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澳大拉西亚花粉合作项目:2016-2020 年澳大利亚温带和亚热带东部地区空气中致敏性草花粉的季节性和强度。

The AusPollen partnership project: Allergenic airborne grass pollen seasonality and magnitude across temperate and subtropical eastern Australia, 2016-2020.

机构信息

School of Biomedical Sciences, Centre Immunity and Infection Control, Centre for Environment, Queensland University of Technology, Herston, 4006, Queensland, Australia; Metro North Hospital and Health Service, Office of Research, Herston, 4006, Queensland, Australia.

School of Biomedical Sciences, Centre Immunity and Infection Control, Centre for Environment, Queensland University of Technology, Herston, 4006, Queensland, Australia.

出版信息

Environ Res. 2022 Nov;214(Pt 1):113762. doi: 10.1016/j.envres.2022.113762. Epub 2022 Jun 30.

Abstract

BACKGROUND

Allergic rhinitis affects half a billion people globally, including a fifth of the Australian population. As the foremost outdoor allergen source, ambient grass pollen exposure is likely to be altered by climate change. The AusPollen Partnership aimed to standardize pollen monitoring and examine broad-scale biogeographical and meteorological factors influencing interannual variation in seasonality of grass pollen aerobiology in Australia.

METHODS

Daily airborne grass and other pollen concentrations in four eastern Australian cities separated by over 1700 km, were simultaneously monitored using Hirst-style samplers following the Australian Interim Pollen and Spore Monitoring Standard and Protocols over four seasons from 2016 to 2020. The grass seasonal pollen integral was determined. Gridded rainfall, temperature, and satellite-derived grassland sources up to 100 km from the monitoring site were analysed.

RESULTS

The complexity of grass pollen seasons was related to latitude with multiple major summer-autumn peaks in Brisbane, major spring and minor summer peaks in Sydney and Canberra, and single major spring peaks occurring in Melbourne. The subtropical site of Brisbane showed a higher proportion of grass out of total pollen than more temperate sites. The magnitude of the grass seasonal pollen integral was correlated with pasture greenness, rainfall and number of days over 30 °C, preceding and within the season, up to 100 km radii from monitoring sites.

CONCLUSIONS

Interannual fluctuations in Australian grass pollen season magnitude are strongly influenced by regional biogeography and both pre- and in-season weather. This first continental scale, Southern Hemisphere standardized aerobiology dataset forms the basis to track shifts in pollen seasonality, biodiversity and impacts on allergic respiratory diseases.

摘要

背景

过敏性鼻炎影响着全球五亿多人,其中包括五分之一的澳大利亚人。作为首要的户外过敏原来源,环境草花粉暴露很可能会因气候变化而改变。澳大利亚花粉合作组织旨在标准化花粉监测,并研究广泛的生物地理和气象因素对澳大利亚草花粉气传生物学季节性的年际变化的影响。

方法

在 2016 年至 2020 年的四个季节中,使用 Hirst 风格采样器,在澳大利亚临时花粉和孢子监测标准和协议下,在四个东澳大利亚城市同时监测每日空气中的草和其他花粉浓度,这些城市之间的距离超过 1700 公里。确定草季节性花粉积分。分析了来自监测站点 100 公里范围内的格状降雨、温度和卫星衍生的草原源。

结果

草花粉季节的复杂性与纬度有关,布里斯班有多个主要的夏秋季峰值,悉尼和堪培拉有主要的春季和较小的夏季峰值,而墨尔本只有一个主要的春季峰值。布里斯班的亚热带地点显示出比更温带地点更高的草花粉占总花粉的比例。草季节性花粉积分的大小与季节前和季节内的牧场绿色度、降雨和 30°C 以上天数有关,范围可达监测站点 100 公里半径。

结论

澳大利亚草花粉季节大小的年际波动受到区域生物地理和前季及季内天气的强烈影响。这是第一个大陆规模、南半球标准化的空气生物学数据集,为跟踪花粉季节性、生物多样性和对过敏性呼吸道疾病的影响的变化提供了基础。

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