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首页> 外文期刊>Microbial Ecology: An International Journal >Elevated aluminium concentration in acidified headwater streams lowers aquatic hyphomycete diversity and impairs leaf-litter breakdown.
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Elevated aluminium concentration in acidified headwater streams lowers aquatic hyphomycete diversity and impairs leaf-litter breakdown.

机译:酸化的源水中铝的浓度升高会降低水生菌丝的多样性,并损害叶片凋落物的分解。

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摘要

Aquatic hyphomycetes play an essential role in the decomposition of allochthonous organic matter which is a fundamental process driving the functioning of forested headwater streams. We studied the effect of anthropogenic acidification on aquatic hyphomycetes associated with decaying leaves of Fagus sylvatica in six forested headwater streams (pH range, 4.3-7.1). Non-metric multidimensional scaling revealed marked differences in aquatic hyphomycete assemblages between acidified and reference streams. We found strong relationships between aquatic hyphomycete richness and mean Al concentration (r = -0.998, p 0.0001) and mean pH (r = 0.962, p 0.002), meaning that fungal diversity was severely depleted in acidified streams. By contrast, mean fungal biomass was not related to acidity. Leaf breakdown rate was drastically reduced under acidic conditions raising the issue of whether the functioning of headwater ecosystems could be impaired by a loss of aquatic hyphomycete species.
机译:水生真菌对异源有机物的分解起着至关重要的作用,而异源有机物是驱动森林水源流功能的基本过程。我们研究了人为酸化对六种森林源水流(pH范围为4.3-7.1)中与水青冈叶片腐烂有关的水生真菌的影响。非度量多维缩放显示酸化的和参考流之间水生菌丝体组合的显着差异。我们发现水生真菌的富集度与平均Al浓度(r = -0.998,p <0.0001)和平均pH(r = 0.962,p <0.002)之间有很强的关系,这意味着在酸性流中真菌多样性被严重消耗。相反,平均真菌生物量与酸度无关。在酸性条件下,叶片的分解速度急剧降低,这引发了水生浮游菌种丧失是否会损害源头生态系统功能的问题。

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