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Biology subjects

Zriki, G.

Publications and source records attributed to Zriki, G..

2 recordsLinked to original sources

A fast and reliable larval sampling method for improving the monitoring of fruit flies in soft and stone fruits

The spotted-wing drosophila, Drosophila suzukii (Matsumura) (Diptera: Drosophilidae), threatens both the soft-skinned and stone fruit industry in Asia, Europe and America. Integrated pest management requires monitoring for infestation rates in real-time. Although baited traps are widely used for field monitoring, trap captures are weakly correlated to infestation rates. Thus, monitoring for larvae instead of adult flies represents the most reliable monitoring technique. Current methods for larval monitoring (e.g. dunk flotation) are both time-consuming and labor-intensive. In this study, we develop the sleeve method, a new method for monitoring larval infestation in strawberries through the inspection of fruits individually crushed within transparent plastic sleeves. Based on count data from both specialist and non-specialist observers, the estimation of larval infestation with the sleeve method is fast, precise and highly repeatable within and among all observers. Mean processing time is twice faster than previous methods and varies from 33 to 80 seconds per sample, depending on infestation levels. As the accuracy of the sleeve method decreases with infestation levels, we suggest ways to improve its accuracy by incubating fruits for 48h and calibrating data with exact counts. This new method is easier to use, faster and more cost-effective than previous monitoring methods. It could be used to monitor D. suzukii infestations in various fruit crops and is scalable to the farm-level for fruit growers or for academic research. Finally, the method represents a promising monitoring tool for effective management programs of D. suzukii and other insect pests of soft and stone fruits.

ecology↗

Can intraspecific variation in a herbivorous mite alter responses to drought-stressed host plant? A common garden experiment in the context of climate change

Drought associated with climate change can stress plants, altering their interactions with phytophagous arthropods. Drought not only impacts cultivated plants but also their parasites, which in some cases are favored by drought. Herbivorous arthropods feeding on drought-stressed plants typically produce bigger offspring and develop faster. However, it is unclear how much responses to drought stress differ among populations of herbivore species. Here, we evaluate variability among populations of a major agricultural pest, the two spotted spider mite, Tetranychus urticae, in response to drought stress. We compare key life history parameters of twelve populations that originate from climates ranging from wet and cool Atlantic locations to medium to dry hot Mediterranean locations. We evaluated how plant drought stress affects four life history traits: development time, fecundity, sex-ratio and emigration rate in an experiment comparing well-watered and drought-stressed bean plants. Mites feeding on drought-stressed plants developed faster and attempted to leave leaves less often, and young females were more fecund. The mites from wet temperate climates exhibited greater plasticity between the two water regimes than mites originating from dryer and hot climates, suggesting that the climate in the area of origin influences mite response to drought.

zoology↗