Monitoring oomycetes in water: combinations of methodologies used to answer key monitoring questions

Tim R. Pettitt
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Abstract

Monitoring oomycete populations and communities in bodies of water is vital in developing our understanding of this important group of fungus-like protists that contains many serious pathogens of both crops and wild plants. The methodologies involved in monitoring oomycetes are often presented as a developmental hierarchy, progressing from ‘traditional’ culture-based techniques through immunological techniques and basic PCR to qPCR and metagenomics. Here, techniques are assessed according to the roles they can perform in relation to four stages of the monitoring process: capture, detection and identification, viability determination, and quantification. Possible synergies are then considered for the combined use of different techniques in addressing the various needs relating to different questions asked of monitoring, with an emphasis on the continuing value of cultural and immunodiagnostic procedures. Additionally, the exciting future presented by the ongoing development and improvement of metabarcoding and the use of high throughput sequencing techniques in the measurement and monitoring of oomycete inoculum to determine and mitigate plant disease risks is addressed.
监测水中卵菌:用于回答关键监测问题的方法组合
监测水体中的卵菌种群和群落对于加深我们对这种重要的真菌样原生生物的了解至关重要,这种原生生物含有许多作物和野生植物的严重病原体。监测卵菌的方法通常呈现为一个发展层次,从“传统的”基于培养的技术,到免疫学技术和基本PCR,再到qPCR和宏基因组学。在这里,技术是根据它们在监测过程的四个阶段所能发挥的作用进行评估的:捕获、检测和识别、可行性确定和量化。然后考虑可能的协同作用,以联合使用不同的技术来解决与监测提出的不同问题有关的各种需求,重点是培养和免疫诊断程序的持续价值。此外,元条形码的不断发展和改进以及在卵菌接种量的测量和监测中使用高通量测序技术来确定和减轻植物疾病风险的令人兴奋的未来也得到了解决。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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