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Differentiation of Phytophthora infestans Sporangia from Other Airborne Biological Particles by Flow Cytometry

机译:流式细胞术鉴别疫霉疫霉孢子虫与其他机载生物颗粒

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摘要

The ability of two different flow cytometers, the Microcyte (Optoflow) and the PAS-III (Partec), to differentiate sporangia of the late-blight pathogen Phytophthora infestans from other potential airborne particles was compared. With the PAS-III, light scatter and intrinsic fluorescence parameters could be used to differentiate sporangia from conidia of Alternaria or Botrytis spp., rust urediniospores, and pollen of grasses and plantain. Differentiation between P. infestans sporangia and powdery mildew conidia was not possible by these two methods but, when combined with analytical rules evolved by genetic programming methods, could be achieved after staining with the fluorescent brightener Calcofluor white M2R. The potential application of these techniques to the prediction of late-blight epiphytotics in the field is discussed.
机译:比较了两种不同的流式细胞仪,Microcyte(Optoflow)和PAS-III(Partec),将晚疫病病原菌疫霉菌感染的孢子囊与其他潜在的空气传播颗粒区分开。借助PAS-III,可以使用光散射和固有荧光参数来区分孢子囊和 Alternaria Botrytis 子孢子,锈铁锈孢子,草和车前草的花粉。 。 P之间的区别。这两种方法均不可能产生感染性孢子囊和粉状霉菌分生孢子,但结合遗传编程方法得出的分析规则,用荧光增白剂Calcofluor white M2R染色即可实现。讨论了这些技术在该领域晚疫病附生预测中的潜在应用。

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