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Identification of pathways gene networks and paralogous gene families in Daphnia pulex responding to exposure to the toxic cyanobacterium Microcystis aeruginosa

机译:途径基因网络和水蚤旁系同源基因家族的鉴定蚤响应暴露于有毒蓝藻铜绿微囊藻

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摘要

Although cyanobacteria produce a wide range of natural toxins that impact aquatic organisms, food webs and water quality, the mechanisms of toxicity are still insufficiently understood. Here, we implemented a whole-genome expression microarray to identify pathways, gene networks and paralogous gene families responsive to Microcystis stress in Daphnia pulex. Therefore, neonates of a sensitive isolate were given a diet contaminated with Microcystis to contrast with those given a control diet for sixteen days. The microarray revealed 2247 differentially expressed (DE) genes (7.6% of the array) in response to Microcystis, of which 17% are lineage specific( i.e., these genes have no detectable homology to any other gene in currently available databases) and 49% are gene duplicates (paralogs). We identified four pathways/gene networks and eight paralogous gene families affected by Microcystis. Differential regulation of the ribosome, including 3 paralogous gene families encoding 40S, 60S and mitochondrial ribosomal proteins, suggests an impact of Microcystis on protein synthesis of D. pulex. In addition, differential regulation of the oxidative phosphorylation pathway (including the NADH ubquinone oxidoreductase gene family) and the trypsin paralogous gene family (a major component of the digestive system in D. pulex) could explain why fitness is reduced based on energy budget considerations.
机译:尽管蓝细菌产生影响水生生物,食物网和水质的多种天然毒素,但对毒性的机理仍知之甚少。在这里,我们实施了一个全基因组表达微阵列,以鉴定对水蚤微囊藻胁迫的反应途径,基因网络和旁系基因家族。因此,对敏感分离株的新生儿进行了微囊藻污染的饮食,与对照饮食进行了16天的对比。该微阵列揭示了对微囊藻的应答的2247个差异表达(DE)基因(占阵列的7.6%),其中17%是谱系特异性的(即,这些基因与当前可用数据库中的任何其他基因都没有可检测的同源性)和49%是基因重复项(旁系同源物)。我们确定了受微囊藻影响的四个途径/基因网络和八个旁系基因家族。核糖体的差异调节,包括编码40S,60S和线粒体核糖体蛋白的3个同源基因家族,表明微囊藻对D.pulex的蛋白质合成有影响。此外,氧化磷酸化途径(包括NADH泛醌氧化还原酶基因家族)和胰蛋白酶旁系基因家族(D. pulex消化系统的主要组成部分)的差异调节可以解释为什么基于能量预算的考虑而降低了适应性。

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