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A long-term survey unveils strong seasonal patterns in the airborne microbiome coupled to general and regional atmospheric circulations

机译:一项长期调查揭示了机载微生物组与总体和区域大气环流相关的强烈季节性模式

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摘要

Airborne microbes (bacteria, archaea, protists, and fungi) were surveyed over a 7-y period via high-throughput massive sequencing of 16S and 18S rRNA genes in rain and snow samples collected fortnightly at a high-elevation mountain Long-Term Ecological Research (LTER) Network site (LTER-Aigüestortes, Central Pyrenees, Spain). This survey constitutes the most comprehensive mountain-top aerobiology study reported to date. The air mass origins were tracked through modeled back-trajectories and analysis of rain water chemical composition. Consistent microbial seasonal patterns were observed with highly divergent summer and winter communities recurrent in time. Indicative microbial taxa were unveiled as a forensic signature, and ubiquitous taxa were observed as common atmosphere inhabitants, highlighting aerosols as a potentially successful mechanism for global microbial dispersal. Source-tracking analyses identified freshwater, cropland, and urban biomes as the most important sources for airborne bacteria in summer, while marine and forest biomes prevailed in winter, in agreement with air mass retrotrajectories and the prevailing general and regional atmospheric circulation.
机译:通过对高海拔山区每两周收集的雨雪样品中的16S和18S rRNA基因进行高通量大规模测序,在7年内对空气传播的微生物(细菌,古细菌,原生生物和真菌)进行了调查。 (LTER)网络站点(LTER-Aigüestortes,西班牙中比利牛斯省)。该调查构成了迄今为止报道的最全面的山顶航空生物学研究。通过模拟的反向轨迹和对雨水化学成分的分析来追踪空气质量的起源。观察到一致的微生物季节性规律,夏季和冬季的群落在时间上高度不同。指示性微生物分类单元被公开作为法医签名,而普遍存在的分类单元被视为常见的大气居民,突显了气溶胶是全球微生物传播的潜在成功机制。来源跟踪分析确定,夏季淡水,农田和城市生物群落是空气传播细菌的最重要来源,而海洋和森林生物群落在冬季盛行,这与空气质量逆流轨迹以及普遍的和区域性大气环流相一致。

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