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Limited Stability of Microcystins in Oligopeptide Compositions of Microcystis aeruginosa (Cyanobacteria): Implications in the Definition of Chemotypes

机译:铜绿微囊藻(蓝藻)的寡肽组成中的微囊藻素的有限的稳定性:在化学型的定义中的含义。

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摘要

The occurrence of diverse oligopeptides in cyanobacteria, including the cyanotoxins microcystins, has been recently used to classify individual clones into sub-specific oligopeptide chemotypes, whose composition and dynamics modulate microcystin concentrations in cyanobacterial blooms. Cyanobacterial chemotyping allows the study of the ecology of chemotypical subpopulations, which have been shown to possess dissimilar ecological traits. However, the stability of chemotypes under changing abiotic conditions is usually assumed and has not been assessed in detail. We monitored oligopeptide patterns of three strains of Microcystis aeruginosa under different nutrient and light conditions. MALDI-TOF MS revealed alterations in the microcystins signatures under N and P poor conditions and high light intensities (150 and 400 μmol photons m−2s−1). Variations in the general oligopeptide composition were caused by a gradual disappearance of microcystins with low relative intensity signals from the fingerprint. The extent of such variations seems to be closely related to physiological stress caused by treatments. Under identical clonal compositions, alterations in the oligopeptide fingerprint may be misinterpreted as apparent shifts in chemotype succession. We discuss the nature of such variations, as well as the consequent implications in the use of cyanobacterial chemotyping in studies at the subpopulation level and propose new guidance for the definition of chemotypes as a consistent subpopulation marker.
机译:蓝细菌中各种寡肽的出现,包括蓝藻毒素微囊藻毒素,最近已被用于将单个克隆分类为亚特异性寡肽化学型,其组成和动力学可调节蓝细菌花蕾中微囊藻毒素的浓度。蓝细菌化学分型可以研究化学型亚群的生态学,这些化学亚型已被证明具有不同的生态特征。然而,通常假定化学型在非生物条件变化下的稳定性,并且尚未进行详细评估。我们在不同的营养和光照条件下监测了三种铜绿微囊藻菌株的寡肽模式。 MALDI-TOF MS揭示了在N和P不良条件和高光强度(150和400μmol光子m -2 s -1 )下微囊藻毒素特征的变化。总体寡肽组成的变化是由于微囊藻毒素逐渐消失,指纹中的相对强度信号较低。这种变化的程度似乎与治疗引起的生理压力密切相关。在相同的克隆组成下,寡肽指纹的改变可能被误解为化学型演替中的明显变化。我们讨论了这种变异的性质,以及在亚人群水平的研究中使用蓝细菌化学分型的结果,并为将化学型定义为一致的亚人群标志物提供了新的指导。

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