Optimizing an integrated biovigilance toolbox to study the spatial distribution and dynamic changes of airborne mycobiota, with a focus on cereal rust fungi in western Canada

IF 5.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Ecology Resources Pub Date : 2024-06-06 DOI:10.1111/1755-0998.13983
Wen Chen, Nathaniel Newlands, Sarah Hambleton, André Laroche, Seyyed Mohammadreza Davoodi, Guus Bakkeren
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Abstract

In the face of evolving agricultural practices and climate change, tools towards an integrated biovigilance platform to combat crop diseases, spore sampling, DNA diagnostics and predictive trajectory modelling were optimized. These tools revealed microbial dynamics and were validated by monitoring cereal rust fungal pathogens affecting wheat, oats, barley and rye across four growing seasons (2015–2018) in British Columbia and during the 2018 season in southern Alberta. ITS2 metabarcoding revealed disparity in aeromycobiota diversity and compositional structure across the Canadian Rocky Mountains, suggesting a barrier effect on air flow and pathogen dispersal. A novel bioinformatics classifier and curated cereal rust fungal ITS2 database, corroborated by real-time PCR, enhanced the precision of cereal rust fungal species identification. Random Forest modelling identified crop and land-use diversification as well as atmospheric pressure and moisture as key factors in rust distribution. As a valuable addition to explain observed differences and patterns in rust fungus distribution, trajectory HYSPLIT modelling tracked rust fungal urediniospores' northeastward dispersal from the Pacific Northwest towards southern British Columbia and Alberta, indicating multiple potential origins. Our Canadian case study exemplifies the power of an advanced biovigilance toolbox towards developing an early-warning system for farmers to detect and mitigate impending disease outbreaks.

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优化综合生物警戒工具箱,研究空气中霉菌生物群的空间分布和动态变化,重点是加拿大西部的谷物锈病真菌。
面对不断发展的农业实践和气候变化,对用于防治作物病害的综合生物警戒平台、孢子采样、DNA 诊断和预测轨迹建模工具进行了优化。这些工具揭示了微生物动态,并通过监测影响不列颠哥伦比亚省小麦、燕麦、大麦和黑麦的谷物锈病真菌病原体在四个生长季(2015-2018 年)和阿尔伯塔省南部 2018 年的生长季进行了验证。ITS2 代谢编码揭示了加拿大落基山脉各地气生生物群多样性和组成结构的差异,表明气流和病原体传播存在屏障效应。新型生物信息学分类器和经整理的谷锈真菌 ITS2 数据库通过实时 PCR 验证,提高了谷锈真菌物种鉴定的精确度。随机森林模型确定了作物和土地使用多样化以及大气压力和湿度是锈病分布的关键因素。作为解释所观察到的锈病真菌分布差异和模式的重要补充,轨迹 HYSPLIT 模型追踪了锈病真菌urediniospores 从太平洋西北部向不列颠哥伦比亚省南部和阿尔伯塔省的东北方向扩散,表明了多个潜在的起源地。我们的加拿大案例研究体现了先进的生物警戒工具箱在为农民开发预警系统以检测和缓解即将爆发的疾病方面的强大功能。
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来源期刊
Molecular Ecology Resources
Molecular Ecology Resources 生物-进化生物学
CiteScore
15.60
自引率
5.20%
发文量
170
审稿时长
3 months
期刊介绍: Molecular Ecology Resources promotes the creation of comprehensive resources for the scientific community, encompassing computer programs, statistical and molecular advancements, and a diverse array of molecular tools. Serving as a conduit for disseminating these resources, the journal targets a broad audience of researchers in the fields of evolution, ecology, and conservation. Articles in Molecular Ecology Resources are crafted to support investigations tackling significant questions within these disciplines. In addition to original resource articles, Molecular Ecology Resources features Reviews, Opinions, and Comments relevant to the field. The journal also periodically releases Special Issues focusing on resource development within specific areas.
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