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Chytrids dominate arctic marine fungal communities

机译:梭菌在北极海洋真菌群落中占主导地位

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摘要

Climate change is altering Arctic ecosystem structure by changing weather patterns and reducing sea ice coverage. These changes are increasing light penetration into the Arctic Ocean that are forecasted to increase primary production; however, increased light can also induce photoinhibition and cause physiological stress in algae and phytoplankton that can favour disease development. Fungi are voracious parasites in many ecosystems that can modulate the flow of carbon through food webs, yet are poorly characterized in the marine environment. We provide the first data from any marine ecosystem in which fungi in the Chytridiomycota dominate fungal communities and are linked in their occurrence to light intensities and algal stress. Increased light penetration stresses ice algae and elevates disease incidence under reduced snow cover. Our results show that chytrids dominate Arctic marine fungal communities and have the potential to rapidly change primary production patterns with increased light penetration.
机译:气候变化通过改变天气模式和减少海冰覆盖范围而改变了北极生态系统的结构。这些变化正在增加进入北冰洋的光的渗透,预计将增加初级产量。然而,增加的光还可以诱导光抑制并在藻类和浮游植物中引起生理压力,从而有利于疾病的发展。真菌是许多生态系统中的贪食性寄生虫,它们可以调节碳通过食物网的流动,但在海洋环境中的特性较差。我们提供了来自任何海洋生态系统的第一个数据,在该生态系统中,斜纹夜蛾中的真菌主导真菌群落,并将其发生与光照强度和藻类胁迫联系在一起。在减少积雪的情况下,增加的光穿透力会向冰藻施加压力,并增加疾病的发病率。我们的结果表明,壶菌在北极海洋真菌群落中占主导地位,并具有随着光透射率的增加而迅速改变初级生产模式的潜力。

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