Human and Eco-Care Center, Department of Environmental Health Science, Konkuk University, Seoul 05029, Korea.
Department of Environmental Health Science, Konkuk University, Seoul 05029, Korea.
Int J Environ Res Public Health. 2020 Mar 16;17(6):1933. doi: 10.3390/ijerph17061933.
The volatile metabolite, 2-Methylisoborneol (2-MIB) produced by cyanobacterial species, causes odor and taste problems in freshwater systems. However, simple identification of cyanobacteria that produce such off-flavors may be insufficient to establish the causal agent of off-flavor-related problems as the production-related genes are often strain-specific. Here, we designed a set of primers for detecting and quantifying 2-MIB-synthesizing cyanobacteria based on gene sequences (encoding 2-MIB synthesis-catalyzing monoterpene cyclase) from various Oscillatoriales and Synechococcales cyanobacterial strains deposited in GenBank. Cyanobacterial cells and environmental DNA and RNA were collected from both the water column and sediment of a eutrophic stream (the Gong-ji Stream, Chuncheon, South Korea), which has a high 2-MIB concentration. Primer sets mibC196 and mibC300 showed universality to in the Synechococcales and Oscillatoriales strains; the mibC132 primer showed high specificity for and . Our mibC primers showed excellent amplification efficiency (100-102%) and high correlation among related variables (2-MIB concentration with water RNA r = 689, < 0.01; sediment DNA r = 0.794, < 0.01; and water DNA r = 0.644, < 0.05; cyanobacteria cell density with water RNA and DNA r = 0.995, < 0.01). These primers offer an efficient tool for identifying cyanobacterial strains possessing genes (and thus 2-MIB-producing potential) and for evaluating gene expression as an early warning of massive cyanobacterial occurrence.
挥发性代谢物 2-甲基异莰醇(2-MIB)由蓝藻产生,导致淡水系统出现气味和味道问题。然而,简单地识别产生这种异味的蓝藻可能不足以确定与异味相关问题的致病因子,因为产生相关基因通常是菌株特异性的。在这里,我们根据 GenBank 中储存的各种 Oscillatoriales 和 Synechococcales 蓝藻菌株的基因序列(编码 2-MIB 合成催化单萜环化酶)设计了一组用于检测和定量 2-MIB 合成蓝藻的引物。从富营养化溪流(韩国春川 Gong-ji 溪流)的水柱和沉积物中收集蓝藻细胞和环境 DNA 和 RNA,该溪流具有高浓度的 2-MIB。引物对 mibC196 和 mibC300 对 Synechococcales 和 Oscillatoriales 菌株具有普遍性;mibC132 引物对 具有高度特异性。我们的 mibC 引物显示出优异的扩增效率(100-102%)和相关变量之间的高度相关性(2-MIB 浓度与水 RNA r = 689, < 0.01;沉积物 DNA r = 0.794, < 0.01;和水 DNA r = 0.644, < 0.05;蓝藻细胞密度与水 RNA 和 DNA r = 0.995, < 0.01)。这些引物为鉴定具有 基因(因此具有 2-MIB 产生潜力)的蓝藻菌株和评估 基因表达作为蓝藻大量出现的早期预警提供了有效的工具。