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首页> 外文期刊>Microbial Ecology: An International Journal >Community analysis reveals close affinities between endophytic and endolichenic fungi in mosses and lichens.
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Community analysis reveals close affinities between endophytic and endolichenic fungi in mosses and lichens.

机译:群落分析揭示了苔藓和地衣中内生真菌和内生苔藓真菌之间的亲和力。

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Endolichenic fungi live in close association with algal photobionts inside asymptomatic lichen thalli and resemble fungal endophytes of plants in terms of taxonomy, diversity, transmission mode, and evolutionary history. This similarity has led to uncertainty regarding the distinctiveness of endolichenic fungi compared with endophytes. Here, we evaluate whether these fungi represent distinct ecological guilds or a single guild of flexible symbiotrophs capable of colonizing plants or lichens indiscriminately. Culturable fungi were sampled exhaustively from replicate sets of phylogenetically diverse plants and lichens in three microsites in a montane forest in southeastern Arizona (USA). Intensive sampling combined with a small spatial scale permitted us to decouple spatial heterogeneity from host association and to sample communities from living leaves, dead leaves, and lichen thalli to statistical completion. Characterization using data from the nuclear ribosomal internal transcribed spacer and partial large subunit (ITS-LSU rDNA) provided a first estimation of host and substrate use for 960 isolates representing five classes and approximately 16 orders, 32 families, and 65 genera of Pezizomycotina. We found that fungal communities differ at a broad taxonomic level as a function of the phylogenetic placement of their plant or lichen hosts. Endolichenic fungal assemblages differed as a function of lichen taxonomy, rather than substrate, growth form, or photobiont. In plants, fungal communities were structured more by plant lineage than by the living vs. senescent status of the leaf. We found no evidence that endolichenic fungi are saprotrophic fungi that have been "entrapped" by lichen thalli. Instead, our study reveals the distinctiveness of endolichenic communities relative to those in living and dead plant tissues, with one notable exception: we identify, for the first time, an ecologically flexible group of symbionts that occurs both as endolichenic fungi and as endophytes of mosses.Digital Object Identifier http://dx.doi.org/10.1007/s00248-010-9698-2
机译:内胚层真菌与无症状地衣藻内的藻类光生生物密切相关,并且在分类学,多样性,传播方式和进化史方面类似于植物的真菌内生菌。与内生菌相比,这种相似性导致不确定内生真菌的独特性。在这里,我们评估这些真菌代表的是独特的生态协会还是柔韧的共生体单个协会,它们能够不加选择地定植于植物或地衣中。在美国亚利桑那州东南部的山地森林中,从三个不同地点的系统发育多样的植物和地衣的重复组中详尽地采样了可培养真菌。密集采样与较小的空间规模相结合,使我们能够将空间异质性与宿主关联解耦,并从活叶,枯叶和地衣藻中取样群落,直至统计完成。使用来自核糖体内部转录间隔区和部分大亚基(ITS-LSU rDNA)的数据进行表征,首次估计了960个分离株的宿主和底物用途,这些分离株分别为5个类,约16个科,32个家族和65个属。我们发现真菌群落在广泛的分类学水平上因其植物或地衣宿主的系统发育位置而异。苔藓内真菌组合因地衣分类而不同,而不是底物,生长形式或光生物素。在植物中,真菌群落的结构更多地取决于植物谱系,而不是叶片的生存状态与衰老状态。我们没有发现证据表明内生苔藓真菌是腐烂性真菌,已被地衣藻“捕获”。取而代之的是,我们的研究揭示了相对于活体和死植物组织中的内生苔藓菌群落的独特性,但有一个明显的例外:我们首次确定了一种生态灵活的共生菌群,既作为内生苔藓菌又作为苔藓内生菌出现。数字对象标识符http://dx.doi.org/10.1007/s00248-010-9698-2

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