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首页> 外文期刊>Extremophiles: Life under extreme conditions >Transcriptional response to copper excess and identification of genes involved in heavy metal tolerance in the extremophilic microalga Chlamydomonas acidophila
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Transcriptional response to copper excess and identification of genes involved in heavy metal tolerance in the extremophilic microalga Chlamydomonas acidophila

机译:嗜铜衣藻嗜盐衣藻对铜过量的转录反应和重金属耐受性相关基因的鉴定

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High concentrations of heavy metals are typical of acidic environments. Therefore, studies on acidophilic organisms in their natural environments improve our understanding on the evolution of heavy metal tolerance and detoxification in plants. Here we sequenced the transcriptome of the extremophilic microalga Chlamydomonas acidophila cultivated in control conditions and with 500 mu M of copper for 24 h. High-throughput 454 sequencing was followed by de novo transcriptome assembly. The reference transcriptome was annotated and genes related to heavy metal tolerance and abiotic stress were identified. Analyses of differentially expressed transcripts were used to detect genes involved in metabolic pathways related to abiotic stress tolerance, focusing on effects caused by increased levels of copper. Both transcriptomic data and observations from PAM fluorometry analysis suggested that the photosynthetic activity of C. acidophila is not adversely affected by addition of high amounts of copper. Up-regulated transcripts include several transcripts related to photosynthesis and carbohydrate metabolism, transcripts coding for general stress response, and a transcript annotated as homologous to the oil-body-associated protein HOGP coding gene. The first de novo assembly of C. acidophila significantly increases transcriptomic data available on extremophiles and green algae and thus provides an important reference for further molecular genetic studies. The differences between differentially expressed transcripts detected in our study suggest that the response to heavy metal exposure in C. acidophila is different from other studied green algae.
机译:高浓度的重金属是酸性环境的典型特征。因此,对嗜酸生物在其自然环境中的研究提高了我们对植物对重金属的耐受性和排毒过程的认识。在这里,我们对在控制条件下和500μM铜培养24 h的嗜极端嗜藻衣藻嗜盐衣藻的转录组进行了测序。高通量454测序之后是从头转录组组装。注释了转录组,并鉴定了与重金属耐受性和非生物胁迫相关的基因。差异表达的转录本分析用于检测与非生物胁迫耐受性相关的代谢途径中涉及的基因,重点研究铜水平升高引起的影响。转录组数据和PAM荧光分析的观察结果均表明,添加大量的铜不会对嗜酸梭菌的光合作用产生不利影响。上调的转录物包括与光合作用和碳水化合物代谢有关的几个转录物,编码一般应激反应的转录物,和与油体相关的蛋白质HOGP编码基因同源的转录物。嗜酸梭菌的首次从头组装显着增加了极端微生物和绿藻可获得的转录组数据,从而为进一步的分子遗传学研究提供了重要参考。在我们的研究中检测到的差异表达转录本之间的差异表明,嗜酸梭菌对重金属暴露的反应与其他研究的绿藻不同。

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