Airborne DNA: State of the art – Established methods and missing pieces in the molecular genetic detection of airborne microorganisms, viruses and plant particles

可比性 采样(信号处理) 计算机科学 生物多样性 数据科学 鉴定(生物学) 条形码 生物气溶胶 环境DNA 遗传多样性 计算生物学 数据挖掘 遥感 生物 生态学 地理 人口 数学 气象学 人口学 社会学 组合数学 操作系统 滤波器(信号处理) 气溶胶 计算机视觉
作者
C-E Pogner,Célia M. Antunes,Godfrey Apangu,Nicolas Bruffaerts,Sevcan Çelenk,Antonella Cristofori,Nestor González Roldán,Agnieszka Grinn‐Gofroń,Beatriz Lara,Mirela Lika,Donát Magyar,Moisés Martínez‐Bracero,Lucía Muggia,B Muyshondt,David J. O’Connor,Alberto Pallavicini,M A Marchã Penha,Rosa Pérez-Badía,Helena Ribeiro,Ana Rodrigues Costa
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:957: 177439-177439 被引量:6
标识
DOI:10.1016/j.scitotenv.2024.177439
摘要

Bioaerosol is composed of different particles, originating from organisms, or their fragments with different origin, shape, and size. Sampling, analysing, identification and describing this airborne diversity has been carried out for over 100 years, and more recently the use of molecular genetic tools has been implemented. However, up to now there are no established protocols or standards for detecting airborne diversity of bacteria, fungi, viruses, pollen, and plant particles. In this review we evaluated commonalities of methods used in molecular genetic based studies in the last 23 years, to give an overview of applicable methods as well as knowledge gaps in diversity assessment. Various sampling techniques show different levels of effectiveness in detecting airborne particles based on their DNA. The storage and processing of samples, as well as DNA processing, influences the outcome of sampling campaigns. Moreover, the decisions on barcode selection, method of analysis, reference database as well as negative and positive controls may severely impact the results obtained. To date, the chain of decisions, methodological biases and error propagation have hindered DNA based molecular sequencing from offering a holistic picture of the airborne biodiversity. Reviewing the available studies, revealed a great diversity in used methodology and many publications didn't state all used methods in detail, making comparisons with other studies difficult or impossible. To overcome these limitations and ensure genuine comparability across studies, it is crucial to standardize protocols. Publications need to include all necessary information to enable comparison among different studies and to evaluate how methodological choices can impacts the results. Besides standardization, implementing of automatic tools and combining of different analytical techniques, such as real-time evaluation combined with sampling and molecular genetic analysis, could assist in achieving the goal of accurately assessing the actual airborne biodiversity.
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