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Potential impact of climate change on fungal distributions: analysis of 2 years of contrasting weather in the UK

机译:气候变化对真菌分布的潜在影响:英国2年对比天气的分析

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The impact of climate change on fungal growth and spore production is less well documented than for allergenic pollen grains, although similar implications for respiratory tract diseases in humans occur. Fungal spores are commonly described as either "dry" or "wet" according to the type of weather associated with their occurrence in the air. This study examined the distribution of selected fungal spores (Alternaria spp., Cladosporium spp., Didymella spp., Epicoccum spp., Leptosphaeria spp. and rusts) occurring in the West Midlands of UK during 2 years of contrasting weather. Spore specimens were collected using a 7-day volumetric air sampler and then analysed with the aid of light microscopy. Distributions of spores were then studied using normality tests and Mann-Whitney U test, while relationships with meteorological parameters were investigated using Spearman's rank test and angular-linear correlation for wind direction analysis. Our results showed that so-called wet spores were more sensitive to the weather changes showing statistically significant differences between the 2 years of study, in contrast to "dry" spores. We predict that in following years we will observe accelerated levels in allergenic fungal spore production as well as changes in species diversity. This study could be a starting point to revise the grouping system of fungal spores as either "dry" or "wet" types and their response to climate change.
机译:尽管对人类呼吸道疾病有相似的影响,但气候变化对真菌生长和孢子产生的影响没有对致敏花粉粒的记录。真菌孢子通常根据与它们在空气中发生有关的天气类型而被描述为“干”或“湿”。这项研究检查了在对比天气的两年内在英国西中部地区发生的某些真菌孢子(Alternaria spp。,Cladosporium spp。,Didymella spp。,Epicoccum spp。,Leptosphaeria spp。和铁锈)的分布。使用7天的体积空气采样器收集孢子标本,然后借助光学显微镜进行分析。然后使用正态性检验和Mann-Whitney U检验研究孢子的分布,同时使用Spearman秩检验和角线性相关性研究风向分析与孢子的分布。我们的结果表明,与“干”孢子相比,所谓的湿孢子对天气变化更为敏感,显示了在2年的研究之间的统计学差异。我们预测,在接下来的几年中,我们将观察到过敏性真菌孢子产生的加速水平以及物种多样性的变化。这项研究可能是修订真菌孢子分组系统的起点,该分组系统为“干”或“湿”类型及其对气候变化的响应。

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