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西伊利湖菌群集合:评估微囊藻及其相关微生物组生理和遗传多样性的有前景资源。

The Western Lake Erie culture collection: A promising resource for evaluating the physiological and genetic diversity of Microcystis and its associated microbiome.

机构信息

Earth and Environmental Sciences, University of Michigan, Ann Arbor, MI 48109, United States of America.

Cooperative Institute for Great Lakes Research (CIGLR), University of Michigan, 4840 S State Road, Ann Arbor, MI 48108, United States of America.

出版信息

Harmful Algae. 2023 Jul;126:102440. doi: 10.1016/j.hal.2023.102440. Epub 2023 Apr 30.

DOI:10.1016/j.hal.2023.102440
PMID:37290887
Abstract

Cyanobacterial harmful algal blooms (cyanoHABs) dominated by Microcystis spp. have significant public health and economic implications in freshwater bodies around the world. These blooms are capable of producing a variety of cyanotoxins, including microcystins, that affect fishing and tourism industries, human and environmental health, and access to drinking water. In this study, we isolated and sequenced the genomes of 21 primarily unialgal Microcystis cultures collected from western Lake Erie between 2017 and 2019. While some cultures isolated in different years have a high degree of genetic similarity (genomic Average Nucleotide Identity >99%), genomic data show that these cultures also represent much of the breadth of known Microcystis diversity in natural populations. Only five isolates contained all the genes required for microcystin biosynthesis while two isolates contained a previously described partial mcy operon. Microcystin production within cultures was also assessed using Enzyme-Linked Immunosorbent Assay (ELISA) and supported genomic results with high concentrations (up to 900 μg L⁻¹) in cultures with complete mcy operons and no or low toxin detected otherwise. These xenic cultures also contained a substantial diversity of bacteria associated with Microcystis, which has become increasingly recognized as an essential component of cyanoHAB community dynamics. These results highlight the genomic diversity among Microcystis strains and associated bacteria in Lake Erie, and their potential impacts on bloom development, toxin production, and toxin degradation. This culture collection significantly increases the availability of environmentally relevant Microcystis strains from temperate North America.

摘要

由微囊藻属(Microcystis spp.)主导的蓝藻有害藻华(cyanoHABs)在世界各地的淡水水体中具有重大的公共卫生和经济意义。这些藻华能够产生多种蓝藻毒素,包括微囊藻毒素,影响渔业和旅游业、人类和环境健康以及饮用水供应。在这项研究中,我们从 2017 年至 2019 年期间从伊利湖西部分离并测序了 21 株主要单藻微囊藻培养物的基因组。虽然一些在不同年份分离的培养物具有高度的遗传相似性(基因组平均核苷酸同一性>99%),但基因组数据表明,这些培养物也代表了自然种群中已知微囊藻多样性的大部分。只有五个分离株包含微囊藻毒素生物合成所需的所有基因,而两个分离株包含先前描述的部分 mcy 操纵子。使用酶联免疫吸附测定法(ELISA)评估了培养物内的微囊藻毒素产生情况,结果与具有完整 mcy 操纵子的培养物中的高浓度(高达 900μg L⁻¹)相符,而在其他情况下则未检测到毒素或毒素浓度较低。这些异养培养物还含有与微囊藻相关的大量细菌多样性,这些细菌已越来越被认为是蓝藻藻华群落动态的重要组成部分。这些结果突出了伊利湖中微囊藻菌株和相关细菌的基因组多样性,以及它们对藻华发展、毒素产生和毒素降解的潜在影响。该培养物集大大增加了来自北美温带地区具有环境相关性的微囊藻菌株的可用性。

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