Faculty of Physics and Applied Computer Science, AGH-University of Science and Technology, Al. Mickiewicza 30, 30-059 Kraków, Poland.
Department of Machine Learning, Faculty of Informatics and Communication, University of Economics, 1 Maja 50, 40-287 Katowice, Poland.
Int J Mol Sci. 2023 Mar 4;24(5):4972. doi: 10.3390/ijms24054972.
This study focused on the antifouling effect of copper oxide (CuO)- and zineb-based coatings against sp. by analysing photosynthetic activity using chlorophyll fluorescence. The photoautotrophically grown cyanobacterium was exposed to toxic coatings over a short-term period of 32 h. The study showed that cultures are particularly sensitive to biocides (i) released from antifouling paints and (ii) exhibited by contact with the coated surfaces. Changes in the maximum quantum yield of photosystem II (F/F) were observed within the first 12 h of exposure to the coatings. Partial recovery of F/F in was revealed 24 h post exposure to a copper- and zineb-free coating. In this research, we proposed an analysis of the evaluation of fluorescence data to study the initial response of cyanobacterial cells to copper- and non-copper-based antifouling coatings formulated with zineb. We evaluated the dynamics of coating toxicity by determining the characteristic time constants of changes in the F/F. Within the most toxic paints studied, those formulated with the highest concentration of CuO and zineb, the estimated time constants were 3.9 times lower compared to the copper- and zineb-free paint. The use of zineb in copper-based antifouling coatings enhanced the toxic effect of paints and contributed to a faster decline in photosystem II activity in cells. The analysis we proposed, along with the fluorescence screening results, may be useful in evaluating the initial antifouling dynamic action against photosynthetic aquacultures.
本研究通过分析叶绿素荧光来研究氧化铜 (CuO) 和代森锌基涂层对 sp. 的防污效果。将光自养生长的蓝藻暴露于毒性涂层中,暴露时间短至 32 小时。研究表明,培养物对生物杀灭剂(i)从防污涂料中释放和(ii)与涂层表面接触表现出特别敏感。在暴露于涂层的前 12 小时内观察到光合作用系统 II 的最大量子产率 (F/F) 的变化。在暴露于无铜和代森锌的涂层后 24 小时,发现 F/F 在 中部分恢复。在这项研究中,我们提出了一种分析荧光数据的方法,以研究铜和非铜基防污涂层中代森锌对蓝藻细胞的初始反应。我们通过确定 F/F 变化的特征时间常数来评估涂层毒性的动态。在所研究的最有毒涂料中,那些含有最高浓度 CuO 和代森锌的涂料,与无铜和代森锌的涂料相比,估计的时间常数低 3.9 倍。代森锌在铜基防污涂料中的使用增强了涂料的毒性作用,并导致蓝藻细胞光合作用系统 II 活性更快下降。我们提出的分析方法以及荧光筛选结果可能有助于评估针对水产养殖的初始防污动态作用。