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温带山毛榉林中外生菌根多样性、分类群特有性状与根系氮吸收。

Ectomycorrhizal diversity, taxon-specific traits and root N uptake in temperate beech forests.

机构信息

Forest Botany and Tree Physiology, University of Göttingen, Göttingen, 37077, Germany.

Functional Forest Ecology, Universität Hamburg, Barsbüttel, 22885, Germany.

出版信息

New Phytol. 2023 Jul;239(2):739-751. doi: 10.1111/nph.18978. Epub 2023 May 25.

Abstract

Roots of forest trees are colonized by a diverse spectrum of ectomycorrhizal (EM) fungal species differing in their nitrogen (N) acquisition abilities. Here, we hypothesized that root N gain is the result of EM fungal diversity or related to taxon-specific traits for N uptake. To test our hypotheses, we traced N enrichment in fine roots, coarse roots and taxon-specific ectomycorrhizas in temperate beech forests in two regions and three seasons, feeding 1 mM NH NO labelled with either NH or NO . We morphotyped > 45 000 vital root tips and identified 51 of 53 detected EM species by sequencing. EM root tips exhibited strong, fungal taxon-specific variation in N enrichment with higher NH than NO enrichment. The translocation of N into the upper parts of the root system increased with increasing EM fungal diversity. Across the growth season, influential EM species predicting root N gain were not identified, probably due to high temporal dynamics of the species composition of EM assemblages. Our results support that root N acquisition is related to EM fungal community-level traits and highlight the importance of EM diversity for tree N nutrition.

摘要

森林树木的根系被各种外生菌根(EM)真菌定植,这些真菌在氮(N)获取能力上存在差异。在这里,我们假设根 N 的获取是 EM 真菌多样性的结果,或者与特定于分类群的 N 吸收特性有关。为了检验我们的假设,我们在两个地区和三个季节追踪了温带山毛榉林中细根、粗根和分类群特异性外生菌根中的 N 富集情况,用 1mM 的 NH NO 喂养,其中标记有 NH 或 NO 。我们形态学地对 >45000 个有活力的根尖进行了分析,并通过测序鉴定了 53 种检测到的 EM 物种中的 51 种。EM 根尖在 N 富集方面表现出强烈的、真菌分类群特异性的变异,NH 比 NO 的富集程度更高。随着 EM 真菌多样性的增加,N 向根系上部的转移增加。在整个生长季节,没有确定出影响根 N 获得的优势 EM 物种,这可能是由于 EM 生物群的物种组成具有很高的时间动态性。我们的研究结果支持根 N 吸收与 EM 真菌群落水平的特性有关,并强调了 EM 多样性对树木 N 营养的重要性。

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