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内生型植物物种和欧洲赤松在其根系和周围土壤中形成真菌群落。

Ericoid plant species and Pinus sylvestris shape fungal communities in their roots and surrounding soil.

机构信息

Department of Microbiology, University of Helsinki, PO Box 56, FIN-00014, Helsinki, Finland.

Natural Resources Institute Finland, PL 2, 00791, Helsinki, Finland.

出版信息

New Phytol. 2018 Apr;218(2):738-751. doi: 10.1111/nph.15040. Epub 2018 Mar 1.

Abstract

Root-colonizing fungi can form mycorrhizal or endophytic associations with plant roots, the type of association depending on the host. We investigated the differences and similarities of the fungal communities of three boreal ericoid plants and one coniferous tree, and identified the community structure of fungi utilizing photosynthates from the plants studied. The fungal communities of roots and soils of Vaccinium myrtillus, Vaccinium vitis-idaea, Calluna vulgaris and Pinus sylvestris were studied in an 18-month-long experiment where the plants were grown individually in natural substrate. Photosynthates utilizing fungi were detected with DNA stable-isotope probing using CO ( C-DNA-SIP). The results indicated that the plants studied provide different ecological niches preferred by different fungal species. Those fungi which dominated the community in washed roots had also the highest C-uptake. In addition, a common root endophyte without confirmed mycorrhizal status also obtained C from all the plants, indicating close plant-association of this fungal species. We detect several fungal species inhabiting the roots of both ericoid mycorrhizal and ectomycorrhizal plants. Our results highlight that the ecological role of co-occurrence of fungi with different life styles (e.g. mycorrhizal or endophytic) in plant root systems should be further investigated.

摘要

根定殖真菌可以与植物根系形成菌根或内生菌的共生关系,共生关系的类型取决于宿主。我们调查了三种北方石南科植物和一种针叶树的真菌群落的差异和相似之处,并利用从所研究植物中获取的光合作用产物来鉴定真菌群落结构。在一项为期 18 个月的实验中,我们研究了 Vaccinium myrtillus、Vaccinium vitis-idaea、Calluna vulgaris 和 Pinus sylvestris 的根和土壤的真菌群落,在该实验中,植物单独在天然基质中生长。利用 CO(C-DNA-SIP)的 DNA 稳定同位素探针检测利用光合作用产物的真菌。结果表明,所研究的植物提供了不同的生态位,不同的真菌物种更喜欢这些生态位。在洗净的根部中主导群落的真菌也具有最高的 C 吸收。此外,一种没有被证实的菌根状态的常见根内生真菌也从所有植物中获得了 C,这表明这种真菌物种与植物密切相关。我们检测到几种真菌物种栖息在石南科菌根和外生菌根植物的根部。我们的研究结果强调,不同生活方式(如菌根或内生菌)的真菌共存对植物根系的生态作用应该进一步研究。

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