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植被和土壤环境影响成熟山毛榉-枫香林中根相关真菌的空间分布。

Vegetation and soil environment influence the spatial distribution of root-associated fungi in a mature beech-maple forest.

机构信息

Holden Arboretum, 9500 Sperry Road, Kirtland, OH 44094, USA.

出版信息

Appl Environ Microbiol. 2009 Dec;75(24):7639-48. doi: 10.1128/AEM.01648-09. Epub 2009 Oct 23.

Abstract

Although the level of diversity of root-associated fungi can be quite high, the effect of plant distribution and soil environment on root-associated fungal communities at fine spatial scales has received little attention. Here, we examine how soil environment and plant distribution affect the occurrence, diversity, and community structure of root-associated fungi at local patch scales within a mature forest. We used terminal restriction fragment length polymorphism and sequence analysis to detect 63 fungal species representing 28 different genera colonizing tree root tips. At least 32 species matched previously identified mycorrhizal fungi, with the remaining fungi including both saprotrophic and parasitic species. Root fungal communities were significantly different between June and September, suggesting a rapid temporal change in root fungal communities. Plant distribution affected root fungal communities, with some root fungi positively correlated with tree diameter and herbaceous-plant coverage. Some aspects of the soil environment were correlated with root fungal community structure, with the abundance of some root fungi positively correlated with soil pH and moisture content in June and with soil phosphorous (P) in September. Fungal distribution and community structure may be governed by plant-soil interactions at fine spatial scales within a mature forest. Soil P may play a role in structuring root fungal communities at certain times of the year.

摘要

尽管根相关真菌的多样性水平可能相当高,但植物分布和土壤环境对细空间尺度上根相关真菌群落的影响却很少受到关注。在这里,我们研究了土壤环境和植物分布如何影响成熟森林内局部斑块尺度上根相关真菌的发生、多样性和群落结构。我们使用末端限制性片段长度多态性和序列分析来检测 63 种真菌,这些真菌代表了 28 个不同属的树种根尖定殖。至少有 32 种与先前鉴定的菌根真菌相匹配,其余真菌包括腐生和寄生物种。根真菌群落在 6 月和 9 月之间存在显著差异,表明根真菌群落的快速时间变化。植物分布影响根真菌群落,一些根真菌与树木直径和草本植物覆盖率呈正相关。土壤环境的某些方面与根真菌群落结构相关,一些根真菌的丰度与 6 月土壤 pH 值和水分含量以及 9 月土壤磷(P)呈正相关。在成熟森林的细空间尺度上,真菌的分布和群落结构可能受到植物-土壤相互作用的控制。土壤 P 可能在一年中的某些时候在根真菌群落结构中起作用。

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