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对来自挪威北部峡湾中球形棕囊藻藻华的鱼毒素性质的见解。

Insights into the nature of ichthyotoxins from the Chrysochromulina leadbeateri blooms in Northern Norwegian fjords.

作者信息

Wang Xinhui, Fon Mathias, Andersen Aaron J C, Solhaug Anita, Ingebrigtsen Richard A, Samdal Ingunn A, Uhlig Silvio, Miles Christopher O, Edvardsen Bente, Larsen Thomas O

机构信息

Technical University of Denmark, DTU Bioengineering, Kgs. Lyngby, Denmark.

Norwegian Veterinary Institute, Ås, Norway; University of Oslo, Department of Biosciences, Oslo, Norway.

出版信息

Harmful Algae. 2024 Aug;137:102681. doi: 10.1016/j.hal.2024.102681. Epub 2024 Jun 20.

Abstract

In May-June 2019, the microalga Chrysochromulina leadbeateri caused a massive fish-killing event in several fjords in Northern Norway, resulting in the largest direct impact ever on aquaculture in northern Europe due to toxic algae. Motivated by the fact that no algal toxins have previously been described from C. leadbeateri, we set out to investigate the chemical nature and toxicity of secondary metabolites in extracts of two strains (UIO 393, UIO 394) isolated from the 2019 bloom, as well as one older strain (UIO 035) isolated during a bloom in Northern Norway in 1991. Initial LC-DAD-MS/MS-based molecular networking analysis of the crude MeOH extracts of the cultivated strains showed that their profiles of small organic molecules, including a large number of known lipids, were very similar, suggesting that the same class of toxin(s) were likely the causative agents of the two harmful algal bloom (HAB) events. Next, bioassay-guided fractionation using the RTgill-W1 cell line and metabolomics analysis pointed to a major compound affording [M + H] ions at m/z 1399.8333 as a possible toxin, corresponding to a compound with the formula CHClO. Moreover, our study unveiled a series of minor analogues exhibiting distinct patterns of chlorination and sulfation, together defining a new family of compounds, which we propose to name leadbeaterins. Remarkably, these suspected toxins were detected in situ in samples collected during the 2019 bloom close to Tromsø, thereby consistent with a role in fish kills. The elemental compositions of the putative C. leadbeateri ichthyotoxins strongly indicate them to be long linear polyhydroxylated polyketides, structurally similar to sterolysins reported from a number of dinoflagellates.

摘要

2019年5月至6月,微小金藻(Chrysochromulina leadbeateri)在挪威北部的几个峡湾引发了大规模鱼类死亡事件,这是北欧有史以来因有毒藻类对水产养殖造成的最大直接影响。鉴于此前从未描述过微小金藻产生的藻毒素,我们着手研究从2019年藻华分离出的两个菌株(UIO 393、UIO 394)以及1991年在挪威北部藻华期间分离出的一个较老菌株(UIO 035)提取物中次生代谢产物的化学性质和毒性。基于液相色谱-二极管阵列-串联质谱(LC-DAD-MS/MS)的培养菌株粗甲醇提取物的初步分子网络分析表明,它们的小分子有机化合物谱,包括大量已知脂质,非常相似,这表明同一类毒素可能是这两起有害藻华(HAB)事件的致病因子。接下来,使用RTgill-W1细胞系进行生物测定引导的分级分离和代谢组学分析指出,一种在m/z 1399.8333处提供[M + H]离子的主要化合物可能是毒素,其分子式为CHClO。此外,我们的研究揭示了一系列具有不同氯化和硫酸化模式的次要类似物,共同定义了一个新的化合物家族,我们提议将其命名为leadbeaterins。值得注意的是,在2019年特罗姆瑟附近藻华期间采集的样本中现场检测到了这些疑似毒素,这与它们在鱼类死亡中的作用一致。推测的微小金藻鱼毒素的元素组成强烈表明它们是长链线性多羟基化聚酮化合物,在结构上类似于从许多甲藻中报道的sterolysins。

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