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Ectomycorrhizal fungal diversity and community structure associated with cork oak in different landscapes

机译:不同景观中的软木橡木与软木橡木相关的闭塞性真菌多样性和社区结构

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摘要

Cork oak (Quercus suber L.) forests play an important ecological and economic role. Ectomycorrhizal fungi (ECMF) are key components for the sustainability and functioning of these ecosystems. The community structure and composition of ECMF associated with Q. suber in different landscapes of distinct Mediterranean bioclimate regions have not previously been compared. In this work, soil samples from cork oak forests residing in different bioclimates (arid, semi-arid, sub-humid, and humid) were collected and surveyed for ectomycorrhizal (ECM) root tips. A global analysis performed on 3565 ECM root tips revealed that the ECMF community is highly enriched in Russula, Tomentella, and Cenoccocum, which correspond to the ECMF genera that mainly contribute to community differences. The ECMF communities from the rainiest and the driest cork oak forests were distinct, with soils from the rainiest climates being more heterogeneous than those from the driest climates. The analyses of several abiotic factors on the ECMF communities revealed that bioclimate, precipitation, soil texture, and forest management strongly influenced ECMF structure. Shifts in ECMF with different hyphal exploration types were also detected among forests, with precipitation, forest system, and soil texture being the main drivers controlling their composition. Understanding the effects of environmental factors on the structuring of ECM communities could be the first step for promoting the sustainability of this threatened ecosystem.
机译:软木橡木(Quercus Suber L.)森林发挥着重要的生态和经济作用。 Eccycorrhizal真菌(ECMF)是这些生态系统的可持续性和运作的关键组成部分。与Q.与Q. Q. Suber在不同地中海生物气候区不同景观中的群体结构和组成尚未进行比较。在这项工作中,收集和调查从不同生物酰亚胺(干旱,半干旱,潜水和潮湿)的软木橡木林的土壤样本被收集和调查Ececycorrhizal(ECM)根尖。对3565个ECM根提示进行的全局分析表明,ECMF群落在Russula,Tomentella和Cenocococum中高度富集,与主要促进社区差异的ECMF属。来自最衰落和最干燥的软木橡木森林的ECMF社区是截然不同的,最肮脏的气候与最丰富的气候的土壤比来自最干旱的气候更加异质。对ECMF社区的几种非生物因素的分析表明,生物气候,降水,土壤质地和森林管理强烈影响了ECMF结构。在森林中也检测到具有不同悬垂勘探类型的ECMF的转变,降水,森林系统和土壤质地是控制其组成的主要驱动因素。了解环境因素对ECM社区的结构的影响可能是促进这一受威胁生态系统的可持续性的第一步。

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  • 来源
    《Mycorrhiza》 |2018年第4期|共12页
  • 作者单位

    Univ Minho BioSyst &

    Integrat Sci Inst BioISI Plant Funct Biol Ctr Campus Gualtar P-4710057 Braga Portugal;

    UEIS SAFSV Inst Nacl Invest Agr &

    Vet IP Av Republ Nova Oeiras P-2784505 Oeiras Portugal;

    UEIS SAFSV Inst Nacl Invest Agr &

    Vet IP Av Republ Nova Oeiras P-2784505 Oeiras Portugal;

    Univ Minho BioSyst &

    Integrat Sci Inst BioISI Plant Funct Biol Ctr Campus Gualtar P-4710057 Braga Portugal;

    Polytech Inst Braganca CIMO Sch Agr Campus Santa Apolonia P-5300253 Braganca Portugal;

    Univ Minho BioSyst &

    Integrat Sci Inst BioISI Plant Funct Biol Ctr Campus Gualtar P-4710057 Braga Portugal;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 真菌门;
  • 关键词

    Cork oak; ECMF community; Environmental factors; Exploration types;

    机译:软木橡木;ECMF社区;环境因素;探索类型;

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