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环境 DNA 评估空气中植物和真菌的季节性多样性。

Environmental DNA assessment of airborne plant and fungal seasonal diversity.

机构信息

Department of Life Sciences, University of Trieste, via Giorgieri 10, I-34127 Trieste, Italy; National Institute of Oceanography and Applied Geophysics - OGS, via Piccard 54, I-34151 Trieste, Italy.

Department of Life Sciences, University of Trieste, via Giorgieri 10, I-34127 Trieste, Italy.

出版信息

Sci Total Environ. 2020 Oct 10;738:140249. doi: 10.1016/j.scitotenv.2020.140249. Epub 2020 Jun 18.

Abstract

Environmental DNA (eDNA) metabarcoding and metagenomics analyses can improve taxonomic resolution in biodiversity studies. Only recently, these techniques have been applied in aerobiology, to target bacteria, fungi and plants in airborne samples. Here, we present a nine-month aerobiological study applying eDNA metabarcoding in which we analyzed simultaneously airborne diversity and variation of fungi and plants across five locations in North and Central Italy. We correlated species composition with the ecological characteristics of the sites and the seasons. The most abundant taxa among all sites and seasons were the fungal genera Cladosporium, Alternaria, and Epicoccum and the plant genera Brassica, Corylus, Cupressus and Linum, the latter being much more variable among sites. PERMANOVA and indicator species analyses showed that the plant diversity from air samples is significantly correlated with seasons, while that of fungi varied according to the interaction between seasons and sites. The results consolidate the performance of a new eDNA metabarcoding pipeline for the simultaneous amplification and analysis of airborne plant and fungal particles. They also highlight the promising complementarity of this approach with more traditional biomonitoring frameworks and routine reports of air quality provided by environmental agencies.

摘要

环境 DNA(eDNA)宏条形码和宏基因组学分析可以提高生物多样性研究中的分类分辨率。直到最近,这些技术才被应用于空气生物学,以针对空气中样本中的细菌、真菌和植物。在这里,我们进行了一项为期九个月的空气生物学研究,应用 eDNA 宏条形码同时分析了意大利北部和中部五个地点的空气中真菌和植物的多样性和变化。我们将物种组成与地点和季节的生态特征进行了关联。所有地点和季节中最丰富的类群是真菌属的枝孢属、交链孢属和层出镰孢属,以及植物属的芸薹属、山毛榉属、柏科植物属和亚麻属,后者在地点间的变化更大。PERMANOVA 和指示物种分析表明,空气样本中的植物多样性与季节显著相关,而真菌多样性则根据季节和地点之间的相互作用而变化。这些结果巩固了一种新的 eDNA 宏条形码分析管道的性能,用于同时扩增和分析空气中的植物和真菌颗粒。它们还突出了这种方法与更传统的生物监测框架以及环境机构提供的空气质量常规报告的有希望的互补性。

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