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Mark S Hoddle - One of the best experts on this subject based on the ideXlab platform.

  • Classical Biological Control of invasive legacy crop pests new technologies offer opportunities to revisit old pest problems in perennial tree crops
    Insects, 2014
    Co-Authors: Mark S Hoddle, Keith Douglass Warner, John Steggall, Karen M Jetter
    Abstract:

    Advances in scientific disciplines that support Classical Biological Control have provided “new tools” that could have important applications for bioControl programs for some long-established invasive arthropod pests. We suggest that these previously unavailable tools should be used in Biological Control programs targeting “legacy pests”, even if they have been targets of previously unsuccessful bioControl projects. Examples of “new tools” include molecular analyses to verify species identities and likely geographic area of origin, climate matching and ecological niche modeling, preservation of natural enemy genetic diversity in quarantine, the use of theory from invasion biology to maximize establishment likelihoods for natural enemies, and improved understanding of the interactions between natural enemy and target pest microbiomes. This review suggests that opportunities exist for revisiting old pest problems and funding research programs using “new tools” for developing Biological Control programs for “legacy pests” could provide permanent suppression of some seemingly intractable pest problems. As a case study, we use citricola scale, Coccus pseudomagnoliarum, an invasive legacy pest of California citrus, to demonstrate the potential of new tools to support a new Classical Biological Control program targeting this insect.

  • host range testing of tamarixia radiata hymenoptera eulophidae sourced from the punjab of pakistan for Classical Biological Control of diaphorina citri hemiptera liviidae euphyllurinae diaphorinini in california
    Journal of Economic Entomology, 2014
    Co-Authors: Mark S Hoddle, Raju Pandey
    Abstract:

    Tests evaluating the host range of Tamarixia radiata (Waterson) (Hymenoptera: Eulophidae), a parasitoid of the pestiferous Asian citrus psyllid, Diaphorina citri Kuwayama (Hemiptera: Liviidae), sourced from the Punjab of Pakistan, were conducted in quarantine at the University of California, Riverside, CA. Seven nontarget psyllid species (Þve native and two self- introduced species) representing Þve families were exposed to T. radiata under the following three different exposure scenarios: 1) sequential no-choice tests, 2) static no-choice tests, and 3) choice tests. Nontarget species were selected for testing based on the following criteria: 1) taxonomic relatedness to the target, D. citri; 2) native psyllids inhabiting native host plants related to citrus that could release volatiles attractive to T. radiata; 3) native psyllids with a high probability of occurrence in native vegetation surrounding commercial citrus groves that could be encountered by T. radiata emigrating from D. citri-infested citrus orchards; 4) a common native pest psyllid species; and 5) a beneÞcial psyllid attacking a noxious weed. The results of host range testing were unambiguous; T. radiata exhibited a narrow host range and high host speciÞcity, with just one species of nontarget psyllid, the abundant native pest Bactericera cockerelli Sulc, being parasitized at low levels (5%). These results suggest that the likelihood of signiÞcant nontarget impacts is low, and the establishment of T. radiata in southern California for the Classical Biological Control of D. citri poses negligible environmental risk.

  • Classical Biological Control for the protection of natural ecosystems
    Biological Control, 2010
    Co-Authors: R G Van Driesche, Mark S Hoddle, L Morin, Raymond I Carruthers, Judith Houghgoldstein, Lincoln Smith, David L Wagner, Bernd Blossey, V Brancatini, Richard A Casagrande
    Abstract:

    Of the 70 cases of Classical Biological Control for the protection of nature found in our review, there were fewer projects against insect targets (21) than against invasive plants (49), in part, because many insect Biological Control projects were carried out against agricultural pests, while nearly all projects against plants targeted invasive plants in natural ecosystems. Of 21 insect projects, 81% (17) provided benefits to protection of biodiversity, while 48% (10) protected products harvested from natural systems, and 5% (1) preserved ecosystem services, with many projects contributing to more than one goal. In contrast, of the 49 projects against invasive plants, 98% (48) provided benefits to protection of biodiversity, while 47% (23) protected products, and 25% (12) preserved ecosystem services, again with many projects contributing to several goals. We classified projects into complete Control (pest generally no longer important), partial Control (Control in some areas but not others), and "in progress," for projects in development for which outcomes do not yet exist. For insects, of the 21 projects discussed, 59% (13) achieved complete Control of the target pest, 18% (4) provided partial Control, and 41% (9) are still in progress. By comparison, of the 49 invasive plant projects considered, 27% (13) achieved complete Control, while 33% (16) provided partial Control, and 47% (24) are still in progress. For both categories of pests, some projects' success ratings were scored twice when results varied by region. We found approximately twice as many projects directed against invasive plants than insects and that protection of biodiversity was the most frequent benefit of both insect and plant projects. Ecosystem service protection was provided in the fewest cases by either insect or plant Biological Control agents, but was more likely to be provided by projects directed against invasive plants, likely because of the strong effects plants exert on landscapes. Rates of complete success appeared to be higher for insect than plant targets (59% vs 27%), perhaps because most often herbivores gradually weaken, rather than outright kill, their hosts, which is not the case for natural enemies directed against pest insects. For both insect and plant Biological Control, nearly half of all projects reviewed were listed as currently in progress, suggesting that the use of Biological Control for the protection of wildlands is currently very active.

  • Classical Biological Control of the glassy winged sharpshooter homalodisca vitripennis by the egg parasitoid gonatocerus ashmeadi in the society marquesas and austral archipelagos of french polynesia
    Biological Control, 2009
    Co-Authors: Julie Grandgirard, Jerome N. Petit, Mark S Hoddle, George K. Roderick, Neil Davies
    Abstract:

    Abstract The glassy-winged sharpshooter, Homalodisca vitripennis (Germar) (= H. coagulata [Say]) (Hemiptera: Cicadellidae), was a major exotic pest in French Polynesia until a Classical Biological Control program against this pest was conducted using the host-specific egg parasitoid Gonatocerus ashmeadi Girault (Hymenoptera: Mymaridae). After risk assessment studies indicated an acceptably low potential threat to non-target species, parasitoids were released on Tahiti in May 2005. One year after release, populations of H. vitripennis had decreased by more than 90% in Tahiti and nearby Moorea. Here we present results of impact studies obtained during the second post-release year for G. ashmeadi in Tahiti and Moorea; we also report for the first time on results for eight other H. vitripennis infested islands located in three different archipelagos (Society, Marquesas, and Austral) of French Polynesia. On all infested islands across the three archipelagos, arrival of G. ashmeadi slashed H. vitripennis densities by more than 95%. In Tahiti and Moorea, H. vitripennis populations were maintained at very low densities during the second post-release year. Seasonal fluctuations of H. vitripennis abundance were observed in Tahiti with pest populations being more abundant during the cooler dry season than during the warmer wet season because of lower parasitism rates. Hence, similar seasonal fluctuations of H. vitripennis abundance are expected across all infested archipelagos in French Polynesia.

  • Engineering an invasion: Classical Biological Control of the glassy-winged sharpshooter, Homalodisca vitripennis, by the egg parasitoid Gonatocerus ashmeadi in Tahiti and Moorea, French Polynesia
    Biological Invasions, 2008
    Co-Authors: Julie Grandgirard, Jerome N. Petit, Mark S Hoddle, George K. Roderick, Neil Davies
    Abstract:

    The glassy-winged sharpshooter, Homalodisca vitripennis Germar (=H. coagulata Say) (Hemiptera: Cicadellidae), invaded Tahiti in 1999 and spread rapidly to the main island groups of French Polynesia becoming an important pest. It threatened agriculture, native biodiversity, and created serious social and recreational problems. Further, massive unControlled populations on Tahiti presented an elevated invasion threat to other South Pacific nations. In 2004, a Classical Biological Control program against H. vitripennis was initiated in French Polynesia using the highly host-specific egg parasitoid Gonatocerus ashmeadi Girault (Hymenoptera: Mymaridae). After risk assessment studies indicated an acceptably low level of risk to non-target species, 13,786 parasitoids were released at 27 sites in Tahiti between May and October 2005. Here we present the results of G. ashmeadi and H. vitripennis population surveys during the first year of their interaction in French Polynesia (until mid-May 2006). The impact of G. ashmeadi on H. vitripennis was extremely rapid and high. Parasitism of H. vitripennis egg masses by G. ashmeadi has averaged 80–100% in Tahiti since the introduction of the parasitoid, and populations of H. vitripennis nymphs and adults have decreased by more than 90% since December 2005. Populations of H. vitripennis have been successfully maintained at this low level for more than 1 year. The same results were obtained in nearby Moorea where the parasitoid was probably spread by the unregulated transport of plants infested with parasitized H. vitripennis eggs. Population monitoring continues in order to determine if a stable equilibrium between the pest and the parasitoid has been reached.

Neil Davies - One of the best experts on this subject based on the ideXlab platform.

  • Classical Biological Control of the glassy winged sharpshooter homalodisca vitripennis by the egg parasitoid gonatocerus ashmeadi in the society marquesas and austral archipelagos of french polynesia
    Biological Control, 2009
    Co-Authors: Julie Grandgirard, Jerome N. Petit, Mark S Hoddle, George K. Roderick, Neil Davies
    Abstract:

    Abstract The glassy-winged sharpshooter, Homalodisca vitripennis (Germar) (= H. coagulata [Say]) (Hemiptera: Cicadellidae), was a major exotic pest in French Polynesia until a Classical Biological Control program against this pest was conducted using the host-specific egg parasitoid Gonatocerus ashmeadi Girault (Hymenoptera: Mymaridae). After risk assessment studies indicated an acceptably low potential threat to non-target species, parasitoids were released on Tahiti in May 2005. One year after release, populations of H. vitripennis had decreased by more than 90% in Tahiti and nearby Moorea. Here we present results of impact studies obtained during the second post-release year for G. ashmeadi in Tahiti and Moorea; we also report for the first time on results for eight other H. vitripennis infested islands located in three different archipelagos (Society, Marquesas, and Austral) of French Polynesia. On all infested islands across the three archipelagos, arrival of G. ashmeadi slashed H. vitripennis densities by more than 95%. In Tahiti and Moorea, H. vitripennis populations were maintained at very low densities during the second post-release year. Seasonal fluctuations of H. vitripennis abundance were observed in Tahiti with pest populations being more abundant during the cooler dry season than during the warmer wet season because of lower parasitism rates. Hence, similar seasonal fluctuations of H. vitripennis abundance are expected across all infested archipelagos in French Polynesia.

  • Engineering an invasion: Classical Biological Control of the glassy-winged sharpshooter, Homalodisca vitripennis, by the egg parasitoid Gonatocerus ashmeadi in Tahiti and Moorea, French Polynesia
    Biological Invasions, 2008
    Co-Authors: Julie Grandgirard, Jerome N. Petit, Mark S Hoddle, George K. Roderick, Neil Davies
    Abstract:

    The glassy-winged sharpshooter, Homalodisca vitripennis Germar (=H. coagulata Say) (Hemiptera: Cicadellidae), invaded Tahiti in 1999 and spread rapidly to the main island groups of French Polynesia becoming an important pest. It threatened agriculture, native biodiversity, and created serious social and recreational problems. Further, massive unControlled populations on Tahiti presented an elevated invasion threat to other South Pacific nations. In 2004, a Classical Biological Control program against H. vitripennis was initiated in French Polynesia using the highly host-specific egg parasitoid Gonatocerus ashmeadi Girault (Hymenoptera: Mymaridae). After risk assessment studies indicated an acceptably low level of risk to non-target species, 13,786 parasitoids were released at 27 sites in Tahiti between May and October 2005. Here we present the results of G. ashmeadi and H. vitripennis population surveys during the first year of their interaction in French Polynesia (until mid-May 2006). The impact of G. ashmeadi on H. vitripennis was extremely rapid and high. Parasitism of H. vitripennis egg masses by G. ashmeadi has averaged 80–100% in Tahiti since the introduction of the parasitoid, and populations of H. vitripennis nymphs and adults have decreased by more than 90% since December 2005. Populations of H. vitripennis have been successfully maintained at this low level for more than 1 year. The same results were obtained in nearby Moorea where the parasitoid was probably spread by the unregulated transport of plants infested with parasitized H. vitripennis eggs. Population monitoring continues in order to determine if a stable equilibrium between the pest and the parasitoid has been reached.

Julie Grandgirard - One of the best experts on this subject based on the ideXlab platform.

  • Classical Biological Control of the glassy winged sharpshooter homalodisca vitripennis by the egg parasitoid gonatocerus ashmeadi in the society marquesas and austral archipelagos of french polynesia
    Biological Control, 2009
    Co-Authors: Julie Grandgirard, Jerome N. Petit, Mark S Hoddle, George K. Roderick, Neil Davies
    Abstract:

    Abstract The glassy-winged sharpshooter, Homalodisca vitripennis (Germar) (= H. coagulata [Say]) (Hemiptera: Cicadellidae), was a major exotic pest in French Polynesia until a Classical Biological Control program against this pest was conducted using the host-specific egg parasitoid Gonatocerus ashmeadi Girault (Hymenoptera: Mymaridae). After risk assessment studies indicated an acceptably low potential threat to non-target species, parasitoids were released on Tahiti in May 2005. One year after release, populations of H. vitripennis had decreased by more than 90% in Tahiti and nearby Moorea. Here we present results of impact studies obtained during the second post-release year for G. ashmeadi in Tahiti and Moorea; we also report for the first time on results for eight other H. vitripennis infested islands located in three different archipelagos (Society, Marquesas, and Austral) of French Polynesia. On all infested islands across the three archipelagos, arrival of G. ashmeadi slashed H. vitripennis densities by more than 95%. In Tahiti and Moorea, H. vitripennis populations were maintained at very low densities during the second post-release year. Seasonal fluctuations of H. vitripennis abundance were observed in Tahiti with pest populations being more abundant during the cooler dry season than during the warmer wet season because of lower parasitism rates. Hence, similar seasonal fluctuations of H. vitripennis abundance are expected across all infested archipelagos in French Polynesia.

  • Engineering an invasion: Classical Biological Control of the glassy-winged sharpshooter, Homalodisca vitripennis, by the egg parasitoid Gonatocerus ashmeadi in Tahiti and Moorea, French Polynesia
    Biological Invasions, 2008
    Co-Authors: Julie Grandgirard, Jerome N. Petit, Mark S Hoddle, George K. Roderick, Neil Davies
    Abstract:

    The glassy-winged sharpshooter, Homalodisca vitripennis Germar (=H. coagulata Say) (Hemiptera: Cicadellidae), invaded Tahiti in 1999 and spread rapidly to the main island groups of French Polynesia becoming an important pest. It threatened agriculture, native biodiversity, and created serious social and recreational problems. Further, massive unControlled populations on Tahiti presented an elevated invasion threat to other South Pacific nations. In 2004, a Classical Biological Control program against H. vitripennis was initiated in French Polynesia using the highly host-specific egg parasitoid Gonatocerus ashmeadi Girault (Hymenoptera: Mymaridae). After risk assessment studies indicated an acceptably low level of risk to non-target species, 13,786 parasitoids were released at 27 sites in Tahiti between May and October 2005. Here we present the results of G. ashmeadi and H. vitripennis population surveys during the first year of their interaction in French Polynesia (until mid-May 2006). The impact of G. ashmeadi on H. vitripennis was extremely rapid and high. Parasitism of H. vitripennis egg masses by G. ashmeadi has averaged 80–100% in Tahiti since the introduction of the parasitoid, and populations of H. vitripennis nymphs and adults have decreased by more than 90% since December 2005. Populations of H. vitripennis have been successfully maintained at this low level for more than 1 year. The same results were obtained in nearby Moorea where the parasitoid was probably spread by the unregulated transport of plants infested with parasitized H. vitripennis eggs. Population monitoring continues in order to determine if a stable equilibrium between the pest and the parasitoid has been reached.

  • pre introductory risk assessment studies of gonatocerus ashmeadi hymenoptera mymaridae for use as a Classical Biological Control agent against homalodisca vitripennis hemiptera cicadellidae in the society islands of french polynesia
    Biocontrol Science and Technology, 2007
    Co-Authors: Julie Grandgirard, Jerome N. Petit, Mark S Hoddle, George K. Roderick, Diana M Percy, Neil M Davies
    Abstract:

    Abstract Homalodisca vitripennis (Germar) (=H. coagulata [Say]) (Hemiptera: Cicadellidae) invaded French Polynesia in 1999. A Classical Biological Control program against H. vitripennis was initiated in 2004 aiming to introduce the exotic egg parasitoid Gonatocerus ashmeadi (Girault) (Hymenoptera: Mymaridae) to the Society Islands archipelago. Prior to any release, two risks were assessed: (a) continued unControlled H. vitripennis spread and proliferation in French Polynesia, and (b) non-target impacts by G. ashmeadi on indigenous French Polynesian cicadellids. The primary risk of H. vitripennis is its potential to vector the lethal plant bacterium, Xylella fastidiosa. While the presence of X. fastidiosa in French Polynesia has not yet been demonstrated, the presence of unControlled H. vitripennis greatly elevates the risk of a disease outbreak and thus represents a major threat for numerous plant species. Assessing the risk of G. ashmeadi introduction for native cicadellids first required an inventory of...

Alejandro Tena - One of the best experts on this subject based on the ideXlab platform.

  • host range testing of tamarixia dryi hymenoptera eulophidae sourced from south africa for Classical Biological Control of trioza erytreae hemiptera psyllidae in europe
    Biological Control, 2019
    Co-Authors: Pablo Urbanejabernat, Jesica Perezrodriguez, Kerstin Kruger, Jose Catalan, Rositta Rizza, Estrella Hernandezsuarez, Alberto Urbaneja, Alejandro Tena
    Abstract:

    Abstract The African citrus psyllid, Trioza erytreae, vectors citrus greening or huanglongbing (HLB) disease. The psyllid has been reported from mainland Europe, where it is rapidly spreading from the northwest to the southwest of the Iberian Peninsula. In order to reduce its spread and population levels, a Classical Biological Control program with the parasitoid Tamarixia dryi is under development in Spain. We evaluated the host specificity of T. dryi using 11 non-target psyllid (NTP) species, including five species of the genus Trioza. The psyllids were selected based on phylogenetic and ecological criteria. Tamarixia dryi exhibited a high host specificity. Females did not parasitize any of the 11 NTPs tested, except for one nymph of a gall-forming Trioza species closely related to Trioza montanetana. Tamarixia dryi only laid one egg on a nymph when it was removed from the gall on Convolvulus canariensis and exposed directly to the parasitoid. However, the immature parasitoid died before emerging. We further confirmed that T. dryi did not parasitize a representative triozid species, Trioza laurisilvae, of the endemic Canarian fauna after long time exposure. Our results demonstrate that T. dryi is a highly specific parasitoid and its introduction, release and establishment in Europe within the Classical Biological Control program of T. erytreae should not affect other psyllid species. Therefore, no significant environmental impact is expected.

  • Classical Biological Control of the african citrus psyllid trioza erytreae a major threat to the european citrus industry
    Scientific Reports, 2019
    Co-Authors: Jesica Perezrodriguez, Kerstin Kruger, Alberto Urbaneja, Meritxell Perezhedo, Omar Ruizrivero, Alejandro Tena
    Abstract:

    Citrus greening or huanglongbing (HLB) is the main threat to the European citrus industry since one of its vectors, the African citrus psyllid, Trioza erytreae, has recently become established in mainland Europe. In this context, Classical Biological Control programmes should be implemented to reduce the spread of the psyllid. The aims of this study were to: i) disentangle the parasitoid complex of T. erytreae combining morphological and molecular characterization; and ii) to study the biology of its main parasitoids in its area of origin in South Africa for their future importation into Europe. The main citrus producing areas of South Africa were surveyed during 2017. In contrast to previous studies, the parasitoid complex of T. erytreae included three species of primary parasitoids: Tamarixia dryi, Psyllaephagus pulvinatus and another parasitoid of the genus Tamarixia. Molecular analysis showed that it is a new species closely related to T. dryi. Tamarixia dryi was the most abundant parasitoid but its relative abundance varied among sampling sites. The sex ratio (males/females) of T. dryi and Tamarixia sp. decreased with T. erytreae size and became female biased when psyllid nymphs were larger than 0.6 and 1.2 mm2, respectively. These parasitoids were attacked by three species of hyperparasitoids, Aphidencyrtus cassatus, Marietta javensis and a species of the genus Aphanogmus. Aphidencyrtus cassatus, the most abundant hyperparasitoid, tended to emerge from large nymphs, and adult females lived as long as those of T. dryi. The implications of these results are discussed within the framework of the introduction of T. dryi into Europe.

Jerome N. Petit - One of the best experts on this subject based on the ideXlab platform.

  • Classical Biological Control of the glassy winged sharpshooter homalodisca vitripennis by the egg parasitoid gonatocerus ashmeadi in the society marquesas and austral archipelagos of french polynesia
    Biological Control, 2009
    Co-Authors: Julie Grandgirard, Jerome N. Petit, Mark S Hoddle, George K. Roderick, Neil Davies
    Abstract:

    Abstract The glassy-winged sharpshooter, Homalodisca vitripennis (Germar) (= H. coagulata [Say]) (Hemiptera: Cicadellidae), was a major exotic pest in French Polynesia until a Classical Biological Control program against this pest was conducted using the host-specific egg parasitoid Gonatocerus ashmeadi Girault (Hymenoptera: Mymaridae). After risk assessment studies indicated an acceptably low potential threat to non-target species, parasitoids were released on Tahiti in May 2005. One year after release, populations of H. vitripennis had decreased by more than 90% in Tahiti and nearby Moorea. Here we present results of impact studies obtained during the second post-release year for G. ashmeadi in Tahiti and Moorea; we also report for the first time on results for eight other H. vitripennis infested islands located in three different archipelagos (Society, Marquesas, and Austral) of French Polynesia. On all infested islands across the three archipelagos, arrival of G. ashmeadi slashed H. vitripennis densities by more than 95%. In Tahiti and Moorea, H. vitripennis populations were maintained at very low densities during the second post-release year. Seasonal fluctuations of H. vitripennis abundance were observed in Tahiti with pest populations being more abundant during the cooler dry season than during the warmer wet season because of lower parasitism rates. Hence, similar seasonal fluctuations of H. vitripennis abundance are expected across all infested archipelagos in French Polynesia.

  • Engineering an invasion: Classical Biological Control of the glassy-winged sharpshooter, Homalodisca vitripennis, by the egg parasitoid Gonatocerus ashmeadi in Tahiti and Moorea, French Polynesia
    Biological Invasions, 2008
    Co-Authors: Julie Grandgirard, Jerome N. Petit, Mark S Hoddle, George K. Roderick, Neil Davies
    Abstract:

    The glassy-winged sharpshooter, Homalodisca vitripennis Germar (=H. coagulata Say) (Hemiptera: Cicadellidae), invaded Tahiti in 1999 and spread rapidly to the main island groups of French Polynesia becoming an important pest. It threatened agriculture, native biodiversity, and created serious social and recreational problems. Further, massive unControlled populations on Tahiti presented an elevated invasion threat to other South Pacific nations. In 2004, a Classical Biological Control program against H. vitripennis was initiated in French Polynesia using the highly host-specific egg parasitoid Gonatocerus ashmeadi Girault (Hymenoptera: Mymaridae). After risk assessment studies indicated an acceptably low level of risk to non-target species, 13,786 parasitoids were released at 27 sites in Tahiti between May and October 2005. Here we present the results of G. ashmeadi and H. vitripennis population surveys during the first year of their interaction in French Polynesia (until mid-May 2006). The impact of G. ashmeadi on H. vitripennis was extremely rapid and high. Parasitism of H. vitripennis egg masses by G. ashmeadi has averaged 80–100% in Tahiti since the introduction of the parasitoid, and populations of H. vitripennis nymphs and adults have decreased by more than 90% since December 2005. Populations of H. vitripennis have been successfully maintained at this low level for more than 1 year. The same results were obtained in nearby Moorea where the parasitoid was probably spread by the unregulated transport of plants infested with parasitized H. vitripennis eggs. Population monitoring continues in order to determine if a stable equilibrium between the pest and the parasitoid has been reached.

  • pre introductory risk assessment studies of gonatocerus ashmeadi hymenoptera mymaridae for use as a Classical Biological Control agent against homalodisca vitripennis hemiptera cicadellidae in the society islands of french polynesia
    Biocontrol Science and Technology, 2007
    Co-Authors: Julie Grandgirard, Jerome N. Petit, Mark S Hoddle, George K. Roderick, Diana M Percy, Neil M Davies
    Abstract:

    Abstract Homalodisca vitripennis (Germar) (=H. coagulata [Say]) (Hemiptera: Cicadellidae) invaded French Polynesia in 1999. A Classical Biological Control program against H. vitripennis was initiated in 2004 aiming to introduce the exotic egg parasitoid Gonatocerus ashmeadi (Girault) (Hymenoptera: Mymaridae) to the Society Islands archipelago. Prior to any release, two risks were assessed: (a) continued unControlled H. vitripennis spread and proliferation in French Polynesia, and (b) non-target impacts by G. ashmeadi on indigenous French Polynesian cicadellids. The primary risk of H. vitripennis is its potential to vector the lethal plant bacterium, Xylella fastidiosa. While the presence of X. fastidiosa in French Polynesia has not yet been demonstrated, the presence of unControlled H. vitripennis greatly elevates the risk of a disease outbreak and thus represents a major threat for numerous plant species. Assessing the risk of G. ashmeadi introduction for native cicadellids first required an inventory of...