首页> 外文期刊>Journal of Applied Phycology >Establishment and field applications of real-time PCR methods for the quantification of potential MIB-producing cyanobacteria in aquatic systems
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Establishment and field applications of real-time PCR methods for the quantification of potential MIB-producing cyanobacteria in aquatic systems

机译:实时PCR方法在水生系统中可能产生MIB的蓝细菌定量的建立和现场应用

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摘要

2-Methylisoborneol (MIB), along with geosmin, has been frequently associated with taste and odor (T&O) events in waters, and cyanobacterial species were considered the main producers in freshwater ecosystems. The detection and quantification of genes responsible for the synthesis of these odors on-site could be valuable for the prediction and treatment of T&O. In this study, SYBR Green and TaqMan real-time quantitative polymerase chain reaction (qPCR) assays were established on the basis of conserved regions in cyanobacterial MIB cyclase gene (mic) and applied to the quantification of potential MIB-producing cyanobacteria in waters. These two qPCR assays showed the prescribed values of amplification efficiency (0.976 and 1.023, respectively) with linearity (R (2) > 0.99) in the range of 10(1) to 10(7) mic copies. Examination on environmental samples and cyanobacterial cultures indicated that qPCRs were rarely inhibited by background biomass, and the limit of quantification was at the level of 10(3) mic copies L-1 in natural waters. The seasonal variations of mic abundances in Lushui Reservoir, Donghu Lake, and Qinghai Lake of China were successfully quantified using the two qPCR protocols and indicated the applicability of these assays in field monitoring. Regression analysis revealed the positive correlation between mic abundance and MIB concentration, but no significant linear correlation was found between MIB-producing cyanobacteria and total cyanobacteria in investigated waters. The qPCR assays developed in this study could rapidly and reliably detect and quantify the abundance of potential cyanobacterial MIB producers, thereby providing a valuable tool for the prediction and early detection of T&O events.
机译:2-甲基异冰片醇(MIB)和土臭素经常与水中的味觉和气味(T&O)事件相关,蓝藻菌种被认为是淡水生态系统的主要生产者。在现场检测和量化负责这些气味合成的基因可能对T&O的预测和治疗有价值。在这项研究中,SYBR Green和TaqMan实时定量聚合酶链反应(qPCR)分析方法是在蓝藻MIB环化酶基因(mic)的保守区域的基础上建立的,并用于量化水中可能产生MIB的蓝藻的数量。这两个qPCR分析显示了规定的扩增效率值(分别为0.976和1.023),线性度(R(2)> 0.99)在10(1)到10(7)mic拷贝范围内。对环境样品和蓝细菌培养物的检查表明,qPCR很少受到背景生物量的抑制,并且在天然水中的定量极限为10(3)个麦克风拷贝L-1。利用这两种qPCR方案成功定量了中国hui水水库,东湖和青海湖中微生物丰度的季节变化,并表明了这些测定法在现场监测中的适用性。回归分析显示,在调查水域中,微生物丰度与MIB浓度呈正相关,但在产生MIB的蓝细菌与总蓝细菌之间未发现显着的线性相关。在这项研究中开发的qPCR分析可以快速,可靠地检测和定量潜在的蓝藻MIB生产者的数量,从而为T&O事件的预测和早期检测提供了有价值的工具。

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