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Cesari, L.

Publications and source records attributed to Cesari, L..

2 recordsLinked to original sources

Core Bacterial and Host Fruit-Specific Yeast Microbiota in a Polyphagous Fly Pest

Holometabolous polyphagous insects undergo metamorphosis and exploit multiple host plants, exposing them to highly variable ecological conditions across both life stages and host plants. Whether these insects harbour a stable core microbiota, a life stage- or a host plant-specific microbiota remain open questions. Here, we characterised fungal and bacterial communities associated with Drosophila suzukii across life stages (larvae, pupae and emerging flies) and host fruits (cherry, blackberry and strawberry) using 16S and ITS metabarcoding. We tested the relative influence of life stage and host fruit on microbiota composition using community and network-based analyses. First, we identified that yeasts, but not bacteria, were strongly structured among host fruits. Bacteria and filamentous fungi were shared across fruits, constituting a fruit core microbiota dominated by Gluconobacter cerinus, Tatumella sp. and Cladosporium spp. In contrast, yeast were rather fruit-specific: Hanseniaspora and Pichia genera mostly associated with cherries and strawberries, contrary to Metschnikowia with blackberries. Second, we found that fungal, but not bacterial, communities of D. suzukii were structured among host fruits. D. suzukii harboured a core bacterial microbiota composed of G. cerinus and a niche-specific (host plant-specific) microbiota composed of yeasts: Hanseniaspora typical in individuals related to cherry and strawberry, and Metschnikowia to blackberry. We also verified that individuals from artificial laboratory infestations and natural field infestations harboured similar microbial communities when they developed under the same laboratory conditions. Components of both core and niche-specific microbiota were most likely horizontally acquired by D. suzukii from host fruits. Taken together our results underline the importance of metacommunity approaches to investigate tripartite interactions among insects, host plants and microbiota.

ecology↗

Broadleaved hedgerows as complementary habitats for small mammals in pine plantation landscapes

O_LIThe global decline of natural forests is accompanied by a rapid expansion of commercial tree plantations, which are expected to further increase to meet growing demand for wood products. However, planted forests generally support lower biodiversity than natural forests, particularly when monospecific and intensively managed. In this context, broadleaved hedgerows have been proposed as a nature-based solution to enhance biodiversity within conifer-dominated plantation landscapes. Such features may be especially beneficial for small mammals, including rodents and shrews, which are key contributors to forest ecosystem functioning. However, their effects on small mammal communities remain largely unquantified. C_LIO_LIHere, we assessed variation in small mammal communities among habitat types within a native pine plantation-dominated landscape in southwestern France. Using a multi-year, multi-season survey, we compared species richness and abundance among plantation edges, broadleaved hedgerows embedded within plantations and natural broadleaved forests. We further tested whether environmental descriptors of hedgerow sites influenced dominant species and whether seasonal and interannual demographic dynamics modified habitat-related patterns. C_LIO_LIPine plantation edges and broadleaved hedgerows supported lower small mammal species richness than natural broadleaved forests and were dominated by two habitat generalists, Apodemus sylvaticus and Crocidura russula. This pattern was driven by the near absence of the forest specialist Clethrionomys glareolus. Hedgerows did not increase species richness relative to plantations, but provided favourable habitat for A. sylvaticus, which was scarce in pine plantation, while supporting fewer C. russula. Variation in hedgerow structure and composition further influenced A. sylvaticus abundance, while seasonal and interannual rodent population dynamics modulated habitat-related differences. C_LIO_LIOur results indicate that intensively managed pine plantations act as environmental filters, excluding forest-associated small mammals. While broadleaved hedgerows benefited one species, their capacity to restore forest-specialist communities was limited without broader landscape-scale interventions. These findings highlight both the ecological benefits and constraints of edge-based habitat interventions and provide guidance for designing and evaluating biodiversity-oriented management in plantation landscapes. C_LI

ecology↗