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Biology subjects

Vasilita, C.

Publications and source records attributed to Vasilita, C..

2 recordsLinked to original sources

Level of host concealment shape parasitoid community of microlepidopteran species living on hops

1. BackgroundParasitoid-host interactions are key drivers of insect community structure, with host concealment influencing parasitoid diversity and parasitism rates. However, the effectiveness of different host defense strategies against parasitoids remains insufficiently understood. 2. ObjectiveThis study examines how host concealment level affects parasitoid communities and parasitism rates in two microlepidopteran species developing on hops (Humulus lupulus L.), Caloptilia fidella and Cosmopterix zieglerella, which employ leaf-rolling and leaf-mining strategies, respectively. 3. MethodsWe combined morphological identification with molecular species delimitation using ITS2 and CO1 markers and applied ASAP and bPTP methods to refine parasitoid taxonomy and detect cryptic species. 4. ResultsSemi-concealed C. fidella larvae in leaf rolls experienced significantly higher parasitism than their mining stages, whereas fully concealed C. zieglerella had lower parasitism rates. Molecular analyses confirmed the idiobiont strategy in Sympiesis acalle, S. sericeicornis, and Elachertus fenestratus, and bPTP proved more sensitive in detecting cryptic species than ASAP. 5. SignificanceThese findings demonstrate that semi-concealed hosts face a higher risk of parasitism than fully concealed hosts, suggesting that leaf-mining provides better protection than leaf-rolling in studied hosts. The study also highlights the power of molecular tools in species delimitation, emphasizing their importance for refining parasitoid taxonomy and advancing our understanding of host-parasitoid interactions.

zoology↗

Express barcoding with NextGenPCR and MinION for species-level sorting of ecological samples

O_LIDNA barcodes are useful for species-level sorting of specimen samples, but rarely used in time-sensitive projects that require species richness estimates or identification of pest or invasive species within hours. The main reason is that existing express barcoding workflows are either too expensive or can only be carried out in very well equipped laboratories by highly trained staff. C_LIO_LIWe here introduce a simple workflow that combines rapid DNA extraction with HotSHOT, amplicon production with the aid of NextGenPCR(R) thermocyclers, and sequencing with low-cost MinION sequencers. C_LIO_LIWe demonstrate the power of the approach by generating and identifying 250 barcodes for 285 specimens within 6 hours. The workflow only required the following major equipment that easily fits onto a lab bench: Conventional thermocycler, NextGenPCR(R) thermocycler, microplate sealer, Qubit, and MinION. C_LIO_LIWe argue that species-level sorting with simplified barcoding workflows is now faster, more accurate, and sufficiently cost-effective that it can and should replace morphospecies sorting in many projects. C_LI

ecology↗