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首页> 外文期刊>Phytopathology >A High-Throughput Microtiter-Based Fungicide Sensitivity Assay for Oomycetes Using Z '-Factor Statistic
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A High-Throughput Microtiter-Based Fungicide Sensitivity Assay for Oomycetes Using Z '-Factor Statistic

机译:使用Z' - 因子统计的oomycetes的基于高通量的微量滴定滴定滴定滴定剂敏感性测定

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摘要

Current methods to quantitatively assess fungicide sensitivity for a diverse range of oomycetes are slow and labor intensive. Microtiter-based assays can be used to increase throughput. However, many factors can affect their quality and reproducibility. Therefore, efficient and reliable methods for detection of assay quality are desirable. The objective of this study was to develop and validate a robust high-throughput fungicide phenotyping assay based on spectrophotometric quantification of mycelial growth in liquid culture and implementation of quality control with Z' factor and growth curves. Z' factor was used to ensure that each isolate grew enough in the absence of fungicides compared with the negative control, and growth curves were used to ensure active growth at the time of concentration of a fungicide that reduces growth by 50% (EC50) estimation. EC50 and relative growth values were correlated in a side-by-side comparison with values obtained using the amended medium (gold standard) assay. Concordance correlation indicated that the high-throughput assay is accurate but may not be as precise as the amended medium assay. To demonstrate the utility of the high-throughput assay, the sensitivity of 216 oomycete isolates representing four genera and 81 species to mefenoxam and ethaboxam was tested. The assay developed herein will enable high-throughput fungicide phenotyping at a population or community level.
机译:定量评估杀菌剂敏感性的目前的方法是对各种核桃的敏感性缓慢和劳动密集型。基于微量批计的测定可用于增加吞吐量。然而,许多因素会影响其质量和再现性。因此,希望检测测定质量的有效和可靠的方法。本研究的目的是基于液体培养的菌丝体生长的分光光度量化和用Z'因子和生长曲线的质量控制的分光光度量化来发展和验证稳健的高通量杀菌剂表型测定。 Z'因子用于确保在没有阴性对照的情况下,在没有杀真菌剂的情况下,每种分离物在没有杀菌剂的情况下增长,并且使用生长曲线以确保浓缩杀菌剂时的活性生长,从而减少50%(EC50)估计的生长。 EC50和相对生长值与使用修正的培养基(金标准)测定获得的值并排比较相关。一致性相关表明,高通量测定是准确的,但可能与修正的培养基测定值不那么精确。为了证明高通量测定的效用,测试了代表四个属和81种的216个Oomycete分离株对Mefenoxam和乙醛的敏感性。本文开发的测定将在人口或社区层面实现高通量杀菌剂表型。

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