globalchange  > 全球变化的国际研究计划
DOI: 10.3390/rs11141671
WOS记录号: WOS:000480527800041
论文题名:
Variability and Geographical Origin of Five Years Airborne Fungal Spore Concentrations Measured at Saclay, France from 2014 to 2018
作者: Sarda-Esteve, Roland1; Baisnee, Dominique1; Guinot, Benjamin2; Sodeau, John3,4; O'; Connor, David5; Belmonte, Jordina6,7; Besancenot, Jean-Pierre8; Petit, Jean-Eudes1; Thibaudon, Michel8; Oliver, Gilles8; Sindt, Charlotte8; Gros, Valerie1
通讯作者: Sarda-Esteve, Roland
刊名: REMOTE SENSING
ISSN: 2072-4292
出版年: 2019
卷: 11, 期:14
语种: 英语
英文关键词: Airborne fungal spores ; meteorological factors ; source receptor model ; pathogen transport ; polluted environments ; hydrological stress
WOS关键词: METEOROLOGICAL FACTORS ; CLIMATE-CHANGE ; AEROSOL ; PARTICLES ; WIND ; REPRODUCIBILITY ; ALTERNARIA ; DIVERSITY ; POLLUTION ; WEATHER
WOS学科分类: Remote Sensing
WOS研究方向: Remote Sensing
英文摘要:

Airborne fungal spores (AFS) represent the major fraction of primary biological aerosol particles (PBAPs), and they are studied worldwide largely due to their important role within the Earth system. They have an impact on climate and human health, and they contribute to the propagation of diseases. As their presence in the air depends largely on studied ecosystems, a spore trap was used to monitor their atmospheric concentrations from 2014 to December 2018 in Saclay, a suburban area in the megacity of Paris. The main objective of this work was: (1) to understand the atmospheric variability of AFS in relation to different variables such as meteorological factors, agricultural practice, and (2) to identify their geographical origin by using a source receptor model. During our period of observation, 30 taxa have been identified under a light microscope. In order of importance, Ascospores, Cladosporium, Basidiospores, Tilletiopsis, Alternaria were found to be the most abundant types respectively (50.8%, 33.6%, 7.6%, 1.8%, and 1.3%) accounting for 95% of the atmospheric concentrations. We observed a general decrease associated with a strong interannual variability. A bimodal seasonal cycle was identified with a first maximum in July and a second in October. The main parameters driving the atmospheric concentration are temperature and precipitation. The daily variability is strongly activated by successive periods of hot weather and rainfall, multiplying the concentration by a factor of 1000 in less than 12 hours. Results from the source receptor model ZeFir point out unambiguous different origins of AFS due to specific sources impacting the observation site. Our study also indicated that a hydrological stress has a direct effect on the daily concentrations. This last point should be taken into account for every stressed ecosystem studied in a global warming context. This is particularly important for Mediterranean areas where water is a key control of the growth and dispersion of fungal spores.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/143033
Appears in Collections:全球变化的国际研究计划

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作者单位: 1.UVSQ, CNRS, CEA, Unite Mixte Rech,LSCE,IPSL, F-91191 Gif Sur Yvette, France
2.Univ Toulouse III, CNRS, UPS, Lab Aerol, F-31400 Toulouse, France
3.Univ Coll Cork, Sch Chem, Cork T12 YN60, Ireland
4.Univ Coll Cork, Environm Res Inst, Cork T12 YN60, Ireland
5.Technol Univ Dublin, Dublin D08 NF82, Ireland
6.Univ Autonoma Barcelona, Dept Biol Anim Biol Vegetal & Ecol, Cerdanyola Del Valles 08193, Spain
7.Univ Autonoma Barcelona, ICTA, Cerdanyola Del Valles 08193, Spain
8.Reseau Natl Surveillance Aerobiol, F-69690 Brussieu, France

Recommended Citation:
Sarda-Esteve, Roland,Baisnee, Dominique,Guinot, Benjamin,et al. Variability and Geographical Origin of Five Years Airborne Fungal Spore Concentrations Measured at Saclay, France from 2014 to 2018[J]. REMOTE SENSING,2019-01-01,11(14)
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