Departament de Genètica i Microbiologia,Facultat de Biociències,Universitat Autònoma de Barcelona,Bellaterra (Cerdanyola del Vallès), 08193 Barcelona,Spain.
Microsc Microanal. 2019 Aug;25(4):998-1003. doi: 10.1017/S143192761901465X. Epub 2019 Jun 24.
Phototrophic microorganisms are the dominant populations in microbial mats, which play an important role in stabilizing sediments, such as happens in the Ebro Delta. These microorganisms are exposed to low metal concentrations over a long period of time. Distinct methods have been used to evaluate their toxic effect on the preservation of these ecosystems. Nevertheless, most of these techniques are difficult to apply in isolated phototrophs because (i) they usually form consortia with heterotrophic bacteria, (ii) are difficult to obtain in axenic cultures, and (iii) do not grow on solid media.In this study, and for the first time, a combination of fast, non-invasive, and in vivo Confocal Laser Scanning Microscopy (CLSM) techniques were applied in a consortium of Scenedesmus sp. DE2009 to analyze its physiological state and viability under metal stress conditions. Microalga was more resistant to Pb followed by Cr and Cu. However, in multimetal combinations, the presence of Cu negatively affected microalga growth. Additionally, the inhibitory concentration (IC) values were also calculated by CLSM pigment analysis. The result determines a higher degree of toxicity for Cu and Cr in comparison to Pb. The high sensitivity of these CLSM-methods to detect low concentrations allows consideration of Scenedesmus sp. DE2009 as a good bioindicator of metal pollution in natural environments.
光养微生物是微生物席中的优势种群,它们在稳定沉积物方面起着重要作用,就像在埃布罗三角洲一样。这些微生物长期暴露在低浓度的金属环境中。人们已经使用了不同的方法来评估它们对这些生态系统的保存的毒性影响。然而,由于以下原因,这些技术中的大多数都难以应用于分离的光养生物:(i)它们通常与异养细菌形成共生体,(ii)在无菌培养中难以获得,以及(iii)不能在固体培养基上生长。在这项研究中,首次将快速、非侵入性和体内共聚焦激光扫描显微镜(CLSM)技术结合应用于 Scenedesmus sp. DE2009 的共生体中,以分析其在金属胁迫条件下的生理状态和活力。微藻对 Pb 的抵抗力更强,其次是 Cr 和 Cu。然而,在多金属组合中,Cu 的存在会对微藻的生长产生负面影响。此外,还通过 CLSM 色素分析计算了抑制浓度(IC)值。结果表明,Cu 和 Cr 的毒性比 Pb 更高。这些 CLSM 方法对低浓度的检测具有很高的灵敏度,这使得 Scenedesmus sp. DE2009 可以作为自然环境中金属污染的良好生物指示剂。