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首页> 外文期刊>Mycorrhiza >Arbuscular mycorrhizal inoculum potential: a mechanism promoting positive diversity–invasibility relationships in mountain beech forests in New Zealand?
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Arbuscular mycorrhizal inoculum potential: a mechanism promoting positive diversity–invasibility relationships in mountain beech forests in New Zealand?

机译:丛枝菌根接种物的潜力:一种促进新西兰山毛榉森林中积极的多样性与入侵关系的机制?

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摘要

Mycorrhizal fungi are important symbionts for the majority of plant species, but their role in determining the susceptibility of habitat to plant invasion is poorly understood. Hieracium lepidulum is an arbuscular mycorrhizal herb, currently invading the understorey of ectomycorrhizal Nothofagus solandri var. cliffortioides (mountain beech) forest in New Zealand. Mountain beech is solely ectomycorrhizal, and other plant species within the understorey occur sporadically. Hieracium has been shown to establish preferentially in microsites with higher plant species richness at a scale of less than 1 m2 within mountain beech forest, and we tested the hypothesis that more diverse microsites (<1 m2) are associated with higher levels of arbuscular mycorrhizal fungal (AMF) inoculum. We found low levels of AMF inoculum across all microsites, and over a third of samples contained no inoculum at all. Higher vascular-plant species richness (but not biomass) was associated with higher AMF spore densities in field soil, and greater AMF colonization of H. lepidulum seedlings in a bioassay. Absence of AMF inoculum from much of the soil and the positive association of inoculum potential with species richness provide a potential mechanism for the establishment of a positive diversity–invasibility relationship in the mountain beech forest.
机译:菌根真菌是大多数植物物种的重要共生体,但人们对它们在确定生境对植物入侵的敏感性方面的作用知之甚少。鳞皮草是一种丛枝菌根药草,目前侵入外生菌根Nothofagus solandri var的下层。新西兰悬崖森林(山毛榉)。山毛榉仅仅是外生菌根,而在地下层中的其他植物则偶发。已显示山毛榉优先在山毛榉林中规模小于1 m 2 的植物物种丰富度较高的微场所中建立,并且我们检验了以下假设:更多种微场所(<1 m 2 )与较高水平的丛枝菌根真菌(AMF)接种物相关。我们发现在所有微型站点中,AMF接种物的水平都很低,并且超过三分之一的样品根本没有接种物。在生物测定中,较高的维管束植物物种丰富度(而非生物量)与田间土壤中较高的AMF孢子密度以及鳞茎嗜血杆菌幼苗的更大的AMF定植有关。大多数土壤中缺乏AMF接种物,并且接种物潜力与物种丰富度呈正相关关系,为在山毛榉森林中建立积极的多样性-入侵关系提供了潜在的机制。

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