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蛇纹土壤中外生菌根真菌及共生真菌群落的多样性与结构

Diversity and structure of ectomycorrhizal and co-associated fungal communities in a serpentine soil.

作者信息

Urban Alexander, Puschenreiter Markus, Strauss Joseph, Gorfer Markus

机构信息

Fungal Genomics Unit, Austrian Research Centers, Tech Gate Vienna, Donau-City-Strasse 1, 1220 Vienna, Austria.

出版信息

Mycorrhiza. 2008 Sep;18(6-7):339-54. doi: 10.1007/s00572-008-0189-y. Epub 2008 Aug 3.

Abstract

The community of ectomycorrhizal (ECM) and co-associated fungi from a serpentine site forested with Pinus sylvestris and Quercus petraea was explored, to improve the understanding of ECM diversity in naturally metalliferous soils. ECM fungi were identified by a combination of morphotyping and direct sequencing of the nuclear ribosomal internal transcribed spacer region 2 and of a part of the large-subunit region. Co-associated fungi from selected ECM were identified by restriction fragment length polymorphism and sequencing of representative clones from libraries. Polymerase chain reaction with species-specific primers was applied to assess patterns of association of ECM and co-associated fungi. Twenty ECM species were differentiated. Aphyllophoralean fungi representing several basidiomycete orders and Russulaceae were dominant. Phialocephala fortinii was the most frequently encountered taxon from the diverse assemblage of ECM co-associated fungi. A ribotype representing a deeply branching ascomycete lineage known from ribosomal deoxyribonucleic acid sequences only was detected in some ECM samples. A broad taxonomic range of fungi have the potential to successfully colonise tree roots under the extreme edaphic conditions of serpentine soils. Distribution patterns of ECM-co-associated fungi hint at the importance of specific inter-fungal interactions, which are hypothesised to be a relevant factor for the maintenance of ECM diversity.

摘要

对一片生长着欧洲赤松和岩生栎的蛇纹石地区森林中的外生菌根(ECM)及共生真菌群落进行了研究,以增进对天然含金属土壤中外生菌根多样性的了解。通过形态分型以及核糖体核糖核酸内转录间隔区2和大亚基区域一部分的直接测序来鉴定外生菌根真菌。通过限制性片段长度多态性和文库中代表性克隆的测序来鉴定所选外生菌根的共生真菌。应用物种特异性引物进行聚合酶链反应,以评估外生菌根和共生真菌的关联模式。区分出了20种外生菌根物种。代表几个担子菌纲的非褶菌目真菌和红菇科占主导地位。在不同的外生菌根共生真菌组合中,福尔蒂小囊菌是最常遇到的分类单元。在一些外生菌根样本中检测到一种仅从核糖体脱氧核糖核酸序列中得知的代表一个深分支子囊菌谱系的核糖型。在蛇纹石土壤的极端土壤条件下,广泛的真菌分类群有成功定殖于树根的潜力。外生菌根-共生真菌的分布模式暗示了特定真菌间相互作用的重要性,据推测这是维持外生菌根多样性的一个相关因素。

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