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Biology subjects

Matveev, S.

Publications and source records attributed to Matveev, S..

3 recordsLinked to original sources

Entomopathogenic fungi as dual-function biocontrol agents: persistence and microbiome modulation in date palm soils

The effects of entomopathogenic fungi (EPF) on native soil microbiota are poorly understood. Here, we investigated the persistence of the EPF Metarhizium brunneum and Beauveria bassiana as preventive treatments for date palms against the red palm weevil, Rhynchophorus ferrugineus, and monitored the microbial community within the palms. We assessed the changes in the soil microbiota of the palms following application by fungal soil isolation techniques, high-throughput metagenomics, EPF persistence assays, and accompanied that with a continuous monitoring of date palm health. EPF preemptive treatments significantly improved palm protection against the weevil. While both EPF species persisted for 180 days post-application, their effectiveness diverged, with B. bassiana providing longer palm protection. Overall microbial community composition showed no major changes following EPF applications; however, transient alterations increased the relative abundance of local EPF genera, with dominant taxa being more likely to persist. Both EPF treatments enhanced the relative abundance of nitrogen-fixing bacteria, organic matter decomposers, and ammonia-oxidizing archaea, suggesting potential implications for nutrient cycling that require further validation through direct functional measurements. B. bassiana induced the strongest temporal effects on diversity indices, while M. brunneum was more persistent but showed no significant changes in diversity indices compared to the control. These results highlight EPF as a multifunctional biocontrol agent - moderately shaping soil microbiomes for beneficial ecosystem functions.

microbiology↗

Female Moths Incorporate Plant Acoustic Emissions into Their Oviposition Decision

Insects rely on plants visual, chemical, tactile, and electrical cues when making various decisions. A recent study demonstrated that dehydrated plants emit ultrasonic sounds within the auditory sensitivity range of many moth species. In this study, we sought to determine whether insects also rely on plant acoustic signals when making decisions. We investigated whether female moths rely on ultrasonic clicks which are typically produced by dehydrated plants when deciding where to oviposit. In the absence of an actual plant, the moths indeed preferred to lay their eggs in proximity to acoustic signals which represent dehydrating plants. Tracking the moths behavior prior to the decision showed that they examined both sides of the arena and gradually spent more time on the acoustic-playback side. Interestingly, when actual plants were added to the arena, the oviposition preference was reversed and the moths preferred silent plants, which is in accordance with their a-priori preference for hydrated plants. Deafening the moths eliminated their preference, confirming that the choice was based on hearing. Moreover, the presence of male moths including their auditory signals did not affect their oviposition decision, suggesting that the response was specific to plant sound emissions. We reveal evidence for a first acoustic interaction between moths and plants, but as plants emit various sounds, our findings hint to the existence of more currently unknown insect-plant acoustic interactions.

animal behavior and cognition↗

The efficacy of the Entomopathogenic Fungus, Beauveria bassiana, in Date Palm Protection against the Red Palm Weevil, Rhynchophorus Ferrugineus, Under Hot Dessert Climate

The red palm weevil (Rhynchophorus ferrugineus; RPW) is an important pest threatening date palm cultivation worldwide. Conventional insecticide-based management is limited by environmental concerns and the development of resistance in RPW populations. Entomopathogenic fungi (EPF), such as Beauveria bassiana, offer a promising biocontrol alternative. While laboratory and semifield studies have demonstrated their potential as insecticides, evidence from field-scale applications under diverse environmental conditions remains scarce. This study evaluated the seasonal efficacy and persistence of B. bassiana as a preventive treatment against RPW in male and female date palm groves subjected to different cultivation practices in Israels Arava region. Healthy palms were equipped with IoTree sensors to monitor RPW infestation dynamics. EPF treatments were applied at the start of each season, and control trees were left untreated. Soil samples were collected seasonally to quantify fungal colony-forming units (CFUs) and assess their association with treatment outcomes. Results demonstrated a significant seasonal influence on EPF efficacy, with autumn treatments yielding the highest reduction in infestation rates, and summer applications showing limited effectiveness. Efficacy also varied between grove types: spring applications were most effective in male groves, whereas autumn treatments were superior in female groves. A positive correlation was found between B. bassiana CFUs in the soil and palm health, indicating that EPF persistence enhances treatment success. These findings highlight the importance of seasonal and site-specific optimization of EPF-based biocontrol strategies. Further research is needed to refine application schedules and validate outcomes across larger-scale trials.

ecology↗