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Changes in oligopeptide production by toxic cyanobacterial strains under iron deficiency

机译:铁缺乏下有毒蓝细菌菌株生产寡肽的变化

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Cyanobacteria produce several peptides whose functions and regulation mechanisms are not well understood. Iron availability has previously been suggested as a potential factor controlling production of microcystin, the best studied of these peptides, although results were not always consistent. Here, we examined how production of several peptides by 3 cyanobacterial strains changed in response to iron starvation or limitation. Experiments were run with 2 strains of Radiocystis fernandoii (28 and 86) and one of Planktothrix agardhii (27). The peptide spectra were analyzed and the gene expression of 2 peptides was assessed. Under iron starvation (no iron) all microcystin variants and one cyanopeptolin were significantly reduced in R. fernandoii 28 and P. agardhii 27. Only one compound, anabaenopeptin in P. agardhii 27, increased significantly. The strain R. fernandoii 86 did not show any significant modification in response to iron deprivation. Under moderate limitation, most peptides also decreased, although less abruptly. Conversely, changes in gene expression showed that genes coding for microcystin and aeruginosin were differentially expressed and were significantly higher under iron deprivation. This is consistent with previous findings that suggested that microcystin is produced to overcome stress. The lack of microcystin production despite the increased gene transcription is discussed in light of previous findings. This result might be due to either modifications of the cell metabolic state as a result of shortage of some important enzymes under iron deprivation or to microcystin loss as a result of its binding to proteins or other potential sink sources in the cell.
机译:蓝细菌会产生几种肽,其功能和调节机制尚不清楚。铁的有效性以前曾被建议作为控制微囊藻毒素生产的潜在因素,这是对这些肽的最佳研究,尽管结果并不总是一致的。在这里,我们研究了由3个蓝细菌菌株产生的几种肽的产生如何响应铁饥饿或限制而改变。实验用2株Fernandoii Radio虫(28和86)和1株Planktothrix agardhii(27)进行。分析了肽谱并评估了两种肽的基因表达。在铁饥饿(无铁)条件下,R。fernandoii 28和P. agardhii 27中的所有微囊藻毒素变体和一种氰基肽都显着减少。仅一种化合物,P。agardhii 27中的anabaenopeptin显着增加。菌株R. fernandoii 86对铁缺乏反应未显示任何明显的修饰。在中等限制下,大多数肽也减少了,尽管不那么突然。相反,基因表达的变化表明,编码微囊藻毒素和铜绿素酶的基因在铁缺乏时差异表达并且明显更高。这与以前的发现一致,该发现表明产生微囊藻毒素可以克服压力。根据先前的发现讨论了尽管基因转录增加但缺乏微囊藻毒素的产生。该结果可能是由于铁缺乏时某些重要酶的缺乏导致细胞代谢状态的改变,或者是由于其与蛋白质或细胞中其他潜在的库源结合导致微囊藻毒素损失。

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