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美国俄勒冈州不同的鱼腥藻/水华束丝藻/微囊藻水华中有 7-表-环脒基海兔素和微囊藻毒素的产生。

7-epi-cylindrospermopsin and microcystin producers among diverse Anabaena/Dolichospermum/Aphanizomenon CyanoHABs in Oregon, USA.

机构信息

Department of Microbiology, Oregon State University, Corvallis, OR 97331, USA.

GreenWater Laboratories, 205 Zeagler Drive, Suite 302, Palatka, FL 32177, USA.

出版信息

Harmful Algae. 2022 Jul;116:102241. doi: 10.1016/j.hal.2022.102241. Epub 2022 May 16.

Abstract

Several genomes of Nostocales ADA clade members from the US Pacific Northwest were recently sequenced. Biosynthetic genes for microcystin, cylindrospermopsin or anatoxin-a were present in 7 of the 15 Dolichospermum/Anabaena strains and none of the 5 Aphanizomenon flos-aquae (AFA) strains. Toxin analyses (ELISA and LC-MS/MS) were conducted to quantitate and identify microcystin (MC) and cylindrospermopsin (CYN) congeners/analogs in samples dominated by Dolichospermum spp. of known genome sequence. MC-LR was the main congener produced by Dolichospermum spp. from Junipers Reservoir, Lake Billy Chinook and Odell Lake, while a congener provisionally identified as [Dha]MC-HtyR was produced by a Dolichospermum sp. in Detroit Reservoir. A second Dolichospermum sp. from Detroit Reservoir was found to produce 7-epi-CYN, with 7-deoxy-CYN also present, but no CYN. The monitoring history of each of these lakes indicates the capacity for high levels of cyanotoxins during periods when Dolichospermum spp. are the dominant cyanobacteria. The diversity of ADA strains found in the US Pacific NW emphasizes the importance of these cyanobacteria as potentially toxic HAB formers in this temperate climatic region. Our results linking congener and genetic identity add data points that will help guide development of improved tools for predicting congener specificity from cyanotoxin gene sequences.

摘要

最近,对来自美国太平洋西北地区 Nostocales ADA 分支的多个基因组进行了测序。在 15 株 Dolichospermum/Anabaena 菌株中有 7 株存在微囊藻毒素、柱孢藻毒素或anatoxin-a 的生物合成基因,而在 5 株 Aphanizomenon flos-aquae (AFA) 菌株中则不存在。通过酶联免疫吸附测定(ELISA)和液相色谱-串联质谱法(LC-MS/MS)对样品进行了毒素分析,以定量和鉴定由已知基因组序列的 Dolichospermum spp. 主导的样品中的微囊藻毒素(MC)和柱孢藻毒素(CYN)同系物/类似物。MC-LR 是 Juniper 水库、Lake Billy Chinook 和 Odell 湖中的 Dolichospermum spp. 产生的主要同系物,而暂定鉴定为 [Dha]MC-HtyR 的同系物是由 Detroit 水库中的一种 Dolichospermum sp. 产生的。在 Detroit 水库中发现的第二种 Dolichospermum sp. 产生 7-epi-CYN,同时也存在 7-脱氧-CYN,但没有 CYN。这些湖泊的监测历史表明,当 Dolichospermum spp. 成为优势蓝藻时,它们有能力产生高水平的蓝藻毒素。在美国太平洋西北地区发现的 ADA 菌株的多样性强调了这些蓝藻作为潜在有毒 HAB 形成物在这个温带气候地区的重要性。我们将同系物和遗传身份联系起来的结果增加了有助于指导开发从蓝藻毒素基因序列预测同系物特异性的改进工具的数据点。

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