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Airborne Cladosporium and Alternaria spore concentrations through 26 years in Copenhagen, Denmark

机译:丹麦哥本哈根的26岁,空中克拉孢孢子和alertaria孢子浓度

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Cladosporium spp. and Alternaria spp. spores are dominating the airspora of Denmark. Currently, little is known about the influence of climate change on the fungal spore abundance in the air. The aim of this study was to examine temporal changes in airborne Alternaria and Cladosporium spores over 26 years. This is the first report of long-term airborne Cladosporium spore occurrence in Denmark. Air spore concentrations were obtained with a Burkard volumetric spore sampler placed in Copenhagen, Denmark, during June-September, 1990-2015. The highest monthly Spore integrals (SIn) for Alternaria were measured in August, whereas for Cladosporium July SIn was nearly as high as August SIn. Average Alternaria seasonal spore integral (SSIn) was 8615 Spores day m(-3), while average 3-month (July-September) Cladosporium SIn was 375,533 Spores day m(-3). Despite increasing annual temperature and decreasing relative humidity, we found a decreasing trend for Alternaria seasonal SIn (Slope = - 277, R-2 = 0.38, p 0.05), Alternaria (Slope = - 31, R-2 = 0.27, p 0.05) and Cladosporium (Slope = - 440, R-2 = 0.23, p 0.05) annual peak concentrations. We did not find any statistically significant trends for airborne Alternaria seasonal characteristics and duration, and likewise for Cladosporium 3-month SIn and peak concentration dates. Mean temperature was the main meteorological factor affecting daily spore concentrations. However, effect of meteorological parameters on daily spore concentrations was stronger for Cladosporium (R-2 = 0.41) than for Alternaria (R-2 = 0.21). Both genera had diurnal peaks during the day hours, earlier for Cladosporium (11:30-14:30) and later for Alternaria (15:00-19:00). Although Alternaria and Cladosporium daily concentrations were moderately correlated (Spearman's correlation coefficient: r(s) = 0.55, p 0.05), their overall annual indices were different, which indicates different sources and different factors determining spore release. We explain temporal decreasing trends in Alternaria SSIn by growing urbanisation around Copenhagen and by changes in agricultural practices.
机译:Cladosporium spp。和alertaria spp。孢子正在占据丹麦的Airspora。目前,对气候变化对空气中真菌孢子丰富的影响很少。本研究的目的是在26年内检查空中alertaria和囊孢子孢子的时间变化。这是丹麦长期空气囊孢子孢子发生的第一份报告。在1990 - 2015年6月 - 9月,1990 - 2015年6月,用伯克德体积孢子采样器获得空气孢子浓度。 8月份测量了alertaria的最高月度孢子积分(SIN),而对于克拉多西亚群岛血清孢子罪几乎高达8月份。平均alertaria季节性孢子积分(SSIN)是8615孢子日M(-3),而平均3个月(7月至9月)族孢菌罪是375,533孢子患者米(-3)。尽管年度温度和相对湿度的降低,但我们发现了alterararia季节性的降低趋势(斜率= - 277,r-2 = 0.38,p <0.05),alertaria(斜率= - 31,r-2 = 0.27,p < 0.05)和囊孢子(斜率= - 440,R-2 = 0.23,P <0.05)年峰浓度。我们没有找到空中alertararia季节性特征和持续时间的任何统计学意义的趋势,同样适用于囊孢子3个月的罪和峰值浓度日期。平均温度是影响日常孢子浓度的主要气象因素。然而,对于宫孢子(R-2 = 0.41),气象参数对日常孢子浓度的影响比对于alertaria(R-2 = 0.21)较强。白天在白天几小时有昼夜峰,术前几个小时(11:30-14:30),后来用于alertaria(15:00-19:00)。虽然alertaria和cladosporium每日浓度适度相关(Spearman的相关系数:r(s)= 0.55,p <0.05),但其整体年度指数不同,这表明了确定孢子释放的不同来源和不同因素。我们解释了哥本哈根周围的城市化以及农业实践的变化,解释了Alternaria Ssin的时间下降趋势。

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