Research and Innovation Centre, Fondazione Edmund Mach, Via Edmund Mach, 1, 38098 San Michele all'Adige, Italy.
NBFC, National Biodiversity Future Center, Palermo 90133, Italy.
FEMS Microbiol Ecol. 2024 Sep 14;100(10). doi: 10.1093/femsec/fiae117.
Untargeted genetic approaches can be used to explore the high metabolic versatility of cyanobacteria. In this context, a comprehensive metagenomic shotgun analysis was performed on a population of Dolichospermum lemmermannii collected during a surface bloom in Lake Garda in the summer of 2020. Using a phylogenomic approach, the almost complete metagenome-assembled genome obtained from the analysis allowed to clarify the taxonomic position of the species within the genus Dolichospermum and contributed to frame the taxonomy of this genus within the ADA group (Anabaena/Dolichospermum/Aphanizomenon). In addition to common functional traits represented in the central metabolism of photosynthetic cyanobacteria, the genome annotation uncovered some distinctive and adaptive traits that helped define the factors that promote and maintain bloom-forming heterocytous nitrogen-fixing Nostocales in oligotrophic lakes. In addition, genetic clusters were identified that potentially encode several secondary metabolites that were previously unknown in the populations evolving in the southern Alpine Lake district. These included geosmin, anabaenopetins, and other bioactive compounds. The results expanded the knowledge of the distinctive competitive traits that drive algal blooms and provided guidance for more targeted analyses of cyanobacterial metabolites with implications for human health and water resource use.
非靶向遗传方法可用于探索蓝藻的高度代谢多功能性。在这方面,对 2020 年夏季加尔达湖表面水华期间采集的多列束丝藻种群进行了全面的宏基因组鸟枪法分析。通过系统发育基因组学方法,从分析中获得的近乎完整的宏基因组组装基因组有助于阐明该物种在多列束丝藻属中的分类地位,并有助于在 ADA 组(鱼腥藻/多列束丝藻/节旋藻)内确定该属的分类。除了在光合蓝藻的中心代谢中代表的常见功能特征外,基因组注释还揭示了一些独特的适应性特征,这些特征有助于确定促进和维持贫营养湖泊中形成异形固氮鱼腥藻的因素。此外,还鉴定了可能编码几种先前在阿尔卑斯山南部分散的种群中未知的次生代谢物的基因簇。其中包括土腥素、鱼腥藻素和其他生物活性化合物。这些结果扩展了驱动藻类水华的独特竞争特征的知识,并为具有人类健康和水资源利用意义的蓝藻代谢物的更有针对性的分析提供了指导。