Abstract Soil receptivity for ectomycorrhizal fungi: <ce:italic>Tuber aestivum</ce:italic> is specifically stimulated by calcium carbonate and certain organic compounds, but not mycorrhizospheric bacteria
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Soil receptivity for ectomycorrhizal fungi: Tuber aestivum is specifically stimulated by calcium carbonate and certain organic compounds, but not mycorrhizospheric bacteria

机译:外菌腐败性的土壤接受性:由碳酸钙和某些有机化合物特别刺激,但不是菌根神经细菌

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Abstract Mycelium of ectomycorrhizal fungi colonizes soil that is extremely heterogeneous in terms of spatial arrangement as well as chemical and biological properties. Here we addressed which of the soil components would have the greatest influence on hyphal development of an ectomycorrhizal fungus, the summer truffle (Tuber aestivum). We tested a range of inorganic and organic compounds and bacterial strains isolated from truffle mycorrhizosphere, added to truffle grounds in small compartments accessible exclusively to the hyphae and not to host plant roots. Our results showed stimulation of truffle hyphal growth by high dosis of lime powder, whereas leaf litter had no effect. Further, we recorded significant stimulation of the hyphal growth by several organic compounds (gallic acid, cellulose and calcium formate), whereas no significant stimulation was observed by any of the inorganic compounds or bacterial cultures mixed with an inert carrier. None of the amendments, however, sustained the truffle growth rate recorded in unsterile field soil. These results indicate that the development of hyphae of T. aestivum in soil may well require complex and micro-heterogeneous environment, where specific organic compounds and calcium carbonate play particularly important roles. ]]>
机译:<![cdata [ 抽象 肌菌毒性真菌的菌丝体在空间布置以及化学和生物学的方面非常异质的土壤。在这里,我们解决了哪些土壤成分对夏季松露(毒素Aestivum )的剪发出来的孤立菌根真菌的影响最大的影响。我们测试了一系列无机和有机化合物和从松露菌层分离的细菌菌株,添加到小室内的松露地,专门用于菌丝,而不是寄出植物根源。我们的结果表明,通过石灰粉的高分分泌刺激松露悬鼠生长,而叶子凋落物无效。此外,我们记录了几种有机化合物(Gallic酸,纤维素和钙甲酸钙)对亚腿生长的显着刺激,而任何无机化合物或与惰性载体混合的细菌培养物没有显着刺激。然而,没有修正案持续持续在禁区土壤中记录的松露生长速度。这些结果表明 t的菌丝的发育。 Aestivum 在土壤中可能需要复杂和微异质的环境,其中特异性有机化合物和碳酸钙起到特别重要的作用。 ]]>

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