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Ecosystems supporting Tuber magnatum Pico production in Serbia experience specific soil environment seasonality that may facilitate truffle lifecycle completion

机译:支持塞尔维亚马铃薯块茎微型生产的生态系统经历了特定的土壤环境季节性变化,这可能有助于完成松露的生命周期

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摘要

The production of Tuber magnatum Pico, the most prized and ecologically the most complex, constantly declines in natural habitats, while the success in plantation lacks. Contrary to the data from its habitats in Mediterranean sites, in Serbia this truffle colonizes typical developed alluvial forests, implying that dynamics of soil parameters and nutrient availability, rather than presence of specific ectomycorrhizal (EMC) plant host species or climate, might be crucial for supporting truffle life cycle. In order to reveal specific relationship generating soil microenvironments in productive and unproductive sites, soil water content (SWC) and temperature (T) were measured periodically in two depths, in a typical T. magnatum habitat in Western Serbia and compared to the atmospheric parameters (precipitation, air temperature). In three key time-points (spring soil water saturation, summer drought and autumn ascocarp production) soil was sampled through the profile and analyzed for nutrients that might be important for plant/fungal growth and ectomycorrhiza establishment. Results revealed that specific dynamics of soil water, aeration, available P and N, and possibly vegetation phenology, might be determining productivity of the microsites within the productive area. The hypothesis on soil water and nutrient availability seasonal dynamics, which might be controlling truffle establishment and life cycle completion in investigated area, was proposed. (C) 2015 Published by Elsevier B.V.
机译:在自然栖息地中,产量最高,生态最复杂的块茎豌豆的产量不断下降,而人工林的成功却缺乏。与来自其地中海地区栖息地的数据相反,这种松露在典型的发达冲积林中定殖,这暗示着土壤参数和养分有效性的动态变化,而不是特定的外生菌根(EMC)植物寄主物种或气候的存在,对于支持松露的生命周期。为了揭示在生产性和非生产性地区产生土壤微环境的特定关系,在塞尔维亚西部典型的T.magnatum生境中,在两个深度上定期测量土壤水分(SWC)和温度(T),并将其与大气参数进行比较(降水,空气温度)。在三个关键时间点(春季土壤水分饱和度,夏季干旱和秋季白果产量)中,通过剖面图对土壤进行了采样,并分析了可能对植物/真菌的生长和根外菌根的建立起重要作用的养分。结果表明,土壤水分,通气,有效磷和氮的动态变化,以及可能的植被物候学特征,可能决定着生产区内微地点的生产力。提出了土壤水分和养分有效性季节动态的假说,该假说可能控制了研究区松露的形成和生命周期的完成。 (C)2015由Elsevier B.V.发布

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