Long-Range-Transported Bioaerosols Captured in Snow Cover on Mount Tateyama, Japan: Impacts of Asian-Dust Events on Airborne Bacterial Dynamics Relating to Ice-Nucleation Activities
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Copernicus Publications
Abstract
The westerly wind travelling at high altitudes over eastern Asia transports aerosols from the Asian deserts and urban areas to downwind areas such as Japan. These long-range-transported aerosols include not only mineral particles but also microbial particles (bioaerosols), that impact the ice-cloud formation processes as ice nuclei. However, the detailed relations of airborne bacterial dynamics to ice nucleation in high-elevation aerosols have not been investigated. Here, we used the aerosol particles captured in the snow cover at altitudes of 2450 m on Mt Tateyama to investigate sequential changes in the ice-nucleation activities and bacterial communities in aerosols and elucidate the relationships between the two processes. After stratification of the snow layers formed on the walls of a snow pit on Mt Tateyama, snow samples, including aerosol particles, were collected from 70 layers at the lower (winter accumulation) and upper (spring accumulation) parts of the snow wall. The aerosols recorded in the lower parts mainly came from Siberia (Russia), northern Asia and the Sea of Japan, whereas those in the upper parts showed an increase in Asian dust particles originating from the desert regions and industrial coasts of Asia. The snow samples exhibited high levels of ice nucleation corresponding to the increase in Asian dust particles. Amplicon sequencing analysis using 16S rRNA genes revealed that the bacterial communities in the snow samples predominately included plant associated and marine bacteria (phyla Proteobacteria) during winter, whereas during spring, when dust events arrived frequently, the majority were terrestrial bacteria of phyla Actinobacteria and Firmicutes. The relative abundances of Firmicutes (Bacilli) showed a significant positive relationship with the ice nucleation in snow samples. Presumably, Asian dust events change the airborne bacterial communities over Mt Tateyama and carry terrestrial bacterial populations, which possibly induce ice-nucleation activities, thereby indirectly impacting climate change.Description
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Science & Technology, Life Sciences & Biomedicine, Physical Sciences, Environmental Sciences, Meteorology & Atmospheric Sciences, Environmental Sciences & Ecology, Atmospheric Processes, Vertical-Distribution, Biological Particles, Downwind Area, Mineral Dust, Communities, Microorganisms, Aerosols, Diversity, Sequences, 37 Earth Sciences, 3709 Physical Geography and Environmental Geoscience, 13 Climate Action, 0201 Astronomical and Space Sciences, 3701 Atmospheric sciences, 3702 Climate change science
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Atmospheric Chemistry and Physics, ISSN: 1680-7316 (Print); 1680-7324 (Online), European Geosciences Union COPERNICUS GESELLSCHAFT MBH, 18(11), 8155-8171. doi: 10.5194/acp-18-8155-2018
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© 2018 Author(s). This work is distributed under the Creative Commons Attribution 4.0 License. https://creativecommons.org/licenses/by/4.0/
