首页> 外文期刊>Pedobiologia >Tuber aestivum is associated with changes in soil chemistry and reduced biological quality in a Quercus pubescens stand in Northern Italy
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Tuber aestivum is associated with changes in soil chemistry and reduced biological quality in a Quercus pubescens stand in Northern Italy

机译:块茎AESTIVUM与土壤化学的变化和降低意大利北部的栎(Pubrescens)的土壤化学变化和生物质的变化有关

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摘要

Truffles contribute both directly and indirectly to important dynamics in the soil web, being involved in a large number of ecological functions that are crucial for terrestrial ecosystems. Despite this, the interrelationships between true truffles, i.e. hypogeous ectomycorrhizal fungi producing valuable fruiting bodies, and other elements of the soil system are largely unknown. In this study, we aimed to shed new light on whether and how much Tuber aestivum affects soil microbial activities (evaluated as enzyme activities), abundance (assayed as soil DNA content) and bacterial genetic diversity along with soil chemical properties. We compared chemical and biological variables inside and outside britles (i.e. areas inhabited by truffles with scarce vegetation cover around host plants) in two seasons, namely spring and summer, using both a linear mixed model and a multivariate two-block partial least squares approach. The areas with truffle presence had higher pH but lower organic carbon and nitrogen content. Similarly, all enzyme activities were lower inside the brule than outside, with the exception of peroxidase. A soil quality index (i.e. AI3) based on three enzyme activities (beta-glucosidase, acid phosphomonoesterase and urease) indicated a reduction in soil quality inside the brule. Overall, soil DNA content responded to an interaction of truffle presence/absence and season, while bacterial genetic diversity indexes were higher in spring. Despite the observational nature of this study, results point out that T. aestivum can be considered a key species in the soil where it is present as it was associated with changes in chemistry as well as microbial activity that were generally more conspicuous than mere seasonal effects, although the causative nature of these associations still needs to be confirmed.
机译:松露直接和间接地贡献了土壤网络中的重要动态,参与了对陆地生态系统至关重要的大量生态功能。尽管如此,真正的松露之间的相互关系,即产生有价值的水果体的高肌喉菌,以及土壤系统的其他元素在很大程度上是未知数。在这项研究中,我们旨在揭示是否以及多少块茎Aestivum如何影响土壤微生物活动(评估为酶活性),丰度(测定为土壤DNA含量)和细菌遗传多样性以及土壤化学性质。我们将化学和生物变量与英国和外部的化学品和生物变量进行了比较(即松露植被覆盖宿主植物的地区)在两个季节,即春夏,使用线性混合模型和多变量的双块部分最小二乘法。松露存在的区域具有较高的pH但较低的有机碳和氮含量。类似地,除了过氧化物酶外,凸起的所有酶活性比外部较低。基于三种酶活性(β-葡糖苷酶,酸磷酸酯酶和脲酶)的土壤质量指数(即AI3)表明Brule内部的土壤质量降低。总体而言,土壤DNA含量响应了松露存在/缺席和季节的相互作用,而春季细菌遗传多样性指数较高。尽管本研究的观察性质,结果指出,T. aestivum可以被认为是土壤中的一个关键物种,因为它存在于与化学变化以及微生物活性相关的情况下,通常比仅仅是季节性效应更显着但是,虽然需要确认这些关联的致病性质。

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