The ice nucleation ability of one of the most abundant types of fungal spores found in the atmosphere
نویسندگان
چکیده
Recent atmospheric measurements show that biological particles are a potentially important class of ice nuclei. Types of biological particles that may be good ice nuclei include bacteria, pollen and fungal spores. We studied the ice nucleation properties of water droplets containing fungal spores from the genus Cladosporium, one of the most abundant types of spores found in the atmosphere. For water droplets containing a Cladosporium spore surface area of ∼217 μm2 (equivalent to ∼5 spores with average diameters of 3.2 μm ), 1% of the droplets froze by −28.5 C and 10% froze by –30.1 C. However, there was a strong dependence on freezing temperature with the spore surface area of Cladosporium within a given droplet. Mean freezing temperatures for droplets containing 1–5 spores are expected to be approximately −35.1± 2.3 C (1σ S. D.). Atmospheric ice nucleation on spores of Cladosporium sp., or other spores with similar surface properties, thus do not appear to explain recent atmospheric measurements showing that biological particles participate as atmospheric ice nuclei. The poor ice nucleation ability of Cladosporium sp. may be attributed to the surface which is coated with hydrophobins (a class of hydrophobic proteins that appear to be widespread in filamentous fungi). Given the ubiquity of hydrophobins on spore surfaces, the current study may be applicable to many fungal species of atmospheric importance. Correspondence to: A. K. Bertram ([email protected])
منابع مشابه
Ice nucleation by particles immersed in supercooled cloud dropletsw
The formation of ice particles in the Earth’s atmosphere strongly affects the properties of clouds and their impact on climate. Despite the importance of ice formation in determining the properties of clouds, the Intergovernmental Panel on Climate Change (IPCC, 2007) was unable to assess the impact of atmospheric ice formation in their most recent report because our basic knowledge is insuffici...
متن کاملIce nucleation by particles immersed in supercooled cloud droplets.
The formation of ice particles in the Earth's atmosphere strongly affects the properties of clouds and their impact on climate. Despite the importance of ice formation in determining the properties of clouds, the Intergovernmental Panel on Climate Change (IPCC, 2007) was unable to assess the impact of atmospheric ice formation in their most recent report because our basic knowledge is insuffici...
متن کاملThe contribution of fungal spores and bacteria to regional and global aerosol number and ice nucleation immersion freezing rates
Primary biological aerosol particles (PBAPs) may play an important role in aerosol–climate interactions, in particular by affecting ice formation in mixed phase clouds. However, the role of PBAPs is poorly understood because the sources and distribution of PBAPs in the atmosphere are not well quantified. Here we include emissions of fungal spores and bacteria in a global aerosol microphysics mo...
متن کاملبررسی بیوآئروسل ها در هوای معابر شهری و روستایی دامغان در زمستان 1390
Abstract Introduction: fungi exist all over the world and about as much as flowering plants are abundant and diverse. They reproduce through spores. Fungi can grow at body temperature and may easily infect susceptible people and make some infections. The study of fungal spores is one of the important indicators of biological air quality. So, it defined as the purpose of this study. Metho...
متن کاملDiversity of arbuscular mycorrhizal fungal spores associated with Sorbus torminalis (L.) Crantz
This study aimed to investigate the diversity and types of arbuscular mycorrhizal fungi (AMF) associated with the wild service tree, Sorbus torminalis (L.) Crantz in spring and autumn followed by identifying similarities among the different study sites. Three different sites were selected including Kheiroud, Lalis, and Tarkin, in the Hyrcanian forests, north of Iran. Five rhizosphere soil sampl...
متن کامل