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Species-abundance distribution patterns of soil fungi: contribution to the ecological understanding of their response to experimental fire in Mediterranean maquis (southern Italy). | LitMetric

AI Article Synopsis

  • Experimental fires were conducted in Castel Volturno Nature Reserve, Italy, from 2000-2002 to study soil fungal communities.
  • Soil samples were analyzed to understand the dynamics of xerotolerant and heat-stimulated fungi following low and high-intensity fires.
  • The findings indicated that these fungi increase in abundance post-disturbance, with their species distribution changing from broken-stick models to logarithmic and log-normal models over time.

Article Abstract

Experimental fires, of both low and high intensity, were lit during summer 2000 and the following 2 y in the Castel Volturno Nature Reserve, southern Italy. Soil samples were collected Jul 2000-Jul 2002 to analyze the soil fungal community dynamics. Species abundance distribution patterns (geometric, logarithmic, log normal, broken-stick) were compared. We plotted datasets with information both on species richness and abundance for total, xerotolerant and heat-stimulated soil microfungi. The xerotolerant fungi conformed to a broken-stick model for both the low- and high intensity fires at 7 and 84 d after the fire; their distribution subsequently followed logarithmic models in the 2 y following the fire. The distribution of the heat-stimulated fungi changed from broken-stick to logarithmic models and eventually to a log-normal model during the post-fire recovery. Xerotolerant and, to a far greater extent, heat-stimulated soil fungi acquire an important functional role following soil water stress and/or fire disturbance; these disturbances let them occupy unsaturated habitats and become increasingly abundant over time.

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Source
http://dx.doi.org/10.3852/11-425DOI Listing

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