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Tzanetakis, I.

Publications and source records attributed to Tzanetakis, I..

2 recordsLinked to original sources

Quantification of rose rosette emaravirus (RRV) titers in eriophyoid mites: insights into viral dynamics and vector competency

Understanding the interaction between rose rosette emaravirus (RRV) and its vectors is pivotal in addressing the epidemic outbreak of rose rosette disease. This study employed quantitative real-time RT-PCR to assess RRV genome copy numbers in Phyllocoptes fructiphilus and P. adalius, providing insights into the viral dynamics and vector competency. Our findings suggest active virus replication within P. fructiphilus, a confirmed vector species, unlike P. adalius, highlighting its non-vector status. Furthermore, the study highlights the variability in virus concentration in mites over time, underlining possible developmental stage-specific response and influence of mite lifestyle on RRV retention and replication. This research is the first step in understanding the virus-mite interactome, which is essential for developing effective management strategies against rose rosette disease.

pathology↗

Development of rapid and affordable virus-mimicking artificial positive controls

A major bottleneck in the development of detection assays is the availability of positive controls. Their acquisition can be problematic; their maintenance is expensive and without them assays cannot be validated. Herein we present a novel strategy for the development of virus-mimicking positive controls (ViMAPCs). The time between design and application is less than five days, unlike alternatives which normally take several weeks to obtain and implement. The ViMAPCs provide a realistic representation of natural infection unlike alternatives and allow for an effortless recognition of lab-based contamination. The feasibility and adaptability of the strategy was evaluated using several RNA and DNA viruses. ViMAPCs can be used in diagnostics labs but also in monitoring of pathogen outbreaks where rapid response is of utmost importance.

molecular biology↗