Investigation of spatial and temporal variations of airborne Poaceae, Myrtaceae and Cupressaceae pollen and Alternaria spores in Sydney, Australia, 2017–2020

IF 2.2 3区 环境科学与生态学 Q2 BIOLOGY
Johanna Jetschni, Jane Al Kouba, Paul J. Beggs, Susanne Jochner-Oette
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Abstract

There is a need for information on pollen exposure to assess allergy risk. Monitoring of aeroallergens in a city is usually limited to the use of a single trap for the whole area. While a single trap provides enough information on background pollen concentration for the area, varying pollen exposure across different urban environments, however, is not considered. In this study, we analysed aerobiological data of three pollen seasons (2017–2020) recorded with a volumetric pollen trap in Sydney, Australia. In order to assess spatial differences in pollen exposure across the city, we installed ten gravimetric traps recording pollen deposition for eight weeks during the summer of 2019/2020. We considered the influence of meteorological variables, land use, urbanisation and distance to the sea. Our results showed differences in pollen season characteristics across the three analysed seasons and correlations with meteorological parameters. Considering all years, we found for Poaceae and Alternaria the strongest positive correlation with mean temperature and for Myrtaceae and Cupressaceae with maximum temperature. Likewise, there were negative correlations with humidity (Myrtaceae, Cupressaceae, Alternaria) and precipitation (Myrtaceae, Cupressaceae). Days with medically relevant pollen and spore concentrations varied between years and we recorded the highest amount in 2017/2018 for Poaceae and Alternaria and in 2019/2020 for Myrtaceae. In addition, we found spatial and temporal variations of pollen deposition. However, we did not detect significant correlations between pollen deposition and land use, which can be attributable to drought conditions prior to the sampling campaign and the temporal setting in the pollen season. This study highlights the importance of continuous volumetric aerobiological monitoring as well as the assessment of pollen exposure at several locations across a large urban area.

Abstract Image

2017-2020年澳大利亚悉尼地区禾科、桃金桃科和柏科空气中花粉和Alternaria孢子的时空变化特征
需要花粉暴露的信息来评估过敏风险。对城市空气过敏原的监测通常仅限于对整个地区使用单个诱捕器。虽然单个诱捕器提供了该地区背景花粉浓度的足够信息,但没有考虑不同城市环境中不同的花粉暴露。在这项研究中,我们分析了澳大利亚悉尼用体积式花粉捕捉器记录的三个花粉季节(2017-2020)的空气生物学数据。为了评估整个城市花粉暴露的空间差异,我们安装了十个重力阱,记录2019/2020年夏天八周的花粉沉积。我们考虑了气象变量、土地利用、城市化和离海距离的影响。我们的结果显示了三个分析季节花粉季节特征的差异以及与气象参数的相关性。考虑到所有年份,我们发现Poceae和Alternaria与平均温度的正相关最强,Myrtaceae和Cupressaceae与最高温度的正相关性最强。同样,与湿度(杨梅科、柏科、链格孢属)和降水(杨梅科和柏科)呈负相关。与医学相关的花粉和孢子浓度的天数因年份而异,我们在2017/2018年记录到Poceae和Alternaria的最高数量,在2019/2020年记录到Myrtaceae的最高数量。此外,我们还发现了花粉沉积的空间和时间变化。然而,我们没有检测到花粉沉积和土地利用之间的显著相关性,这可能归因于采样活动之前的干旱条件和花粉季节的时间背景。这项研究强调了连续体积空气生物学监测以及评估大城市地区几个地点花粉暴露的重要性。
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来源期刊
Aerobiologia
Aerobiologia 环境科学-环境科学
CiteScore
4.50
自引率
15.00%
发文量
37
审稿时长
18-36 weeks
期刊介绍: Associated with the International Association for Aerobiology, Aerobiologia is an international medium for original research and review articles in the interdisciplinary fields of aerobiology and interaction of human, plant and animal systems on the biosphere. Coverage includes bioaerosols, transport mechanisms, biometeorology, climatology, air-sea interaction, land-surface/atmosphere interaction, biological pollution, biological input to global change, microbiology, aeromycology, aeropalynology, arthropod dispersal and environmental policy. Emphasis is placed on respiratory allergology, plant pathology, pest management, biological weathering and biodeterioration, indoor air quality, air-conditioning technology, industrial aerobiology and more. Aerobiologia serves aerobiologists, and other professionals in medicine, public health, industrial and environmental hygiene, biological sciences, agriculture, atmospheric physics, botany, environmental science and cultural heritage.
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