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Experimental evidence of a symbiosis between red-cockaded woodpeckers and fungi

机译:红冠啄木鸟与真菌共生的实验证据

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摘要

Primary cavity excavators, such as woodpeckers, are ecosystem engineers in many systems. Associations between cavity excavators and fungi have long been hypothesized to facilitate cavity excavation, but these relationships have not been experimentally verified. Fungi may help excavators by softening wood, while excavators may facilitate fungal dispersal. Here we demonstrate that excavators facilitate fungal dispersal and thus we report the first experimental evidence of a symbiosis between fungi and a cavity excavator, the red-cockaded woodpecker (RCW, Picoides borealis). Swab samples of birds showed that RCWs carry fungal communities similar to those found in their completed excavations. A 26-month field experiment using human-made aseptically drilled excavations in live trees, half of which were inaccessible to RCWs, demonstrated that RCWs directly alter fungal colonization and community composition. Experimental excavations that were accessible to RCWs contained fungal communities similar to natural RCW excavations, whereas inaccessible experimental excavations contained significantly different fungal communities. Our work demonstrates a complex symbiosis between cavity excavators and communities of fungi, with implications for forest ecology, wildlife management, and conservation.
机译:啄木鸟等初级腔挖土机是许多系统的生态系统工程师。长期以来,人们一直假设空腔挖掘机和真菌之间存在关联,以促进空腔挖掘,但是这些关系尚未得到实验验证。真菌可以通过软化木材来帮助挖掘机,而挖掘机则可以促进真菌的扩散。在这里,我们证明了挖掘机促进了真菌的扩散,因此,我们报告了真菌与腔挖土机,红冠啄木鸟(RCW,Picoidesborealis)之间共生的第一个实验证据。鸟的拭子样本显示,RCW携带的真菌群落与其在完整挖掘过程中发现的相似。一项为期26个月的野外实验在活树上进行了人工无菌钻孔挖掘,其中RCW无法进入其中的一半,这表明RCW直接改变了真菌的定居和群落组成。 RCW可进入的实验发掘包含与自然RCW挖掘相似的真菌群落,而无法进入的实验发掘包含明显不同的真菌群落。我们的工作证明了空腔挖掘机和真菌群落之间的复杂共生关系,对森林生态,野生动植物管理和保护产生了影响。

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