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Characterization of the Habitat- and Season-Independent Increase in Fungal Biomass Induced by the Invasive Giant Goldenrod and Its Impact on the Fungivorous Nematode Community

机译:侵袭性巨大黄石诱导的真菌生物量栖息地和季节性与季节性季节性生物量及其对无变性线虫社区的影响

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摘要

Outside its native range, the invasive plant species giant goldenrod (Solidago gigantea) has been shown to increase belowground fungal biomass. This non-obvious effect is poorly characterized; we don’t know whether it is plant developmental stage-dependent, which fractions of the fungal community are affected, and whether it is reflected in the next trophic level. To address these questions, fungal assemblages in soil samples collected from invaded and uninvaded plots in two soil types were compared. Although using ergosterol as a marker for fungal biomass demonstrated a significant increase in fungal biomass, specific quantitative PCR (qPCR) assays did not point at a quantitative shift. MiSeq-based characterization of the belowground effects of giant goldenrod revealed a local increase of mainly Cladosporiaceae and Glomeraceae. This asymmetric boost in the fungal community was reflected in a specific shift in the fungivorous nematode community. Our findings provide insight into the potential impact of invasive plants on local fungal communities.
机译:在其本土范围之外,侵入性植物物种巨型Goldenrod(SolidaGo Gigantea)已被证明可以增加地下真菌生物量。这种非明显效果表现不佳;我们不知道是否是植物发育阶段依赖性,这种群体的真菌群落受到影响,以及它是否反映在下一个营养水平。为了解决这些问题,比较了从两种土壤类型中收集的土壤样本中的真菌组合,并进行了两种土壤类型。虽然使用Ergoster索作为真菌生物量的标志物,但是真菌生物量的显着增加,但特异性定量PCR(QPCR)测定不定在定量变化中。基于MISEQ的表征巨型GOLDEROD的下面效果显示出主要增加的主要植物孢子酸和肾小球术。真菌群落中的这种不对称增强被反映在无菌线虫社区的特定转变中。我们的调查结果介绍了侵袭性植物对局部真菌社区的潜在影响。

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