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Environmental filtering structures fungal endophyte communities in tree bark

机译:环境过滤结构真菌Endophyte群落树皮

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The factors that control the assembly and composition of endophyte communities across plant hosts remains poorly understood. This is especially true for endophyte communities inhabiting inner tree bark, one of the least studied components of the plant microbiome. Here, we test the hypothesis that bark of different tree species acts as an environmental filter structuring endophyte communities, as well as the alternative hypothesis, that bark acts as a passive reservoir that accumulates a diverse assemblage of spores and latent fungal life stages. We develop a means of extracting high-quality DNA from surface sterilized tree bark to compile the first culture-independent study of inner bark fungal communities. We sampled a total of 120 trees, spanning five dominant overstorey species across multiple sites in a mixed temperate hardwood forest. We find that each of the five tree species harbour unique assemblages of inner bark fungi and that angiosperm and gymnosperm hosts harbour significantly different fungal communities. Chemical components of tree bark (pH, total phenolic content) structure some of the differences detected among fungal communities residing in particular tree species. Inner bark fungal communities were highly diverse (mean of 117-171 operational taxonomic units per tree) and dominated by a range of Ascomycete fungi living asymptomatically as putative endophytes. Together, our evidence supports the hypothesis that tree bark acts as an environmental filter structuring inner bark fungal communities. The role of these potentially ubiquitous and plant-specific fungal communities remains uncertain and merits further study.
机译:控制植物主持人的组装和组成的因素仍然清晰差不多。对于内部树皮内部树皮的内心群落尤其如此,是植物微生物组的至少研究组成部分之一。在这里,我们测试不同树种的吠声作为环境过滤器结构化的内窥镜社区,以及替代假设的假设,以及吠叫作为一种被动储层,其积累了孢子和潜在的真菌寿命的多样化组合。我们开发一种从表面灭菌的树皮中提取高质量DNA的方法,编制第一族文化独立于内皮真菌社区的研究。我们共采样了120棵树120棵树,跨越五个地点跨越一个混合的温带硬木森林。我们发现五棵树种类中的每一个都是内皮真菌的独特组合,并且昂贵的植物和裸子植物主持人港口显着不同的真菌社区。树皮(pH,总酚类含量)的化学成分结构在特定树种中栖息的真菌社区中检测到的一些差异。内皮真菌社区(每棵树117-171次运营分类单位)高度多样化,并以一系列渐近的症状,以一系列缺乏症状的内核性而主导。我们的证据共同支持树皮作为环境过滤器构建内皮真菌社区的假设。这些潜在普遍存在的植物特异性的真菌社区的作用仍然不确定,并且可以进一步研究。

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