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Advanced Diagnostic Approaches for Necrotrophic Fungal Pathogens of Temperate Legumes With a Focus on Botrytis spp.

机译:温和的豆科植物坏死性真菌病原体的高级诊断方法重点是葡萄孢属。

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摘要

Plant pathogens reduce global crop productivity by up to 40% per annum, causing enormous economic loss and potential environmental effects from chemical management practices. Thus, early diagnosis and quantitation of the causal pathogen species for accurate and timely disease control is crucial. Botrytis Gray Mold (BGM), caused by Botrytis cinerea and B. fabae, can seriously impact production of temperate grain legumes separately or within a complex. Accordingly, several immunogenic and molecular probe-type protocols have been developed for their diagnosis, but these have varying levels of species-specificity, sensitivity and consequent usefulness within the paddock. To substantially improve speed, accuracy and sensitivity, advanced nanoparticle-based biosensor approaches have been developed. These novel methods have made enormous impact toward disease diagnosis in the medical sciences and offer potential for transformational change within the field of plant pathology and disease management, with early and accurate diagnosis at the point-of-care in the field. Here we review several recently developed diagnostic tools that build on traditional approaches and are available for pathogen diagnosis, specifically for Botrytis spp. diagnostic applications. We then identify the specific gaps in knowledge and current limitations to these existing tools.
机译:植物病原体每年使全球农作物生产率降低多达40%,从而造成巨大的经济损失,并因化学管理措施而对环境造成潜在影响。因此,对病原体的早期诊断和定量分析对于准确,及时地控制疾病至关重要。由灰葡萄孢菌和短芽孢杆菌引起的灰霉菌灰霉病(BGM)会严重影响单独或在复合物中的温性豆类的生产。因此,已经开发了几种免疫原性和分子探针型方案用于其诊断,但是这些方案在围场内具有不同水平的物种特异性,敏感性和随之而来的有用性。为了显着提高速度,准确性和灵敏度,已经开发了先进的基于纳米颗粒的生物传感器方法。这些新颖的方法对医学领域的疾病诊断产生了巨大影响,并为在植物病理学和疾病管理领域内进行变革性变革提供了潜力,并且可以在该领域的现场即时诊断。在这里,我们将回顾基于传统方法开发的几种最新开发的诊断工具,这些工具可用于病原体诊断,特别是对于葡萄孢属。诊断应用程序。然后,我们确定知识的特定差距以及这些现有工具的当前局限性。

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