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Aquatic Hyphomycete Species Are Screened by the Hyporheic Zone of Woodland Streams

机译:水生菌种由林地溪流的湿流区筛选

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Aquatic hyphomycetes strongly contribute to organic matter dynamics in streams, but their abilities to colonize leaf litter buried in streambed sediments remain unexplored. Here, we conducted field and laboratory experiments (slow-filtration columns and stream-simulating microcosms) to test the following hypotheses: (i) that the hyporheic habitat acting as a physical sieve for spores filters out unsuccessful strategists from a potential species pool, (ii) that decreased pore size in sediments reduces species dispersal efficiency in the interstitial water, and (iii) that the physicochemical conditions prevailing in the hyporheic habitat will influence fungal community structure. Our field study showed that spore abundance and species diversity were consistently reduced in the interstitial water compared with surface water within three differing streams. Significant differences occurred among aquatic hyphomycetes, with dispersal efficiency of filiform-spore species being much higher than those with compact or branched/tetraradiate spores. This pattern was remarkably consistent with those found in laboratory experiments that tested the influence of sediment pore size on spore dispersal in microcosms. Furthermore, leaves inoculated in a stream and incubated in slow-filtration columns exhibited a fungal assemblage dominated by only two species, while five species were codominant on leaves from the stream-simulating microcosms. Results of this study highlight that the hyporheic zone exerts two types of selection pressure on the aquatic hyphomycete community, a physiological stress and a physical screening of the benthic spore pool, both leading to drastic changes in the structure of fungal community.
机译:水生菌对溪流中的有机物动态有很大贡献,但它们在埋藏在河床沉积物中的落叶中定植的能力仍未得到探索。在这里,我们进行了现场和实验室实验(慢速过滤柱和溪流模拟微观世界)来检验以下假设:(i)作为孢子物理筛子的低流变生境从潜在的物种库中过滤掉了不成功的战略家,(ii)沉积物中孔径的减小降低了物种在间隙水中的扩散效率,以及(iii)低流变生境中普遍存在的物理化学条件将影响真菌社区结构。我们的实地研究表明,与三种不同溪流中的地表水相比,间质水中的孢子丰度和物种多样性持续降低。水生菌类间差异显著,丝状孢子的传播效率远高于致密孢子或分枝/四辐射孢子。这种模式与实验室实验中发现的模式非常一致,这些实验测试了沉积物孔径对微观世界中孢子扩散的影响。此外,在溪流中接种并在慢过滤柱中孵育的叶子表现出仅由两个物种主导的真菌组合,而来自溪流模拟微观世界的叶子上有五个物种共同占主导地位。本研究结果表明,低流变区对水生菌群落施加了生理胁迫和底栖孢子库物理筛选两种选择压力,均导致真菌群落结构发生剧烈变化。

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