Each year, the Department of Entomology at Virginia Tech hosts an entomology-themed outreach event known as Hokie BugFest. This on-campus, festival-sized experience aims to educate the public about insects and other arthropods through hands-on activities, games, displays, and live arthropods. In 2021, due to the COVID-19 pandemic, Hokie BugFest and similar large public events were cancelled. In response, the department launched Hokie BugFest on the Go, which offered smaller-scale, in-person learning opportunities during these closures. Instead of hosting the community on campus, Virginia Tech’s Department of Entomology brought live arthropods, university experts, and the exciting science of entomology directly into schools, fostering small-group, hands-on learning experiences. In 2022, a playful assessment was added to the traveling outreach program to measure changes in student attitudes and perceptions of insects and other arthropods before and after the program. The assessment also gauged students’ favorite arthropods after seeing, and in some cases handling, them live during the program. Assessment results revealed valuable insights into how hands-on, applied learning experiences can shift children’s attitudes toward arthropods. Results showed that even after expressing trepidation and fears, students’ knowledge and comfort levels with insects and other arthropods increased as they interacted and learned throughout the program. These findings underscore the value of using engaging, hands-on, small-group approaches when designing entomology-themed outreach events for young audiences and offer guidance for future programs.
Two survey questionnaires distributed to Master Gardener (MG) volunteers in Virginia provide valuable insights into their awareness, understanding, and utilization of integrated pest management (IPM). Survey responses reveal a varied level of familiarity with IPM, with a notable percentage of respondents lacking knowledge of the term and differing perceptions of its focus on non-chemical or chemical pest control methods. While respondents generally recommended IPM solutions more than half the time, factors limiting their decision to do so included comfort level, limited understanding or knowledge, lack of training, lack of client interest, and lack of resources. The survey results highlight an agreement among respondents regarding the adequacy of state Cooperative Extension Service materials in addressing IPM. Pest management guides, websites, and fact sheets were the IPM resources most frequently used and perceived as effective. Respondents expressed a preference for fact sheets as the top resource material to enhance public training programs, followed by other multimedia content. Moreover, the survey results provide insights into the specific pest-related needs of Virginia MGs, revealing their priorities in terms of arthropod, vertebrate pest, plant disease, and weed resource topics. Overall, the data from the surveys offers a comprehensive understanding of MG perspectives on IPM, identifying areas for program improvement and providing guidance for the development of targeted resources to enhance MG knowledge and facilitate more effective public outreach.
Over the past several decades, there has been a growing prevalence of entomology-themed outreach events, which seek to educate the public about insects and other arthropods, fostering a greater appreciation and understanding of these often misunderstood organisms. In 2016, a comparative analysis was initiated to identify science institutions across the United States engaged in providing annual entomology-themed outreach events to the public. Utilizing literature reviews and online searches, several science institutions were identified and subsequently contacted to partake in a survey regarding their events. The survey received a response rate of 93%. Results from the survey offered valuable insights into these entomology-themed outreach events, including records of attendance, event structures, funding sources, popular exhibits, and the impacts on attendees, hosting institutions, and local communities. While the majority of these events have remained in place since the survey, many have experienced significant disruptions due to the COVID-19 pandemic, prompting some to adapt to innovative online formats and virtual experiences. Despite these challenges, the commitment to entomological outreach continues today, highlighting the resilience and adaptability of the entomology community.
The peachtree borer, Synanthedon exitiosa, is an economically important wood boring pest of peach and other stone fruit trees throughout much of the United States. Infestation and damage by larvae of this species is generally confined to the trunk and roots near the soil line. A two-year field experiment was conducted in a commercial peach orchard to study the effect of orchard floor weed cover on incidence of peachtree borer infestation in peach blocks under two different pest management regimes; mating disruption and conventional insecticides. During the study, weed cover did not significantly affect the mean percentage of peach trees infested by peach tree borer, regardless of management regime. A weak to small, negative Pearson correlation coefficient existed between weed cover ratings and the percentage of infested trees. Our hypothesis that weed free (bare soil) areas around the trunks of peach trees would favor peachtree borer infestation was not supported by our data.
As part of an insect resistance management plan to preserve Bt transgenic technology, annual monitoring of target pests is mandated to detect susceptibility changes to Bt toxins. Currently Helicoverpa zea (Boddie) monitoring involves investigating unexpected injury in Bt crop fields and collecting larvae from non-Bt host plants for laboratory diet bioassays to determine mortality responses to diagnostic concentrations of Bt toxins. To date, this monitoring approach has not detected any significant change from the known range of baseline susceptibility to Bt toxins, yet practical field-evolved resistance in H. zea populations and numerous occurrences of unexpected injury occur in Bt crops. In this study, we implemented a network of 73 sentinel sweet corn trials, spanning 16 U.S. states and 4 Canadian provinces, for monitoring changes in H. zea susceptibility to Cry and Vip3A toxins by measuring differences in ear damage and larval infestations between isogenic pairs of non-Bt and Bt hybrids over three years. This approach can monitor susceptibility changes and regional differences in other ear-feeding lepidopteran pests. Temporal changes in the field efficacy of each toxin were evidenced by comparing our current results with earlier published studies, including baseline data for each Bt trait when first commercialized. Changes in amount of ear damage showed significant increases in H. zea resistance to Cry toxins and possibly lower susceptibility to Vip3a. Our findings demonstrate that the sentinel plot approach as an in-field screen can effectively monitor phenotypic resistance and document field-evolved resistance in target pest populations, improving resistance monitoring for Bt crops.
The peachtree borer, Synanthedon exitiosa, and lesser peachtree borer, S. pictipes, are economically important indirect pests of peach in West Virginia. The purpose of this 3-year study was to compare the efficacy of mating disruption and post-harvest trunk sprays of chlorpyrifos insecticide for control of this pest complex in a commercial peach orchard. Overall, Isomate PTB-Dual disruption dispensers applied at a rate of 371/ha significantly disrupted the male mate-finding behavior of S. exitiosa and S. pictipes. In addition, the infestation of peach trees by S. exitiosa larvae did not vary significantly between mating disruption and insecticide treated plots. Hot-spot maps of S. exitiosa infestation showed significant spatial clusters of infestation predominately near the perimeter of all orchard plots, or where trees were missing within and/or between rows. The generation of standard deviational ellipses revelated that the location of S. exitiosa infestations in orchard plots remained relatively constant between years, and were generally oriented in a north and easterly direction, which coincided with the prevailing wind direction. Although our data indicated that mating disruption can provide growers with an effective non-chemical alternative to chlorpyrifos trunk sprays, several variables may affect its long-term success in West Virginia peach orchards; most notably the presence of high population densities, problems with maintaining adequate pheromone coverage, and the need for area-wide implementation.
Broad-spectrum insecticides are the standard control method used in tree fruit orchards to control periodical cicadas (Magicicada spp.) and to reduce associated oviposition injury to woody host plant tissue. The purpose of this study was to evaluate the effectiveness of two organically approved methods; foliar applications of Organic Materials Review Institute (OMRI)-registered insecticides; and physical exclusion to manage periodical cicada oviposition injury in a commercial apple orchard. Insecticides evaluated included kaolin clay and neem thorn karanja oil (mixed in a 1:1 ratio). The physical exclusion method involved covering trees with polypropylene fabric. Oviposition injury assessed during the study included the number of periodical cicada eggnests, eggnests per scar, and flagged branches. Neither kaolin clay nor neem thorn karanja oil significantly reduced periodical cicada oviposition injury compared with the untreated control. Trees covered with exclusion fabric sustained no injury from periodical cicadas. Despite the injury sustained by insecticide-treated and control trees, the extent of periodical cicada oviposition with several tree growth characteristics (tree height, tree canopy width, and trunk circumference) was not significantly correlated.
Bagging fruit with plastic, paper, and two-layer commercial bags was evaluated for control of insect pests and diseases in an experimental apple orchard planted with 'Red Delicious' trees. Results from fruit damage evaluations at harvest showed that bagging significantly reduced fruit damage from direct apple pests compared with non-bagged control plots, and generally provided similar levels of fruit protection when compared with a conventional pesticide spray program. Of the three bagging materials evaluated, plastic bags provided numerically higher levels of fruit protection from insect pests, and two-layer commercial bags provided numerically higher levels of fruit protection from fruit diseases. Fruit quality as measured by percentage Brix was higher in non-bagged control plots than all other treatment plots. Fruit quality as measured by fruit diameter was not significantly different among treatments. Plastic and two-layer commercial bags generally required less time to secure around apple fruit than paper bags. The proportion of bags that remained on fruit until harvest ranged from 0.54⁻0.71 (commercial bags), 0.64⁻0.82 (plastic bags), and 0.32⁻0.60 (paper bags), depending on the year.
mCry3A is one of only four proteins licensed for commercial use in Diabrotica control. Utilizing a colony of western corn rootworm, Diabrotica virgifera virgifera LeConte, selected for resistance to mCry3A, we evaluated how mCry3A resistance was inherited and whether fitness costs were associated with mCry3A resistance. Reciprocal crosses between a selected colony and a control colony were performed; resulting progeny along with parent colonies were evaluated in dose toxicity assays, greenhouse assays, and seedling assays. Dose toxicity assay results were inconclusive, as the highest dose of protein tested did not produce sufficient mortality for accurate LC50 calculation. In whole-plant greenhouse assays on mCry3A-expressing corn, larval relative survival of the selected female × control male reciprocal cross was similar to that of the selected colony, while that of the control female × selected male was intermediate between the mCry3-selected colony and the control colony. However, when adult relative survival in whole-plant greenhouse assays was examined, no significant difference between the reciprocal crosses and the two parent colonies was detected. Heritability calculations based on both larval (0.66) and adult (1.03) survival data indicate that resistance to mCry3A is not inherited in a recessive manner. The selected colony was removed from selection pressure and evaluated after three or eight generations of removal. At three generations of removal from selection, a slight decrease in larval relative survival was detected compared with the selected colony. At eight generations of removal from selection, larval relative survival was comparable with that of the selected colony.
Seed blends containing various ratios of transgenic Bt maize (Zea mays L.) expressing the mCry3A + eCry3.1Ab proteins and non-Bt maize (near-isoline maize) were deployed alone and in combination with a soil applied pyrethroid insecticide (Force CS) to evaluate the emergence of the western corn rootworm, Diabrotica virgifera virgifera LeConte, in a total of nine field environments across the Midwestern United States in 2010 and 2011. Northern corn rootworm, Diabrotica barberi Smith & Lawrence emergence was also evaluated in four of these environments. Both western and northern corn rootworm beetle emergence from all Bt treatments was significantly reduced when compared with beetle emergence from near-isoline treatments. Averaged across all environments, western corn rootworm beetle emergence from 95:5, 90:10, and 80:20 seed blend ratios of mCry3A + eCry3.1Ab: near-isoline were 2.6-, 4.2-, and 6.7-fold greater than that from the 100:0 ratio treatment. Northern corn rootworm emergence from the same seed blend treatments resulted in 2.8-, 3.2-, and 4.2-fold more beetles than from the 100:0 treatment. The addition of Force CS (tefluthrin) significantly reduced western corn rootworm beetle emergence for each of the three treatments to which it was applied. Force CS also significantly delayed the number of days to 50% beetle emergence in western corn rootworms. Time to 50% beetle emergence in the 100% mCry3A + eCry3.1Ab treatment with Force CS was delayed 13.7 d when compared with western corn rootworm beetle emergence on near-isoline corn. These data are discussed in terms of rootworm resistance management.
Oriental fruit moth (OFM): Grapholita molesta (Busck) Plum curculio (PC): Conotrachelus nenuphar (Herbst) Brown marmorated stink bug (BMSB): Halyomorpha halys (Stål) Brown stink bug (BSB): Euschistus servus (Say) Dusky stink bug (DSB): Euschistus tristigmus (Say) Green stink bug (GSB): Acrosternum hilare (Say) Tarnished plant bug (TPB): Lygus lineolaris (Palisot de Beauvois) Obliquebanded leafroller (OBLR): Choristoneura rosaceana (Harris) Tufted apple bud moth (TABM): Platynota idaeusalis (Walker)
The effect of a pheromone antagonist-based disruption blend on disruption of dogwood borer, Synanthedon scitula (Harris), mate-finding behavior and incidence of infestation was evaluated in a commercial apple orchard from 2006 - 2008. Although the pheromone antagonist based disruption blend treatment significantly disrupted-male-mate-finding behavior during-each year of the study, there was a significant increase in the percentage of infested trees from the start to the conclusion of the experiment, likely due to the immigration of mated females from surrounding untreated orchard blocks. In 2007, pheromone-baited traps deployed in an east west transect through the study area showed that capture of male moths increased as the distance from the disruption plot increased. The results of geostatistical analysis indicated that there were high degrees of aggregation in dogwood borer infestations in the study area, with ranges of spatial autocorrelation from 10.2 - 22.5 m. For each year, the spatial distribution of larval infestation was best described by the exponential semiovariogram model. Interpolated surface maps revealed areas of high infestation levels, which were more prevalent within the control 2 plot in 2006 and 2007. Infestation sites increased in size and intensity each year of the study in the disruption and control 1 plot.
Brown marmorated stink bug (BMSB): Halyomorpha halys (Stål