Department of Environmental Health Science, Konkuk University, Seoul 05029, Korea.
Int J Environ Res Public Health. 2018 Mar 3;15(3):444. doi: 10.3390/ijerph15030444.
Cyanobacteria synthesize various harmful materials, including off-flavor substances and toxins, that are regarded as potential socio-economic and environmental hazards in freshwater systems, however, their production is still not well understood. In this study, we investigated the potential and properties of harmful materials produced by cyanobacteria, depending on temperature, and undertook a phylogenetic analysis of cyanobacteria present in the North Han River (South Korea). Production potentials were evaluated using gene-specific probes, and the harmful material production properties of strains showing positive potentials were further characterized at different temperatures in the range 15 to 30 °C. We identified six cyanobacterial strains based on 16S rDNA analysis: two morphological types (coiled and straight type) of , and . We confirmed that cyanobacterial strains showing harmful material production potential produced the corresponding harmful material, and their production properties varied with temperature. Total harmful material production was maximal at 20~25 °C, a temperature range optimal for cell growth. However, harmful material productivity was highest at 15 °C. These results indicate that the expression of genes related to synthesis of harmful materials can vary depending on environmental conditions, resulting in variable harmful material production, even within the same cyanobacterial strains.
蓝藻合成各种有害物质,包括异味物质和毒素,这些物质被认为是淡水系统中潜在的社会经济和环境危害,但它们的产生仍未得到很好的理解。在这项研究中,我们根据温度调查了蓝藻产生有害物质的潜力和特性,并对韩国翰江(North Han River)中的蓝藻进行了系统发育分析。使用基因特异性探针评估了产生潜力,并且在 15 至 30°C 的范围内进一步研究了表现出阳性潜力的菌株在不同温度下的有害物质产生特性。我们根据 16S rDNA 分析确定了六种蓝藻菌株:两种形态类型(卷曲型和直型)的 和 。我们证实,显示有害物质产生潜力的蓝藻菌株产生了相应的有害物质,并且它们的产生特性随温度而变化。在 20~25°C 的温度范围内,总有害物质的产生达到最大值,这是细胞生长的最佳温度范围。但是,在 15°C 时有害物质的生产率最高。这些结果表明,与合成有害物质相关的基因的表达可能因环境条件而异,导致即使在相同的蓝藻菌株中,有害物质的产生也会发生变化。