Phycotoxins Laboratory, IFREMER, F-44311 Nantes, France.
UMR CNRS 6553 ECOBIO, Rennes 1 University, F-35042 Rennes, France.
Environ Microbiol. 2019 May;21(5):1552-1566. doi: 10.1111/1462-2920.14490. Epub 2019 Jan 13.
Freshwater cyanobacteria are known for their ability to produce bioactive compounds, some of which have been described as allelochemicals. Using a combined approach of co-cultures and analyses of metabolic profiles, we investigated chemically mediated interactions between two cyanobacterial strains, Microcystis aeruginosa PCC 7806 and Planktothrix agardhii PCC 7805. More precisely, we evaluated changes in growth, morphology and metabolite production and release by both interacting species. Co-culture of Microcystis with Planktothrix resulted in a reduction of the growth of Planktothrix together with a decrease of its trichome size and alterations in the morphology of its cells. The production of intracellular compounds by Planktothrix showed a slight decrease between monoculture and co-culture conditions. Concerning Microcystis, the number of intracellular compounds was higher under co-culture condition than under monoculture. Overall, Microcystis produced a lower number of intracellular compounds under monoculture than Planktothrix, and a higher number of intracellular compounds than Planktothrix under co-culture condition. Our investigation did not allow us to identify specifically the compounds causing the observed physiological and morphological changes of Planktothrix cells. However, altogether, these results suggest that co-culture induces specific compounds as a response by Microcystis to the presence of Planktothrix. Further studies should be undertaken for identification of such potential allelochemicals.
淡水蓝藻以其产生生物活性化合物的能力而闻名,其中一些已被描述为化感物质。本研究采用共培养和代谢谱分析相结合的方法,研究了两种蓝藻——铜绿微囊藻 PCC 7806 和颤藻 PCC 7805 之间的化学介导相互作用。更确切地说,我们评估了相互作用的两种生物的生长、形态和代谢产物的产生和释放的变化。铜绿微囊藻与颤藻共培养导致颤藻的生长减少,其藻丝尺寸减小,细胞形态发生改变。颤藻细胞内化合物的产生在纯培养和共培养条件下略有下降。就铜绿微囊藻而言,共培养条件下的细胞内化合物数量高于纯培养条件。总的来说,铜绿微囊藻在纯培养条件下产生的细胞内化合物数量低于颤藻,而在共培养条件下产生的细胞内化合物数量高于颤藻。本研究未能确定导致颤藻细胞出现观察到的生理和形态变化的特定化合物。然而,总的来说,这些结果表明共培养会诱导特定的化合物,作为铜绿微囊藻对颤藻存在的反应。应进一步开展研究以鉴定此类潜在的化感物质。