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首页> 外文期刊>Aquatic Toxicology >Coordinated responses of phytochelatin synthase and metallothionein genes in black mangrove, Avicennia germinans, exposed to cadmium and copper.
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Coordinated responses of phytochelatin synthase and metallothionein genes in black mangrove, Avicennia germinans, exposed to cadmium and copper.

机译:暴露于镉和铜的黑红树林,Avicennia生殖器中的植物螯合酶合酶和金属硫蛋白基因的协调响应。

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摘要

To evaluate the role of phytochelatins and metallothioneins in heavy metal tolerance of black mangrove Avicennia germinans, 3-month-old seedlings were exposed to cadmium or copper for 30 h, under hydroponic conditions. Degenerate Mt2 and PCS primers were synthesized based on amino acid and nucleotide alignment sequences reported for Mt2 and PCS in other plant species found in GenBank. Total RNA was isolated from A. germinans leaves and two partial fragments of metallothionein and phytochelatin synthase genes were isolated. Gene expression was evaluated with reverse transcriptase-polymerase chain reaction (RT-PCR) amplification technique. Temporal analysis showed that low Cd2+ and Cu2+ concentrations caused a slight (but not significant) increase in AvMt2 expression after a 16 h exposure time, while AvPCS expression showed a significant increase under the same conditions but only after 4 h, Results strongly suggest that the rapid increase in AvPCS expression may contribute to Cd2+ and Cu2+ detoxification. Moreover, we found that A. germinans has the capacity to over-express both genes (AvMt2 and AvPCS), which may constitute a coordinated detoxification response mechanism targeting non-essential metals. Nonetheless, our results confirm that AvPCS was the most active gene involved in the regulation of essential metals (e.g., Cu2+) in A. germinans leaves..
机译:为了评估植物螯合素和金属硫蛋白在黑红树林Avicennia菌的重金属耐受性中的作用,在水培条件下,将3个月大的幼苗暴露于镉或铜下30 h。根据GenBank中发现的其他植物物种中Mt2和PCS的氨基酸和核苷酸比对序列,合成了简并的Mt2和PCS引物。从芽孢杆菌叶中分离总RNA,并分离出金属硫蛋白和植物螯合素合酶基因的两个部分片段。基因表达用逆转录聚合酶链反应(RT-PCR)扩增技术进行评估。时间分析显示,低Cd2 +和Cu2 +浓度会导致暴露16小时后AvMt2表达略有(但不显着)增加,而AvPCS表达在相同条件下但仅在4 h后才显着增加,结果强烈表明AvPCS表达的快速增加可能有助于Cd2 +和Cu2 +解毒。此外,我们发现A. germinans具有过表达两个基因(AvMt2和AvPCS)的能力,这可能构成针对非必需金属的协同排毒反应机制。尽管如此,我们的结果证实,AvPCS是参与芽孢杆菌叶中必需金属(例如Cu2 +)调控的最活跃基因。

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