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首页> 外文期刊>Science of the total environment >Partial overlap of fungal communities associated with nettle and poplar roots when co-occurring at a trace metal contaminated site
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Partial overlap of fungal communities associated with nettle and poplar roots when co-occurring at a trace metal contaminated site

机译:在痕量金属污染部位共同发生时与荨麻和杨树根相关的真菌社区部分重叠

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摘要

Stinging nettle (Urtica dioica L.) raises growing interest in phytomanagement because it commonly grows under poplar Short Rotation Coppices (SRC) set up at trace-metal (TM) contaminated sites and provides high-quality herbaceous fibres. The mycobiome of this non-mycorhizal plant and its capacity to adapt to TM-contaminated environments remains unknown. This study aimed at characterizing the mycobiome associated with nettle and poplar roots co-occurring at a TM-contaminated site. Plant root barcoding using the fungi-specific ITS1F-ITS2 primers and Illumina MiSeq technology revealed that nettle and poplar had distinct root fungal communities. The nettle mycobiome was dominated by Pezizomycetes from known endophytic taxa and from the supposedly saprotrophic genus Kotlabaea (which was the most abundant). Several ectomycorrhizal fungi such as Inocybe (Agaricomycetes) and Tuber (Pezizomycetes) species were associated with the poplar roots. Most of the Pezizomycetes taxa were present in the highly TM-contaminated area whereas Agaricomycetes tended to be reduced. Despite being a known non-mycorrhizal plant, nettle was associated with a significant proportion of ectomycorrhizal OTU (9.7%), suggesting some connexions between the poplar and the nettle root mycobiomes. Finally, our study raised the interest in reconsidering the fungal networking beyond known mycorrhizal interactions.
机译:刺痛荨麻(Urtica Dioica L.)引发了对植物植物的兴趣日益增长的兴趣,因为它通常在污染物(TM)污染的位点上设置的杨树短旋转Coppices(SRC)下生长,并提供优质的草本纤维。这种非Mycorhizal植物的王冠组织及其适应TM污染环境的能力仍然未知。本研究旨在表征与荨麻菌和在TM污染部位共同发生的荨麻疹和杨树根相关的霉菌组。使用真菌特异性的ITS1F-ITS2引物和Illumina Miseq技术的植物根条形码揭示了荨麻和杨树有明显的根真菌社区。荨麻菌霉菌由来自已知的内胚菌类动物的培泽苏氏菌族占主导地位,并从据称的含有嗜胞盆属kotlabaea(最丰富)。诸如Inocybe(姬松茸)和块茎(PezizoMycetes)物种等几种颈癌真菌与杨树根有关。大多数PezizoMycetes毒征在高度TM污染的区域中存在,而炎症性趋于减少。尽管是一家已知的非菌根植物,但荨麻与大量的突出症OTU(9.7%)有关,表明杨树和荨麻根科学博物群体之间的一些连接。最后,我们的研究提出了重新考虑超出已知菌根互动的真菌网络的兴趣。

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  • 来源
    《Science of the total environment》 |2021年第15期|146692.1-146692.13|共13页
  • 作者单位

    Chrono-environnement UMR6249 CNRS Universite Bourgogne Franche-Comte F-25000 Besancon France University de Lorraine CNRS UEC 54000 Nancy France Universite de Lorraine INRAE LSE 54000 Nancy France;

    Chrono-environnement UMR6249 CNRS Universite Bourgogne Franche-Comte F-25000 Besancon France;

    Chrono-environnement UMR6249 CNRS Universite Bourgogne Franche-Comte F-25000 Besancon France;

    Chrono-environnement UMR6249 CNRS Universite Bourgogne Franche-Comte F-25000 Besancon France French National Institute for Agricultural Research INRAE. Department of Agroecology 21000 Dijon France;

    Chrono-environnement UMR6249 CNRS Universite Bourgogne Franche-Comte F-25000 Besancon France;

    Chrono-environnement UMR6249 CNRS Universite Bourgogne Franche-Comte F-25000 Besancon France Department of Plant & Microbial Biology University of Minnesota St. Paul MN USA;

    Institut de Systematique Evolution Biodiversite (ISYEB - UMR 7205 - CNRS MNHN SU EPHE) Museeum national d'Histoire naturelle 75000 Paris France Faculty of Biology University of Gdan sk ul. Wita Stwosza 59 80-308 Gdansk Poland;

    Chrono-environnement UMR6249 CNRS Universite Bourgogne Franche-Comte F-25000 Besancon France;

    Chrono-environnement UMR6249 CNRS Universite Bourgogne Franche-Comte F-25000 Besancon France;

    Chrono-environnement UMR6249 CNRS Universite Bourgogne Franche-Comte F-25000 Besancon France Laboratoire Carrtel Universite Savoie Mont Blanc INRAE 042 Domaine Universitaire Belledonne 73370 Le Bourget-du-Lac France;

    Chrono-environnement UMR6249 CNRS Universite Bourgogne Franche-Comte F-25000 Besancon France Universite de Lorraine Faculte des Sciences et Technologies 54000 Nancy France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ectomycorrhizal fungi; Environmental metabarcoding; Fungal network; Metal-enriched sediments; Phytomanagement; Root-associated mycobiome; Urtica dioica L.;

    机译:EccoRhizal真菌;环境成立;真凝网络;富含金属沉积物;phytomanagement;根关联的王冠组;荨麻疹Dioica L.;

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