Airborne fungal spores in an industrial area: seasonal and diurnal periodicity

Aerobiologia ◽  
1998 ◽  
Vol 14 (1) ◽  
pp. 59-67 ◽  
Author(s):  
Bijaya Kumar Nayak ◽  
Anima Nanda ◽  
Narayan Behera
2012 ◽  
Vol 59 (1) ◽  
pp. 395-404 ◽  
Author(s):  
Idalia Kasprzyk

Airborne fungal spores were monitored in 2001-2002 in Rzeszów (town) and its neighborhood. The aim of investigations was to ascertain if there were differences in diurnal variations of airborne fungal spores concentration between town and rural area. The sampling was carried out using volumetric method. Traps were located at the same heights - app. 12 m. Airborne spores were sampled continuously. Microscopical slides were prepared for each day. Analysis was carried out on one longitudinal band of 48 mm long divided into 24 segments corresponding following hours of day. The results were expressed as mean number of fungal spores per cubic meter per 24 hours. For this survey, five geni of allergenic fungi were selected: <i>Alternaria</i>, <i>Botrytis</i>, <i>Cladosporium</i>, <i>Epicoccum</i>, <i>Ganoderma</i>. The concentrations of their airborne spores were high or very high. It was calculated theoretical day, where the hourly count was the percentage mean of number of spores at that time every chosen day without rainfall from 2001 and 2001 years. The diurnal periodicity of <i>Alternaria</i>, <i>Cladosporium</i>, <i>Epicoccum</i> and <i>Ganoderma</i> showed one peak, while <i>Botrytis</i> two. Anamorphic spores peaked in the afternoon, while their minima occurred in the morning. The highest concentrations of <i>Ganoderma</i> basidiospores were at down or at night, but minima during the day. There were no clear differences in the peak values between two studied sites. The results indicate that maximum concentrations of all spores generally occurred a few hour earlier in the rural area than in the town. Probably, in the rural area airborne spores came from many local sources and their diurnal periodicity reflected rhythm of spore liberation. Towns are characterized by specific microclimate with higher temperature and wind blowing to the centre. In Rzeszów fungal spores could be transported outside and carried out by wind from distant sources. This study showed, among others, that habitat conditions are an important factors influenced diurnal periodicity of airborne fungal spores.


Author(s):  
Raghdaa K. Fayad ◽  
Roda F. Al-Thani ◽  
Fatima A. Al-Naemi ◽  
Mohammed H. Abu-Dieyeh

This research was conducted to investigate the dynamics of airborne fungi using viable culture collection and in respect to different abiotic variables, including seasonal and intra-diurnal variations. A gravimetric method was used to sample airborne fungal deposition on potato dextrose agar plates on alternate days, for a year between April 2015 to March 2016. From 176 settle plate exposures, a total of 1197 mould and 283 yeast colony-forming units (CFU), 21 genera and 62 species were retrieved. The highest fungal spore count was recorded in February 2016, whereas the lowest count occurred in August 2015. The main constituents of the fungal airspora were attributed to Cladosporium (60.2%), Aspergillus (10.4%), Fusarium (9.4%), Alternaria (8.5%), and Ganoderma spp. (2.3%). Temperature was negatively correlated with total colony count (r = −0.231, p ≤ 0.05) or species richness (r = −0.267, p ≤ 0.001), while wind speed was positively correlated with total colony count (r = 0.484, p ≤ 0.001) or species richness (r = 0.257, p ≤ −0.001). The highest dispersal of fungal spores was obtained at 18:00, whereas the lowest fungal spores release was recorded at 00:00 (midnight). There were no significant differences in species composition and richness of the airborne fungal population between two study sites, the Industrial area and Qatar University Campus. The count of Alternaria spp. and Fusarium spp. were significantly higher at the Industrial area site, which corresponds to a higher CO2 level than the Qatar University site. This study lays the foundation for future work to assess the implications of such aeromycological data on public health.


Aerobiologia ◽  
2004 ◽  
Vol 20 (1) ◽  
pp. 75-81 ◽  
Author(s):  
Padmanabhan S. Jothish ◽  
Themath Soman Nayar

2004 ◽  
Vol 30 (6) ◽  
pp. 381-385 ◽  
Author(s):  
Rafael Martínez-Girón ◽  
Andrés Ribas-Barceló ◽  
M Teresa García-Miralles ◽  
Dolores López-Cabanilles ◽  
M Luisa Tamargo-Peláez ◽  
...  

Aerobiologia ◽  
2020 ◽  
Author(s):  
Idalia Kasprzyk ◽  
Agnieszka Grinn-Gofroń ◽  
Agata Ćwik ◽  
Katarzyna Kluska ◽  
Paloma Cariñanos ◽  
...  

Abstract Urban green spaces, especially urban parks, are essential for the proper functioning of cities, but they can be a serious source of airborne fungal spores. Aerobiological monitoring was carried out in urban parks of different typology to estimate the risk associated with fungal spores for citizens. Volumetric method was applied with the use of portable Burkard Sampler. In the air of the studied parks, the most dominant spores are strong allergenic or considered as potentially allergenic. Cladosporium spores were found in enormous concentrations in all studied parks, and it affected the low biodiversity of fungal spores in the parks. Compared to Cladosporium, concentrations of Alternaria spores in the air were several dozen times lower, but still a risk for people who are allergic. The fungal spores spectra and their seasonal occurrence in each park were similar. The highest similarities in the patterns of the season were found in the case of Cladosporium, Alternaria, Epicoccum, and the lowest in the case of Torula and Drechslera type. Due to the fact that allergy sufferers are most often polysensitized, the period when they should limit long visits in the urban parks is July–August, when the concentration of allergenic fungal spores of many taxa is the highest.


2019 ◽  
Vol 665 ◽  
pp. 513-520 ◽  
Author(s):  
Carolina Virginia Temperini ◽  
María Luisa Franchi ◽  
Martha Elizabeth Benavides Rozo ◽  
Mariana Greco ◽  
Alejandro Guillermo Pardo ◽  
...  

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