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Differences in [super]15N uptake amongst spruce seedlings colonized by three pioneer ectomycorrhizal fungi in the field

机译:田间三种先锋菌根真菌定殖的云杉幼苗在超15N吸收方面的差异

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摘要

Amongst the factors hypothesized to be responsible for high ectomycorrhizal fungal diversity are resource partitioning and niche differentiation. However, functional differences amongst ectomycorrhizal fungi, which are pre-requisites for resource partitioning, are known primarily from lab studies; now realistic field experiments are needed in order to establish that these differences exist under field conditions. In this study, Picea engelmannii seedlings planted in a subalpine clearcut became naturally colonized over the course of 1 y. Then a defined volume of soil around each seedling was injected with [super]15N-labelled nitrate, ammonium or aspartate. Seedling biomass and N content increased, but N concentration decreased, with percent colonization of root systems. Accumulation of [super]15N per unit dry weight was not affected by the proportion of roots colonized but, rather, was influenced by the primary ectomycorrhizal fungus colonizing the seedling. Seedlings colonized by a Wilcoxina sp. accumulated more [super]15N per g than seedlings colonized by a Cenococcum sp. The presence of dark septate hyphae in the mantle was associated with lower accumulation of [super]15N by seedlings colonized by Amphinema byssoides. Our results demonstrate that the physiological differences required to support the concept of niche differentiation amongst ectomycorrhizal fungi exist in the field.
机译:被认为是造成高的外生菌根真菌多样性的因素之一是资源分配和生态位分化。然而,外源菌根真菌之间的功能差异是资源分配的先决条件,主要是通过实验室研究得知的。现在需要进行现实的野外实验,以确保这些差异存在于野外条件下。在这项研究中,在亚高山纯种中种植的Picea engelmannii幼苗在1年的时间内自然定殖。然后向每个幼苗周围的限定体积的土壤中注入15 N标记的硝酸盐,铵盐或天冬氨酸盐。幼苗生物量和氮含量增加,但氮浓度下降,根系定殖百分比较高。每单位干重超15N的累积不受定植根的比例的影响,而受定植在幼苗中的外生菌根真菌的影响。 Wilcoxina sp。定殖的幼苗。每克每克累积的超级15N含量高于由Cenococcum sp。定植的幼苗。地幔中深色的分隔菌丝的存在与苯丙胺螺菌定植的幼苗对15 N的较低积累有关。我们的结果表明,在外生菌根真菌中,支持生态位分化概念所需的生理差异存在。

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