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Comparison of plate count, microscopy, and DNA quantification methods to quantify a biocontrol fungus

机译:比较板数,显微镜和DNA定量方法以定量生防真菌

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DNA quantification has become a conventional method for quantifying filamentous fungi in environments. In this study, quantitative PCR was evaluated as a quantification tool by comparisons with plate count (unit, recoverable population) and microscopy with image analysis (hyphal biomass). The genetic transformant Trichoderma harzianumThzID1-M3 was used as a model organism. A soil microcosm experiment with different numbers of ThzID1-M3 alginate pellets showed that DNA was significantly correlated with biomass (P 0.05), but not with CFU. Temporal change of ThzID1-M3 was monitored at 50 and 500 kPa for a 21-day period. Biomass peaked within the first 5 days, followed by a rapid reduction, while CFU peaked at between days 14 and 21, indicating that CFU mainly originated from dormant propagules. DNA increased along with biomass, and then increased again in accordance with the CFU increase. These results demonstrated that DNA estimates do not strictly correspond to either the population of recoverable propagules or hyphal biomass. However, DNA estimates can reflect relative changes of active and/or dormant propagules although they are unable to distinguish between them. (C) 2015 Elsevier B.V. All rights reserved.
机译:DNA定量已经成为定量环境中丝状真菌的常规方法。在这项研究中,定量PCR通过与板数(单位,可恢复种群)进行比较,并通过显微镜与图像分析(菌丝生物量)进行比较,以此作为定量工具。将遗传转化体哈茨木霉ThzID1-M3用作模型生物。用不同数量的ThzID1-M3海藻酸盐沉淀物进行的土壤微观实验表明,DNA与生物量显着相关(P <0.05),而与CFU无关。 ThzID1-M3的时间变化在50和500 kPa下进行了21天的监测。生物量在前5天内达到峰值,然后迅速减少,而CFU在第14到21天之间达到峰值,表明CFU主要源自休眠繁殖体。 DNA与生物量一起增加,然后根据CFU的增加再次增加。这些结果表明,DNA估计值并不严格对应于可回收繁殖体或菌丝生物量。但是,DNA估计值虽然不能区分活跃的和/或休眠的繁殖体,但可以反映其相对变化。 (C)2015 Elsevier B.V.保留所有权利。

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