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Climatic Influences on Cryptoccoccus gattii Populations Vancouver Island Canada 2002–2004

机译:气候变化对加蒂隐球菌种群的影响加拿大温哥华岛2002–2004年

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摘要

Vancouver Island, Canada, reports the world’s highest incidence of Cryptococcus gattii infection among humans and animals. To identify key biophysical factors modulating environmental concentrations, we evaluated monthly concentrations of C. gatti in air, soil, and trees over a 3-year period. The 2 study datasets were repeatedly measured plots and newly sampled plots. We used hierarchical generalized linear and mixed effect models to determine associations. Climate systematically influenced C. gattii concentrations in all environmental media tested; in soil and on trees, concentrations decreased when temperatures were warmer. Wind may be a key process that transferred C. gattii from soil into air and onto trees. C. gattii results for tree and air samples were more likely to be positive during periods of higher solar radiation. These results improve the understanding of the places and periods with the greatest C. gattii colonization. Refined risk projections may help susceptible persons avoid activities that disturb the topsoil during relatively cool summer days.
机译:加拿大温哥华岛报道了人类和动物中加蒂隐球菌感染的全球最高发生率。为了确定调节环境浓度的关键生物物理因素,我们评估了三年内空气,土壤和树木中月桂油的浓度。 2个研究数据集是重复测量的样地和新采样的样地。我们使用分层广义线性和混合效应模型来确定关联。气候系统地影响了所测试的所有环境介质中加蒂梭菌的浓度;温度升高时,土壤和树木中的浓度降低。风可能是将加迪梭菌从土壤转移到空气中并转移到树木上的关键过程。在太阳辐射较高的时期,树木和空气样品的加德纳梭菌结果更有可能是阳性的。这些结果提高了对加蒂梭菌定殖量最大的地方和时期的了解。改进的风险预测可能会帮助易感人群避免在相对凉爽的夏季干扰表土的活动。

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