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土地利用对爱沙尼亚丛枝菌根真菌群落的影响。

Effects of land use on arbuscular mycorrhizal fungal communities in Estonia.

机构信息

Department of Botany, University of Tartu, 40 Lai Street, 51005, Tartu, Estonia.

出版信息

Mycorrhiza. 2018 Apr;28(3):259-268. doi: 10.1007/s00572-018-0822-3. Epub 2018 Jan 31.

Abstract

Arbuscular mycorrhizal (AM) fungal communities vary across habitat types, as well as across different land use types. Most relevant research, however, has focused on agricultural or other severely human-impacted ecosystems. Here, we compared AM fungal communities across six habitat types: calcareous grassland, overgrown ungrazed calcareous grassland, wooded meadow, farmyard lawn, boreonemoral forest, and boreonemoral forest clear-cut, exhibiting contrasting modes of land use. AM fungi in the roots of a single host plant species, Prunella vulgaris, and in its rhizosphere soil were identified using 454-sequencing from a total of 103 samples from 12 sites in Estonia. Mean AM fungal taxon richness per sample did not differ among habitats. AM fungal community composition, however, was significantly different among habitat types. Both abandonment and land use intensification (clearcutting; trampling combined with frequent mowing) changed AM fungal community composition. The AM fungal communities in different habitat types were most similar in the roots of the single host plant species and most distinct in soil samples, suggesting a non-random pattern in host-fungal taxon interactions. The results show that AM fungal taxon composition is driven by habitat type and land use intensity, while the plant host may act as an additional filter between the available and realized AM fungal species pool.

摘要

丛枝菌根(AM)真菌群落因生境类型以及不同的土地利用类型而有所不同。然而,大多数相关研究都集中在农业或其他受到严重人为影响的生态系统。在这里,我们比较了六种生境类型的 AM 真菌群落:钙质草地、过度生长的未放牧钙质草地、林地草地、农家庭院草坪、北方针叶林和北方针叶林皆伐,这些生境类型表现出不同的土地利用模式。使用来自爱沙尼亚 12 个地点的 103 个样本的 454 测序,鉴定了单种宿主植物菥蓂(Prunella vulgaris)的根系和根际土壤中的 AM 真菌。每个样本的平均 AM 真菌分类丰富度在不同生境之间没有差异。然而,AM 真菌群落组成在生境类型之间存在显著差异。无论是废弃还是土地利用集约化(皆伐;踩踏与频繁修剪相结合)都会改变 AM 真菌群落组成。不同生境类型的 AM 真菌群落,在单种宿主植物的根系中最为相似,而在土壤样本中最为不同,这表明宿主-真菌分类群相互作用存在非随机模式。研究结果表明,AM 真菌分类群组成受生境类型和土地利用强度的驱动,而植物宿主可能在可用和实现的 AM 真菌物种库之间充当额外的筛选器。

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