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天然松露产地中白松露菌丝体的时空动态

Spatio-temporal dynamic of Tuber magnatum mycelium in natural truffle grounds.

作者信息

Iotti Mirco, Leonardi Marco, Lancellotti Enrico, Salerni Elena, Oddis Marilena, Leonardi Pamela, Perini Claudia, Pacioni Giovanni, Zambonelli Alessandra

机构信息

Department of Agricultural Sciences, Bologna University, Bologna, Italy.

Department of Life, Health and Environmental Sciences, L'Aquila University, L'Aquila, Italy.

出版信息

PLoS One. 2014 Dec 23;9(12):e115921. doi: 10.1371/journal.pone.0115921. eCollection 2014.

Abstract

Tuber magnatum produces the world's most expensive truffle. This fungus produces very rare ectomycorrhizas which are difficult or even impossible to detect in the field. A "real-time" PCR assay was recently developed to quantify and to track T. magnatum mycelium in soil. Here, this technique was used to investigate the spatial distribution of T. magnatum extra-radical mycelium in soil productive patches and its dynamic across seasons. This study was carried out in four different natural T. magnatum truffle grounds located in different Italian regions. During the fruiting seasons, the amount of T. magnatum mycelium was significantly higher around the fruiting points and decreased going farther away from them. Moreover, T. magnatum mycelium inside the productive patches underwent seasonal fluctuations. In early spring, the amount of T. magnatum mycelium was significantly higher than in summer. In summer, probably due to the hot and dry season, T. magnatum mycelium significantly decreased, whereas in autumn it increased again and was concentrated at the putative fruiting points. These results give new insights on T. magnatum ecology and are useful to plan the most appropriate sampling strategy for evaluating the management of a truffle ground.

摘要

白松露菌能产出世界上最昂贵的松露。这种真菌会形成极为罕见的外生菌根,在野外很难甚至无法检测到。最近开发了一种“实时”聚合酶链反应(PCR)检测方法,用于量化和追踪土壤中的白松露菌菌丝体。在此,该技术被用于研究白松露菌根外菌丝体在土壤生产斑块中的空间分布及其随季节的动态变化。本研究在位于意大利不同地区的四个不同的天然白松露菌产地进行。在产菇季节,白松露菌菌丝体的数量在产菇点周围显著更高,并且离产菇点越远数量越少。此外,生产斑块内的白松露菌菌丝体经历了季节性波动。早春时,白松露菌菌丝体的数量显著高于夏季。在夏季,可能由于炎热干燥的季节,白松露菌菌丝体显著减少,而在秋季又再次增加,并集中在假定的产菇点。这些结果为白松露菌的生态学提供了新的见解,有助于规划最合适的采样策略,以评估松露产地的管理情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ba7/4275250/a09b66b73ed4/pone.0115921.g001.jpg

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