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Molecular evidence strongly supports deadwood-inhabiting fungi exhibiting unexpected tree species preferences in temperate forests

机译:分子证据有力地支持了在温带森林中表现出意想不到的树种喜好的沉木真菌

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摘要

Wood-inhabiting fungi have essential roles in the regulation of carbon stocks and nutrient cycling in forest ecosystems. However, knowledge pertaining to wood-inhabiting fungi is only fragmentary and controversial. Here we established a large-scale deadwood experiment with 11 tree species to investigate diversity and tree species preferences of wood-inhabiting fungi using next-generation sequencing. Our results contradict existing knowledge based on sporocarp surveys and challenge current views on their distribution and diversity in temperate forests. Analyzing α-, β- and γ-diversity, we show that diverse fungi colonize deadwood at different spatial scales. Specifically, coniferous species have higher α- and γ-diversity than the majority of analyzed broadleaf species, but two broadleaf species showed the highest β-diversity. Surprisingly, we found nonrandom co-occurrence (P<0.001) and strong tree species preferences of wood-inhabiting fungi, especially in broadleaf trees (P<0.01). Our results indicate that the saprotrophic fungal community is more specific to tree species than previously thought.
机译:居住木材的真菌在调节森林生态系统中的碳储量和养分循环方面具有重要作用。但是,有关居住木材的真菌的知识只是零碎的和有争议的。在这里,我们建立了一个包含11种树种的大规模沉木实验,以使用下一代测序技术研究居住木真菌的多样性和树种偏好。我们的结果与基于果皮调查的现有知识相矛盾,并挑战了当前对其在温带森林中的分布和多样性的看法。分析α-,β-和γ-多样性,我们发现不同的真菌在不同的空间尺度上定居在枯木上。具体而言,针叶树种的α-和γ多样性高于大多数分析的阔叶树种,但两种阔叶树种的β多样性最高。出人意料的是,我们发现了居住木材真菌的非随机共现(P <0.001)和强烈的树种偏好,尤其是在阔叶树中(P <0.01)。我们的结果表明,腐养真菌群落对树种的特异性比以前认为的要高。

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