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Selenium deficiency risk predicted to increase under future climate change

机译:未来气候变化将导致硒缺乏风险增加

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摘要

Deficiencies of micronutrients, including essential trace elements, affect up to 3 billion people worldwide. The dietary availability of trace elements is determined largely by their soil concentrations. Until now, the mechanisms governing soil concentrations have been evaluated in small-scale studies, which identify soil physicochemical properties as governing variables. However, global concentrations of trace elements and the factors controlling their distributions are virtually unknown. We used 33,241 soil data points to model recent (1980–1999) global distributions of Selenium (Se), an essential trace element that is required for humans. Worldwide, up to one in seven people have been estimated to have low dietary Se intake. Contrary to small-scale studies, soil Se concentrations were dominated by climate–soil interactions. Using moderate climate-change scenarios for 2080–2099, we predicted that changes in climate and soil organic carbon content will lead to overall decreased soil Se concentrations, particularly in agricultural areas; these decreases could increase the prevalence of Se deficiency. The importance of climate–soil interactions to Se distributions suggests that other trace elements with similar retention mechanisms will be similarly affected by climate change.
机译:微量营养素的缺乏,包括必需的微量元素,影响到全世界30亿人口。膳食中微量元素的膳食利用率在很大程度上取决于其土壤浓度。到目前为止,在小规模研究中已经评估了控制土壤浓度的机制,这些研究确定了土壤的理化性质为控制变量。然而,微量元素的全球集中度和控制其分布的因素实际上是未知的。我们使用了33,241个土壤数据点来模拟硒(Se)的最新(1980-1999)全球分布,硒是人体必需的微量元素。在全球范围内,据估计多达七分之一的人饮食中硒的摄入量较低。与小规模研究相反,土壤硒的含量主要受气候-土壤相互作用的影响。使用2080-2099年的适度气候变化情景,我们预测气候和土壤有机碳含量的变化将导致土壤硒浓度总体下降,特别是在农业地区;这些减少可能会增加硒缺乏症的患病率。气候-土壤相互作用对硒分布的重要性表明,具有相似保留机制的其他微量元素也将受到气候变化的类似影响。

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