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Comparative gene expression in toxic versus non-toxic strains of the marine dinoflagellate Alexandrium minutum

机译:海洋甲藻鞭毛亚历山大藻有毒和无毒菌株中的比较基因表达

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Background The dinoflagellate Alexandrium minutum typically produces paralytic shellfish poisoning (PSP) toxins, which are known only from cyanobacteria and dinoflagellates. While a PSP toxin gene cluster has recently been characterized in cyanobacteria, the genetic background of PSP toxin production in dinoflagellates remains elusive. Results We constructed and analysed an expressed sequence tag (EST) library of A. minutum, which contained 15,703 read sequences yielding a total of 4,320 unique expressed clusters. Of these clusters, 72% combined the forward-and reverse reads of at least one bacterial clone. This sequence resource was then used to construct an oligonucleotide microarray. We analysed the expression of all clusters in three different strains. While the cyanobacterial PSP toxin genes were not found among the A. minutum sequences, 192 genes were differentially expressed between toxic and non-toxic strains. Conclusions Based on this study and on the lack of identified PSP synthesis genes in the two existent Alexandrium tamarense EST libraries, we propose that the PSP toxin genes in dinoflagellates might be more different from their cyanobacterial counterparts than would be expected in the case of a recent gene transfer. As a starting point to identify possible PSP toxin-associated genes in dinoflagellates without relying on a priori sequence information, the sequences only present in mRNA pools of the toxic strain can be seen as putative candidates involved in toxin synthesis and regulation, or acclimation to intracellular PSP toxins.
机译:背景鞭毛藻亚历山大藻通常产生麻痹性贝类中毒(PSP)毒素,仅从蓝细菌和鞭毛藻中已知。尽管最近在蓝细菌中鉴定了PSP毒素基因簇,但在鞭毛鞭毛虫中生产PSP毒素的遗传背景仍然难以捉摸。结果我们构建并分析了A. minutum的表达序列标签(EST)文库,该文库包含15,703个阅读序列,总共产生4,320个独特的表达簇。在这些簇中,有72%结合了至少一个细菌克隆的正向和反向读数。然后将该序列资源用于构建寡核苷酸微阵列。我们分析了三种不同菌株中所有簇的表达。虽然在A. minutum序列中未发现蓝细菌PSP毒素基因,但有毒和无毒菌株之间差异表达了192个基因。结论基于这项研究以及两个现有的亚历山大·塔玛伦塞EST文库中缺乏鉴定出的PSP合成基因,我们提出,鞭毛藻中的PSP毒素基因可能与蓝藻对应物中的PSP毒素基因相比,在最近的情况下可能有更大的差异。基因转移。作为在不依赖先验序列信息的情况下识别鞭毛鞭毛虫中可能与PSP毒素相关的基因的起点,仅存在于毒性菌株的mRNA库中的序列可以被视为参与毒素合成和调控或适应细胞内的假定候选物。 PSP毒素。

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