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首页> 外文期刊>Mycological progress >Exploration type-specific standard values of extramatrical mycelium - a step towards quantifying ectomycorrhizal space occupation and biomass in natural soil.
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Exploration type-specific standard values of extramatrical mycelium - a step towards quantifying ectomycorrhizal space occupation and biomass in natural soil.

机译:探索基质外菌丝体的特定类型标准值-迈向量化天然土壤中外生菌根空间的占有量和生物量的一步。

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The present study aims at providing standard values for the exploration type (ET)-specific quantification of extramatrical mycelium (EMM) of ectomycorrhizal fungi applicable to ecological field studies. These values were established from mycelial systems of ectomycorrhizae (ECM) synthesized in rhizotrons with near-to-natural peat substrate. Based on image analysis, the "Specific Potential Mycelial Space Occupation" (sPMSO), i.e. the ET-specific complete area that is covered by the EMM systems (mm2 cm-1 ECM-1), and the "Specific Actual Mycelial Space Occupation" (sAMSO), i.e. the projection area of mycelial systems (mm2 cm-1 ECM-1), were analyzed as an extension of a previously described approach. The "Specific Extramatrical Mycelial Length" (sEML) [m cm-1 ECM-1] and the "Specific Extramatrical Mycelial Biomass" (sEMB) ( micro g cm-1 ECM-1) were calculated for each of the ET via the proportion of hyphal projected area, hyphal length and biomass, the latter two being derived from previous measurements on Piloderma croceum, a "Medium-Distance" (MD)-ET. Both sPMSO and sAMSO were highest for the "Long-Distance" (LD)-ET, whereas those of the "Short-Distance" (SD)-ET and MD-ET were similar, although showing high variation. In contrast, mycelial density per occupied area of the MD-ET was twice as high as that of the LD-ET. Proportional to the sAMSO, the EMM length and biomass differed considerably between the three ET with values of the MD-ET being 1.9 times higher than those of SD-ET, and those of the LD-ET being 15 times higher than those of the SD-ET. These standards in relation to ECM length may ease quantification of mycelial space occupation and biomass in a relatively simple way. Thereby, the ET-specific contribution of EMM can be distinguished-also of non-cultivable species-and up-scaling to large-scale estimation of cost/benefit relations is possible.
机译:本研究旨在为可用于生态田间研究的外生菌根真菌的基质外菌丝体(EMM)的探索类型(ET)特异性定量提供标准值。这些值是从根瘤菌中具有接近天然泥炭基质的合成菌根菌丝体(ECM)的菌丝体系统确定的。根据图像分析,“特定潜在菌丝体空间占用”(sPMSO),即EMM系统覆盖的ET特定完整区域(mm 2 cm -1 ECM -1 )和“特定实际菌丝体空间占用”(sAMSO),即菌丝系统的投影面积(mm 2 cm -1 < / sup> ECM -1 )作为先前描述方法的扩展进行了分析。 “特定基质外菌丝体长度”(sEML)[m cm -1 ECM -1 ]和“特定基质外菌丝体生物量”(sEMB)(micro g cm -1 ECM -1 ),后两者来自先前对的测量crocroum croceum ,一种“中距离”(MD)-ET。 “长距离”(LD)-ET的sPMSO和sAMSO都最高,而“短距离”(SD)-ET和MD-ET的sPMSO和sAMSO相似,尽管它们显示出很大的差异。相反,MD-ET的每个占据区域的菌丝体密度是LD-ET的两倍。与sAMSO成比例,三个ET之间的EMM长度和生物量差异很大,MD-ET的值是SD-ET的1.9倍,LD-ET的值是SD的15倍-ET。这些与ECM长度有关的标准可以以相对简单的方式简化菌丝体空间占有量和生物量的量化。由此,可以区分EMM的ET特定的贡献-也可以是不可耕种的EMM的贡献-并且可以扩大规模以大规模估计成本/收益关系。

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