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Biology subjects

Vasquez, M. I.

Publications and source records attributed to Vasquez, M. I..

3 recordsLinked to original sources

Better together: Microbial diversity might facilitate the invasion success of the seagrass Halophila stipulacea in mixed Mediterranean seagrass communities

Microorganisms are increasingly recognized as key facilitators of invasion success for introduced species into new environments. The globally invasive seagrass Halophila stipulacea flourishes in mixed environments with native seagrasses, where it exhibits enhanced growth, while, in contrast, native seagrasses in mixed environments experience reduced growth. Here, we hypothesize that microbes may support the success of invasive seagrass in mixed Mediterranean environments. We analyzed 16S rRNA genes to characterize the microbial diversity on the phyllosphere alongside biochemical, morphological, and sediment nutrient measurements of the Mediterranean-native seagrass Cymodocea nodosa and the invasive H. stipulacea from a controlled mesocosm experiment. Overall, C. nodosa in monoculture harbored a microbiome exhibiting higher ASV richness and a distinct community composition than H. stipulacea. Variation in bacterial diversity associated with hydrogen peroxide (H2O2) and internode length suggests that microbial communities of the native seagrass might be shaped by its stress. Conversely, H. stipulaceas microbiome was most abundant in mixed environments, with bacteria significantly reduced in monoculture, and bacterial diversity loosely associated with growth, suggesting that microbes are critical to assisting and possibly facilitating H. stipulacea in mixed environments. Overall, our findings suggest that invasive H. stipulacea in the Mediterranean Sea are capable of recruiting beneficial bacteria, creating microbial interactions that support its success, and undermining the resilience of native seagrasses in mixed beds. Future work should center on the mechanisms driving H. stipulacea bacterial communities and investigating whether H. stipulacea actively determines its own microbiome, or whether its microbiome is passively determined by environmental variables.

microbiology↗

The invasions of Aedes aegypti and Aedes albopictus in Cyprus: current situation, risk modelling and public health implications for the wider Eastern Mediterranean region.

The Asian tiger mosquito, Aedes albopictus and the yellow fever mosquito, Aedes aegypti have been spreading worldwide and are reshaping the distribution of arboviruses. Both Aedes species have recently been observed in densely populated cities of Cyprus, a touristic island that is a historic bridge between Europe and Asia. Given the high public health stakes for Cyprus and the wider East Mediterranean region, the objectives of this study are three-fold. First, we present a novel delimitation strategy using spatially dense networks of ovitraps deployed in 500x500m cells in Limassol and Larnaca following the detection of Aedes species. Second, we use a dynamical vector model to estimate the potential of both species to spread further over Cyprus. Finally, we employ a basic reproduction number (R0) model to assess the potential transmission risk of arboviruses for the wider East Mediterranean region. Our results underline our delimitation strategys usefulness in delineating Ae. albopictus populations in Limassol and indicate the need for increased surveillance efforts for Ae. aegypti in Larnaca. Our vector model reveals that cities such as Nicosia, Paphos and Ayia Napa are climatically suitable for the establishment of both Ae. aegypti and Ae. albopictus. Finally, the R0 model captures historical hotspots of dengue transmission over the East Mediterranean region, with large R0 values simulated over Cyprus, Greece, Turkey, southern Italy and southern Spain. We recommend stringent vector surveillance at entry points in Greece and a rapid elimination in Cyprus to prevent the return of Ae. aegypti to the European continent.

ecology↗

Integrating environmental DNA monitoring to inform eel (Anguilla anguilla) status in freshwaters at their easternmost range - A case study in Cyprus

AimDespite significant population declines and targeted EU regulations aimed at A. anguilla conservation, little attention has been given to their status at their easternmost range. This study applies wide scale integrated monitoring to uncover the present-day eel distribution in Cyprus inland freshwaters. These are subject to increasing pressures from water supply requirements and dam construction, as seen throughout the Mediterranean. LocationCyprus. MethodsWe applied environmental DNA metabarcoding of water samples to determine A. anguilla distribution in key freshwater catchments. In addition, we present this alongside ten years of electrofishing/netting data. Refuge traps were also deployed to establish the timing of glass eel recruitment. These outputs are used together, alongside knowledge of the overall fish community and barriers to connectivity, to provide eel conservation and policy insights. ResultsWe confirm the presence of A. anguilla in Cyprus inland freshwaters, with recruitment occurring in March. Eel distribution is restricted to lower elevation areas, and is negatively associated with distance from coast and barriers to connectivity. Many barriers to connectivity are identified, though eels were detected in 2 reservoirs upstream of dams. The overall fish community varies between freshwater habitat types. Main ConclusionsEels are much more widespread in Cyprus than previously thought, yet mostly restricted to lowland intermittent systems. This makes for a case to reconsider the requirement for eel management plans. Environmental DNA based data collected in 2020 indicate that present-day eel distribution is representative of 10-year survey trends. Suggesting that inland freshwaters may act as an unrealised refuge at A. anguillas easternmost range. Conservation efforts in Mediterranean freshwaters should focus on improving connectivity, therefore enabling eels to access inland perennial refugia. Thus, mitigating the impact of climate change and the growing number of fragmented artificially intermittent river systems.

ecology↗