali J, Guerbej H, Boussetta H, Viarengo A
Department of Environmental and Life Science, University of Piemonte Orientale Amedeo Avogadro, Alessandria, Italy.
Biomarkers. 2007 Jul-Aug;12(4):369-83. doi: 10.1080/13547500701217061.
In mussel Mytilus galloprovincialis tissues, metallothionein belongs to two different gene classes, mt10 and mt20, showing differential expression at both basal conditions and under heavy metal challenge. In this study, a new more highly sensitive technique, expression analysis of mt10 and mt20 mRNA levels by quantitative reverse transcription polymerase chain reaction, was used to assess the effects of heavy metal contamination in the digestive glands of mussels caged along the Tunisian coast. To validate the new assay, total metallothionein protein, amount of heavy metals (zinc, copper, cadmium), and a biomarker of oxidative stress such as malondialdehyde content, were assessed in the same tissues. At the investigated sites, the molecular assay showed variations of mt20 relative gene expression levels within one or two orders of magnitude, with maximum values at two sites severely polluted with cadmium, Mahres (100-fold) and Menzel Jemile (165-fold). Changes in mt10 expression were recorded at all sites where copper had significantly accumulated, although fold induction levels were less pronounced than those of mt20. In this paper, gene expression data are discussed in relation to the studied biomarkers, demonstrating that the molecular technique based on the differential expression of mt10 and mt20 genes represents (i) a useful and robust tool for studying and monitoring heavy metal pollution under field conditions, and (ii) an improvement in the application of metallothionein as a biomarker of response to exposure to heavy metals in marine mussels.
在贻贝(Mytilus galloprovincialis)组织中,金属硫蛋白属于两个不同的基因类别,即mt10和mt20,在基础条件下以及重金属挑战下均表现出差异表达。在本研究中,一种新的更灵敏的技术,即通过定量逆转录聚合酶链反应分析mt10和mt20 mRNA水平,被用于评估沿突尼斯海岸养殖的贻贝消化腺中重金属污染的影响。为了验证新的检测方法,在相同组织中评估了总金属硫蛋白、重金属(锌、铜、镉)含量以及氧化应激生物标志物如丙二醛含量。在所研究的地点,分子检测显示mt20相对基因表达水平在一到两个数量级内变化,在两个镉污染严重的地点,即马赫雷斯(100倍)和门泽尔杰米尔(165倍)达到最大值。在所有铜显著积累的地点都记录到了mt10表达的变化,尽管诱导倍数水平不如mt20明显。在本文中,基因表达数据与所研究的生物标志物相关联进行了讨论,表明基于mt10和mt20基因差异表达的分子技术代表了(i)一种在野外条件下研究和监测重金属污染的有用且可靠的工具,以及(ii)在将金属硫蛋白用作海洋贻贝中重金属暴露反应生物标志物的应用方面的一种改进。