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  5. Soil microbial communities dynamics in response to invasive groundcover Carpobrotus: Insights into native species interactions and edaphic influence

Soil microbial communities dynamics in response to invasive groundcover Carpobrotus: Insights into native species interactions and edaphic influence

Author(s)
Canini, Fabiana
Borruso, Luigimaria
Magrini, Sara  
D'Acqui, Luigi Paolo
Buzzini, Pietro
more
Date Issued
2024
Type
article
Volume
202
DOI
10.1016/j.apsoil.2024.105537
Journal
APPLIED SOIL ECOLOGY  
Abstract
Alien invasive plant species of the genus Carpobrotus pose a major threat to coastal dune ecosystems. These human-introduced species have quickly expanded throughout the Mediterranean basin and other regions due to their high reproduction rates and adaptability. Carpobrotus invasion alters soil properties due to necromass and the release of allelopathic compounds, hindering the regrowth of native flora, with anticipated impacts on the native vegetation-associated soil microbial communities. While some studies have described changes in microbial communities between native and Carpobrotus-impacted areas, none have specifically addressed the responses of microbial communities associated with single native species. In this light, the bacterial and fungal communities specifically associated with different native species in both natural and Carpobrotus-impacted plots were examined in three locations along the middle Tyrrhenian Italian coast. Microbial communities responses to the Carpobrotus invasion varied greatly depending on the native species and the edaphic characteristics of the study locations. Microbial communities associated with Pancratium maritimum were the most affected ones and those associated with Cakile maritima the less sensitive to the invasion, which may be correlated to the different characteristics of these plant species. Furthermore, fungal communities exhibited a greater degree of disruption compared to bacterial ones. In invaded plots, fungal species that comprise plant pathogens were notably more abundant. This suggests that patterns in microbial communities response to this invasion phenomenon cannot be generalized, and that recovery strategies should consider various local conditions and be adjusted for the various native vegetation species. Finally, the possible spread of fungal plant pathogens as a mechanism of defence of Carpobrotus should be considered.
Subjects

Allelopathic effect

Coastal dunes

Invasive plant specie...

Pathogenic fungi

Handle
http://hdl.handle.net/2067/52249
File(s)
Thumbnail Image
Name

2024_Canini_et_al_AppliedSoilEcology.pdf

Size

3.11 MB

Format

Adobe PDF

Checksum (MD5)

1d89c5a760a1b2b5b0cfc8a5d53c2408

Related items
Metrics
Project(s)
Gruppi di Ricerca 2020, POR FESR Lazio 2014–2020, n. A0375 2020 36691

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