Добірка наукової літератури з теми "Pentatomidé"

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Статті в журналах з теми "Pentatomidé":

1

Giovannini, Lucrezia, Giuseppino Sabbatini-Peverieri, Patricia Glynn Tillman, Kim Alan Hoelmer, and Pio Federico Roversi. "Reproductive and Developmental Biology of Acroclisoides sinicus, a Hyperparasitoid of Scelionid Parasitoids." Biology 10, no. 3 (March 16, 2021): 229. http://dx.doi.org/10.3390/biology10030229.

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Acroclisoides sinicus (Hymenoptera: Pteromalidae) was described in 1988 from China, but recent findings in Europe and North America within the framework of Halyomorpha halys (Hemiptera: Pentatomidae) biological control indicate a Holarctic distribution. The few records and fragmented information on A. sinicus are derived from generic observations of other species belonging to the same genus, and its biological and ethological traits are still completely unexplored. It was suspected to be a facultative or obligate hyperparasitoid of many egg parasitoid species (e.g., Scelionidae and Eupelmidae), especially those parasitizing Pentatomidae eggs. Laboratory colonies of A. sinicus were established from specimens collected in the field in Europe and the USA, which allowed us to investigate for the first time the life traits of this somewhat enigmatic species. Our studies confirmed the obligate hyperparasitoid hypothesis for species of Scelionidae but not of Eupelmidae. Laboratory studies revealed that A. sinicus is extremely selective in its host recognition as only the pupal stage of its host species is exploited for parasitization. Taking into consideration its hyperparasitoid habit, the adventive A. sinicus populations in Europe and North America may potentially be severe threats to pentatomid natural control as new components in the trophic chain of pentatomids and their parasitoid guilds.
2

Rădac, Ioan Alexandru, and Maximilian Teodorescu. "First records of Mustha spinosula and Perillus bioculatus (Heteroptera: Pentatomidae) in Romania." Travaux du Muséum National d’Histoire Naturelle “Grigore Antipa” 64, no. 1 (June 30, 2021): 51–59. http://dx.doi.org/10.3897/travaux.64.e64664.

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This study provides data on the first known established populations of two allochthonous species in Romania, Mustha spinosula and Perillus bioculatus. Overwintering, host plants and distribution of these two pentatomids (Heteroptera: Pentatomidae) are briefly discussed. We also provide information on color variation in nymphs of Mustha spinosula and report a new host plant for this species.
3

GONÇALVES, LEONARDO TRESOLDI, PEDRO HENRIQUE PEZZI, and FILIPE MICHELS BIANCHI. "Four new stink bug mitogenomes corroborate the internal inconsistencies in the classification of Pentatomidae (Hemiptera)." Zootaxa 5120, no. 1 (March 24, 2022): 128–42. http://dx.doi.org/10.11646/zootaxa.5120.1.8.

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Stink bugs (Pentatomidae) are a speciose group of insects that feed mostly on plants. Many species are considered agricultural pests of economically important crops around the globe. Mitochondrial genomes are valuable for evolutionary and phylogenetic studies, but have been little explored for Pentatomidae. Here, we characterized the mitochondrial genomes of four pentatomid species (Diceraeus melacanthus, Euschistus heros, Piezodorus guildinii, and Stiretrus anchorago) and performed a comparative analysis for this family and its subfamilies. Stink bug mitogenomes disclosed a conserved gene order and content, although we detected two uncommon armless tRNAs in E. heros and D. melacanthus. Phylogenetic results indicate that Pentatominae is polyphyletic, showing that internal relationships of Pentatomidae should be further investigated. Stink bug mitochondrial genes are under strong purifying selection, except for ATP8 which showed signs of positive selection.
4

Gariepy, Tara D., and Elijah J. Talamas. "Discovery of Trissolcus japonicus (Hymenoptera: Scelionidae) in Ontario, Canada." Canadian Entomologist 151, no. 6 (September 30, 2019): 824–26. http://dx.doi.org/10.4039/tce.2019.58.

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AbstractWe report the detection and adventive establishment of the samurai wasp, Trissolcus japonicus (Ashmead) (Hymenoptera: Scelionidae), a candidate classical biological control agent for the invasive Halyomorpha halys (Stål) (Hemiptera: Pentatomidae), in southwestern Ontario, Canada. Nine naturally laid, field-collected pentatomid egg masses were collected in 2017 and 2018, and two of these egg masses, belonging to Halyomorpha halys and Podisus maculiventris (Say) (Hemiptera: Pentatomidae), produced adults of T. japonicus. The identification of T. japonicus was confirmed using DNA barcoding as well as morphological characteristics. The remaining egg masses yielded adults of the native Telenomus podisi Ashmead (Hymenoptera: Platygastridae) and Anastatus reduvii (Ashmead) (Hymenoptera: Eupelmidae).
5

Grazia, Jocélia, and Aline Barcellos. "Revision of Taurocerus (Heteroptera, Pentatomidae, Pentatomini)." Iheringia. Série Zoologia 95, no. 2 (June 30, 2005): 173–81. http://dx.doi.org/10.1590/s0073-47212005000200007.

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Taurocerus Amyot & Serville, 1843 is revised based on morphology of male and female genitalia. Four species are recognized: T. edessoides (Spinola, 1837), T. achiles Stål, 1862, T. abruptus (Walker, 1867), and T. amazonensis sp. nov. Illustrations of male and female genitalia and a key for the species are provided.
6

Vandervoet, Timothy F., David E. Bellamy, Diane Anderson, and Rory MacLellan. "Trapping for early detection of the brown marmorated stink bug, Halyomorpha halys, in New Zealand." New Zealand Plant Protection 72 (July 26, 2019): 36–43. http://dx.doi.org/10.30843/nzpp.2019.72.316.

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The brown marmorated stink bug (BMSB) would have wide-ranging and likely devastating effects on New Zealand’s horticultural industries if it were to establish here. This insect has spread rapidly around the world, becoming pestiferous only a few years after detection; therefore, there will be limited time to develop management strategies to prevent damage if viable BMSB populations were to establish in New Zealand. Lures containing BMSB pheromone paired with 92 sticky panels were deployed near transitional facilities and other potentially high-risk entry points in the Auckland, Hawke’s Bay and Nelson regions. Traps were monitored fortnightly from November 2018 to April 2019 and all pentatomid species identified and enumerated. No BMSB were captured, but seven other pentatomid species were caught. Numbers and species varied among site, region and date. The phenology of the pentatomids captured supports reports of one to two generations occurring in pipfruitproduction regions depending on growing-degree days. The phenologies of the pentatomid species caught suggest that any control measures for prevention of fruit damage by BMSB would be limited to late summer. A number of recommendations for a BMSB monitoring programme are provided.
7

Samin, Najmeh, and Shahriar Asgari. "A study on the fauna of Scelionid wasps (Hymenoptera: Platygastroidea: Scelionidae) in the Isfahan province, Iran." Archives of Biological Sciences 64, no. 3 (2012): 1073–77. http://dx.doi.org/10.2298/abs1203073s.

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Scelionid wasps (Hymenoptera: Scelionidae) are powerful egg parasitoids which have an efficient role in the biological control of agricultural pests, especially pentatomids (Hemiptera: Pentatomidae). The species diversity of these beneficial insects from Isfahan province is studied in this paper. Twenty species from 2 subfamilies, Scelioninae and Telenominae, were collected and identified. In this paper, the hosts of reared parasitoids are introduced together with the synonyms of scelionid wasps.
8

RIDER, DAVID A., and DANIEL R. SWANSON. "A distributional synopsis of the Pentatomidae (Heteroptera) north of Mexico, including new state and provincial records." Zootaxa 5015, no. 1 (August 3, 2021): 1–69. http://dx.doi.org/10.11646/zootaxa.5015.1.1.

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The species of Pentatomidae known to occur north of Mexico, comprising 223 species in 68 genera, are enumerated with taxonomic notes and updated and annotated distributions. Included in this update are 126 new state records reported for 62 pentatomid species in 30 genera. The copious annotations in these distributions and attendant bibliography serve as an extensive compilation of overlooked references that might contain distributional records for other insect, especially heteropteran, species.
9

RÉDEI, DÁVID, and JING-FU TSAI. "Zhengica cornuta gen. nov., sp. nov., a new genus and species of Pentatomidae from East Asia (Hemiptera: Heteroptera)." Zootaxa 5071, no. 2 (November 23, 2021): 271–82. http://dx.doi.org/10.11646/zootaxa.5071.2.6.

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Zhengica cornuta gen. nov., sp. nov. (Hemiptera: Heteroptera: Pentatomidae: Pentatominae: Pentatomini) from Shanxi, China, is described, illustrated, and its phylogenetic affinities are discussed. The genus is recognized as a generalized member of the clade of Pentatoma Olivier, 1789 and related genera, its phylogenetically closest relative is probably Cervicoris Hsiao & Cheng, 1977.
10

Melo Neto, Antonio J. de, Joseane R. De Souza, Carlos M. Santiago, Francisco A. de S. Pereira, Matheus H. F. Lima, and Ana P. G. da S. Wengrat. "Primeiro registro de parasitoides de ovos de Oebalus poecilus (Dallas, 1851) (Hemiptera: Pentatomidae) em arroz no Maranhão, Brasil." Entomological Communications 2 (December 7, 2020): ec02032. http://dx.doi.org/10.37486/2675-1305.ec02032.

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First record of egg parasitoids of Oebalus poecilus (Dallas, 1851) (Hemiptera: Pentatomidae) in rice in Maranhão, Brazil This is the first report of the species Trissolcus urichi (Crawford, 1913) and Telenomus podisi Ashmead, 1893 (Hymenoptera: Platygastridae) parasitizing Oebalus poecilus (Dallas, 1851) (Hemiptera: Pentatomidae) eggs in rice in Maranhão, Brazil. These parasitoids were collected in the municipality of Itapecuru Mirim, MA, in an area of 0.2 ha cultivated with rice. The eggs collected exhibited an average parasitism of 11.4%. Twenty egg parasitoids were collected and identified, these being one Tr. urichi and nineteen Te. podisi. The presence of these naturally occurring parasitoids in the field opens perspectives for updating the species of parasitoids that parasitize pentatomid eggs in rice fields in Brazil.

Дисертації з теми "Pentatomidé":

1

Martel, Guillaume. "Evaluation en laboratoire du parasitoïde Gryon gonikopalense (Hym ˸ Scelionidae) pour le contrôle biologique de Bagrada hilaris (Hem ˸ Pentatomidae), une punaise invasive aux Etats-Unis." Electronic Thesis or Diss., Montpellier, SupAgro, 2021. http://www.theses.fr/2021NSAM0023.

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Dans un contexte de mondialisation et de changement climatique, de plus en plus d'insectes deviennent invasifs et affectent notamment l'agriculture à l'échelle mondiale. Au cœur de ce réseau d'invasions, les Etats-Unis subissent l'arrivée de nombreuses espèces provenant principalement d'Asie. Parmi elles, les punaises pentatomidés menacent la plupart des agrosystèmes américains et sont aujourd'hui principalement régulées par les pesticides de synthèse. Bagrada hilaris (bagrada), originaire d'Asie et d'Afrique, est la plus récente à avoir colonisé les Etats-Unis où elle sévit depuis 2008 dans les cultures de chou et de brocoli (Brassicaceae). Pour répondre aux besoins des agriculteurs, l'USDA-ARS a financé un programme de lutte biologique classique visant à sélectionner et introduire en Californie un ou plusieurs ennemis naturels de bagrada depuis son aire d'origine. Les travaux inclus dans cette thèse sont une partie de ce programme. Ils ont cherché à évaluer en serre de quarantaine si le parasitoïde oophage Gryon gonikopalense (Scelionidae), originaire du Pakistan, pourrait s'établir en Californie et contrôler efficacement bagrada. Quatre principaux objectifs ont ainsi été définis : 1) décrire la biologie générale de G. gonikopalense ; 2) décrire son comportement de recherche d'hôte ; 3) examiner la possibilité de le produire en masse et 4) évaluer sa spécificité vis-à-vis de bagrada avec des punaises euro-méditerranéennes. L'objectif 1 a permis de montrer que la physiologie de G. gonikopalense était similaire à celle de nombreux autres scelionidés : en fonction de la température, il complète son développement en 7 à 25 jours, peut vivre entre 30 et 150 jours et parasiter une centaine d'œufs au cours de sa vie. Il partage avec bagrada un optimum thermique entre 25 et 35 °C qui pourrait lui permettre de s'établir en Californie. En plus d'être un parasite efficace de bagrada, l'atout de G. gonikopalense réside particulièrement dans son comportement de recherche des œufs de son hôte qui sont enterrés dans le sol dans 90% des cas. Nous avons découvert que G. gonikopalense était capable de creuser le sol pour parasiter les œufs. En outre, nous avons montré dans un système tri-trophique que le parasitoïde attaquait principalement les pontes enterrées de bagrada, tout en étant capable d'atteindre les œufs déposés sur la plante hôte (env. 10%). Pour le 3ème objectif, nous avons montré que le stockage des œufs de bagrada à 5°C sur trois semaines permettait d'optimiser l'élevage du parasitoïde et faciliter une production de masse. Concernant l'objectif 4, toujours en cours, il en résulte que les sur 11 pentatomidés testées, au moins 4 ont été parasitées, dont deux essentiellement localisées autour du bassin méditerranéen. Ces résultats complémentent les tests menés en Californie et permettent de discuter proactivement de l'introduction de G. gonikopalense dans les populations méditerranéennes invasives de bagrada. Finalement, nous avons décrit au cours de cette thèse plusieurs aspects, jusqu'alors inconnus, de la biologie de G. gonikopalense. Sa spécialisation comportementale envers bagrada en fait notamment un candidat de premier choix pour le programme de lutte biologique Une pétition rédigée sur la base de ces connaissances remise aux autorités sanitaires des Etats-Unis restent un objectif à court terme. Ceux-ci évalueront alors les risques et les bénéfices liés à l'utilisation de G. gonikopalense pour contrôler bagrada en Californie
In a context of globalization and climate change, more and more insects are becoming invasive, particularly affecting agriculture on a global scale. At the heart of this network of invasions, the United States of America is experiencing the arrival of many species, mainly from Asia. Among them, stink bugs (Pentatomidae) threaten most American agrosystems and are now mainly regulated by synthetic pesticides. Bagrada hilaris (bagrada), native to Asia and Africa, is the most recent species to invade the USA, where it has been reported since 2008 in Brassicaceae crops. To answer the needs of farmers, USDA-ARS funded a classical biological control program to select and introduce from its native range one or more natural enemies of bagrada into California. The research included in this PhD thesis is part of this program. It sought to assess in a quarantine greenhouse whether the oophagous parasitoid Gryon gonikopalense (Scelionidae), native to Pakistan, could establish in California and efficiently control bagrada. Thus, four main objectives were defined: 1) to describe the general biology of G. gonikopalense; 2) describe its host foraging behavior; 3) examine the possibility of its mass production and 4) assess its specificity towards bagrada using Euro-Mediterranean non-target stink bugs. Objective 1 allowed to show that the physiology of G. gonikopalense was similar to that of many other scelionids: depending on the temperature, it completed its development in 7 to 25 days, its lifespan ranges from 30 to 150 days and it is able to parasitize hundred eggs during its lifetime. It shares with bagrada a thermal optimum between 25 and 35 °C which could allow it to settle in California. In addition to being an effective parasitoid of bagrada, the advantage of G. gonikopalense particularly involves its foraging behavior for host's eggs, which are buried in the ground in 90% of cases. We found that G. gonikopalense was able to dig into the soil to parasitize eggs. In addition, we have shown in a tri-trophic system that the parasitoid mainly attacks the buried eggs of bagrada, while being able to reach the eggs deposited on the host plant (about 10%). For the 3rd objective, we have shown that the storage of bagrada eggs at 5 °C over three weeks made it possible to optimize the breeding of the parasitoid and facilitate mass production. Concerning the objective 4, still in progress, we showed that among the 11 pentatomids tested, at least four were suitable for the parasitoid, and two of them were mainly located around the Mediterranean basin. These results complement the tests carried out in California and open a proactive discussion on the introduction of G. gonikopalense in invasive Mediterranean populations of bagrada. Finally, during this thesis, we have described several aspects, hitherto unknown, of the biology of G. gonikopalense. Its behavioral specialization towards bagrada makes this parasitoid particularly promising for the biological control program. A petition-to-release drafted on the basis of this knowledge submitted to the health authorities of the USA remains a short-term objective. They will then assess the risks and benefits of using G. gonikopalense to control bagrada in California
2

ARIF, Mokhtar. "Chemical ecology of Bagrada hilaris (Burmeister) (Heteroptera: Pentatomidae): intraspecific and interspecific chemical cues." Doctoral thesis, Università degli Studi di Palermo, 2020. http://hdl.handle.net/10447/395181.

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The chemical ecology of Heteroptera insects is determined by a wide array of chemical signals (semiochemicals) that drive their behavior at intra- and inter-specific level. Intraspecific semiochemicals are called pheromones, interspecific chemicals are named allelochemicals. In the case of stink bugs, sex-pheromones and aggregation pheromone are produced by adult males. Furthermore, phytophagous stink bugs exploit chemical cues emitted from plants to find a suitable food and oviposition source. The semiochemicals involved in this process are named kairomones and are generally formed by specific blend or key odorants emitted from host plant. The chemical ecology of the phytophagous Pentatomid species Bagrada hilaris, or Painted bug, native from Asia and invasive in the Americas is characterized by similarities and differences with the other stink bugs. In particular at intraspecific level is been observed that males volatiles attract females, and chemicals analyses showed that both adults produced a similar pattern of chemicals, with the only quantitative difference related to (E)-2-octenyl acetate, produced in higher amounts from males. However, the possible attractant role of this compound at intraspecific level is still to be assessed. Moreover at interspecific level, although B. hilaris is reported to be highly attracted to brassicas, few studies have attempted to elucidate the chemicals cues exploited in its host location process. In the specific, the chemicals cues exploited from this pest in the location of host plant at seedling stage, the stage more vulnerable and subjected to the attack from B. hilaris have still never been investigated.
3

Hopkins, Bradley Wayne. "Species composition and seasonal abundance of stink bugs in cotton in the Lower Texas Gulf Coast and the virulence of Euschistus species to cotton." Thesis, Texas A&M University, 2005. http://hdl.handle.net/1969.1/3307.

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Stink bugs are beginning to emerge as important pests of cotton that often require management in the Lower Texas Gulf Coast. As eradication of the boll weevil progresses and producers increasingly adopt transgenic cotton varieties resulting in reduced broad spectrum pesticide use, stink bugs will likely become key cotton pests in this area. The Lower Texas Gulf Coast has a stink bug complex that differs somewhat from other areas of the Cotton Belt. Euschistus servus and lesser brown stink bugs, including E. quadrator, E. obscurus, E. crassus, and E. ictericus, make up the largest portion of this pest complex, and green/southern green stink bugs play less important roles than in other areas. Using evidence of internal feeding as a sampling criterion detected stink bug infestations more frequently that when using visual or drop cloth sampling methods. The main drawback to using this method is that species composition may still need to be determined when an economic threshold is reached in order to select the most effective control. Euschistus servus and E. quadrator both caused significant reductions in yield and fiber quality in cotton bolls, but E. servus was able to reduce yield and quality in small (1.8 cm), medium (2.8 cm), and large (3.2 cm) bolls, whereas E. quadrator reduced yield in only small bolls and reduced quality in only small and medium bolls. In general, E. servus caused more damage to bolls than E. quadrator and was able to damage a wider range of boll sizes. Dicrotophos was the most effective insecticide for stink bug control. Exposure to pyrethroids caused high mortality in N. viridula similar to that of dicrotophos, but pyrethroid activity was more variable when E. servus were exposed. In general, E. quadrator was more susceptible to insecticide treatments than E. servus, but both had similar mortalities when exposed to organophosphates, pyrethroids, and carbamates. Dynamic evidence of internal feeding thresholds may potentially be the best method for determining the need for stink bug control in cotton, but further research is necessary to refine these thresholds and make them applicable to the Lower Texas Gulf Coast.
4

Guimarães, Humberto Oliveira. "Dinâmica populacional e distribuição espacial de percevejos fitófagos em cultivos de soja [Glycine Max (L.) Merril]." Universidade Federal de Goiás, 2014. http://repositorio.bc.ufg.br/tede/handle/tede/5339.

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Conselho Nacional de Pesquisa e Desenvolvimento Científico e Tecnológico - CNPq
During 2011/2012 and 2012/2013, soybean fields were sampled in all stages. In this case objective of describing the population dynamics of the main species of phytophagous stink bugs and to determine the spatial distribution within field level to understand how is the stink bugs colonize soybean field. Five commercial fields submitted to different management practices were monitored. Sampling surveys to describe the spatial and probability distribution were conducted using regular sampling grids with equidistance of 50 m between sampling points. Fields were sampled weekly for stink bugs in all crop stages. The sampling method used was ground cloth, trough coutn nymphs and adults. The data were subjected to descriptive statistical analysis for better understanding of population dynamics. To verify the statistical distribution to the population of stinkbugs best adjusted of the null hypothesis test. Maps representing the localization of samples of stink bugs in soybean fields were constructed. Euschistus heros was the predominant species, representing 91% of all stink bugs sampled. The stink bug population fluctuation showed an early colonization of the soybean fields, which in the past was restricted to pod formation. Our results indicate that E. heros best fits the negative binomial and occurs randomly distributed in soybean fields what allows to conclude that sampling should be done in the hole field.
Durante as safras de 2011/2012 e 2012/2013 campos de soja foram amostrados em diversos estádios fenológicos da planta. Neste caso objetivou-se conhecer a flutuação populacional das principais espécies de percevejos fitófagos e determinar a sua distribuição espacial na lavoura com o intuito de analisar como ocorre a colonização nos campos de soja. Foram monitoradas cinco lavouras comerciais submetidas a diferentes condições de manejo. Para tanto confeccionou-se malhas regulares de amostragem com pontos equidistantes de 50 metros, as quais foram amostradas semanalmente com o auxílio do GPS a partir da emissão dos primeiros trifólios até próximo à colheita. O método de amostragem utilizado foi o do pano de batida, através da contagem de ninfas e adultos dos percevejos em um metro linear. Os dados obtidos foram submetidos às análises estatísticas descritivas, para melhor entendimento da flutuação populacional. Para verificação da distribuição estatística a que a população de percevejos melhor se ajustou foi utilizado o teste de hipótese de nulidade. Mapas representativos da localização dos percevejos no campo foram confeccionados. Euschistus heros foi a espécie predominante, compondo 91% dos percevejos encontrados. As flutuações populacionais demonstraram a presença precoce dos percevejos nos cultivos de soja. A distribuição de E. heros nos campos de soja se ajustou melhor à Binomial Negativa e ocorreu de forma aleatória, asssim amostras devem ser realizadas em toda a área.
5

Neves, Juliana Alves. "Dinâmica predador presa, relações funcionais e o potencial de Heterópteros no manejo de pragas." Universidade de São Paulo, 2014. http://www.teses.usp.br/teses/disponiveis/11/11146/tde-03062014-153807/.

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Mediante as modificações ambientais realizadas por ações antrópicas, os sistemas ecológicos vêm sendo cada vez mais afetados pela perda de organismos, resultando em simplificações nas interações tróficas, que acarretam em desequilíbrio entre espécies, principalmente em sistema agrícolas e florestais. Assim, compreender a atuação dos inimigos naturais é fundamental para sua implementação em programas de manejo integrado. Neste estudo, investigou-se as interações predador presa de duas espécies da subordem Heteroptera, Podisus nigrispinus e Graptocleptes bicolor, para compreender suas dinâmicas e respostas funcionais com algumas presas da ordem Lepidoptera.
Because of the environmental modifications made by anthropic actions, the ecological systems have been losing their organisms, resulting in simplification of trophic interactions, which bring out species instability, especially at agricultural and forest systems. Thus, to understand the performance of natural enemies it is primordial to their usage at integrated pest management programs. In this study, the predator prey interactions of two species from the suborder Heteroptera, Podisus nigrispinus and Graptocleptes bicolorwere investigated, to understand their dynamics and functional responses, with some preys from the Lepidoptera order.
6

Azhar, Hasan Syed. "The morphology and cladistics of the Pentatomidae, with a revision of three tribes from the Malayan subregion." Thesis, University of Oxford, 1988. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.235183.

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7

Schwertner, Cristiano Feldens. "Filogenia e classificação dos percevejos-verdes do grupo Nezara Amyot & Serville (Hemiptera, Pentatomidae, Pentanominae)." reponame:Biblioteca Digital de Teses e Dissertações da UFRGS, 2005. http://hdl.handle.net/10183/5998.

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Os percevejos-do-mato da família Pentatomidae formam um dos maiores grupos dentre os hemípteros-heterópteros, sendo encontrados principalmente nas regiões tropicais. São exclusivamente terrestres e a maioria das espécies têm hábitos fitófagos, algumas delas registradas como pragas de plantas. A atual classificação do grupo encontra-se em intenso debate, mas a definição de grupos monofiléticos e o estudo das relações entre esses grupos dentro de Pentatomidae ainda são relativamente escassos. Este trabalho aborda o estudo de um grupo de percevejos-verdes (Pentatomidae) historicamente relacionados ao gênero Nezara Amyot & Serville. A análise cladística incluíndo, incialmente, 28 espécies de 11 gêneros de Pentatominae e 53 caracteres morfológicos permitiu a definição de um grupo monofilético que inclui 8 gêneros (6 conhecidos e dois novos), aqui denominado grupo Nezara. As características diagnósticas para o grupo incluem duas sinapomorfias: lobo ventral do tubérculo antenífero desenvolvido e espessamento secundário das gonapófises 9 amplos. Os resultados indicam que o gênero Chinavia, como atualmente configurado, é polifilético. A seguinte classificação para o grupo Nezara, em notação parentética, é proposta: (Pseudoacrosternum((Aethemenes, Nezara) (Genêro1 (Porphyroptera (Neoacrosternum (Gênero2(Chinavia))))))) Os gêneros Glaucias, Acrosternum e Parachinavia não compartilham as sinapomorfias dos gêneros do grupo Nezara e os resultados indicam uma relação mais próxima com outros gêneros de Pentatominae. As espécies Parachinavia prunasis (Dallas) comb. nov. e Neoacrosternum varicornis (Dallas) comb. nov. são transferidas dos gêneros Acrosternum e Chinavia, respectivamente. Com base no padrão de distribuição dos táxons do grupo Nezara, é discutida uma hipótese sobre a origem e diversificação do grupo. Dois novos gêneros são propostos: Schoutedenia gen. nov., para incluir S. distans (Schouteden) comb. nov., e Afrochinavia gen. nov., para incluir A. rinapsa comb. nov. Uma chave dicotômica para identificação, a diagnose dos clados resultantes da análise cladística e a descrição atualizada dos gêneros do grupo Nezara são apresentadas Com base no exame dos holótipos das espécies de Chinavia, as seguintes sinonimias são propostas: Chinavia aequale (Linnavuori, 1975) é sinônimo júnior de Chinavia aliena (Schouteden, 1960); Chinavia amosi (Linnavuori, 1982) é sinônimo júnior de Chinavia kaisaka (Schouteden, 1960); Chinavia bella (Rolston, 1983) é sinônimo júnior de Chinavia nigrodorsata (Breddin, 1901); Chinavia gerstockeri (Bergroth, 1893) é sinônimo júnior de Chinavia pallidoconspersa (Stal, 1858); e Chinavia panizzi (Frey-da- Silva & Grazia, 2001) é sinônimo júnior de Chinavia obstinata (Stal, 1860). Uma lista remissiva das espécies incluídas é fornecida, incluíndo as seis novas espécies de Chinavia Orian descritas neste trabalho: Chinavia vanduzeei sp. nov. do Peru e Brasil (AM, PA); Chinavia schuhi sp. nov. do Peru, Colômbia e Brasil (AM); Chinavia sebastiaoi sp. nov. do Brasil (MS), Bolívia e Paraguai; Chinavia cearensis sp. nov., Chinavia tuiucauna sp. nov. e Chinavia rufitibia sp. nov. do Brasil (CE, BA e PR, respectivamente). No Brasil, são registradas 32 espécies de Chinavia, dentre as quais 18 endêmicas; uma chave pictórica para a identificação das espécies e a diagnose, dados de distribuição e, quando disponível, o registro das plantas hospedeiras de cada uma delas, são apresentados.
8

Weiler, Luciana Maria. "Análise cladística e descrição de uma nova espécie para o subgênero Lycipta Stål, 1862 (Hemiptera, Pentatomidae, Carpocorini, Euschistus)." reponame:Biblioteca Digital de Teses e Dissertações da UFRGS, 2011. http://hdl.handle.net/10183/60629.

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O subgênero Lycipta Stål, 1862 está incluído em Euschistus Dallas, 1851 e tem distribuição exclusivamente Neotropical. Após a descrição original do gênero, os principais trabalhos taxonômicos relativos a Euschistus resumem-se à sinopse de Stål (1872), algumas redescrições e ilustrações feitas por Distant (1880, 1893), às descrições de novos táxons e revisões de Rolston (1973, 1974, 1978, 1982, 1984). O último trabalho relativo ao subgênero é o de Rolston (1982); seu status como subgênero e sua classificação nunca foram testados pela metodologia cladística. Neste trabalho, é testada a monofilia de Euschistus (Lycipta) e estudadas as relações entre suas espécies. O cladograma foi enraizado em Carpocoris purpureipennis (DeGeer, 1783) e para compor os táxons do grupo externo foram incluídas mais 11 espécies, pertencentes a gêneros e subgêneros considerados próximos à Euschistus: Proxys victor (Fabricius, 1775), Dichelops furcatus (Fabricius, 1775), Spinalanx rolstoni Thomas, 1995, Spinalanx monstrabilis Rolston & Rider, 1988, Ladeaschistus bilobus (Stål, 1872), Euschistus (Euschistus) taurulus Berg, 1878, Euschistus (Euschistus) rufimanus Stål, 1872, Euschistus (Euschistus) heros (Fabricius, 1798), Euschistus (Mitripus) acutus Dallas, 1851, Euschistus (Mitripus) convergens (Herrich-Schäffer, 1842) e Euschistus (Mitripus) hansi Grazia, 1987. Foram levantados 77 caracteres morfológicos para 25 táxons terminais: 13 do grupo interno mais 12 do grupo externo. Os dados foram submetidos a três análises de parcimônia por busca heurística: a primeira com os 25 táxons terminais e com pesagem igual de caracteres; a segunda com mesma pesagem de caracteres, mas com exclusão do táxon Spinalanx monstrabilis e a terceira com a exclusão do mesmo táxon e atribuindo diferentes funções de pesagem implícita, em que o valor de K (constante de concavidade) foi alterado. Resultados muito semelhantes foram obtidos nas três análises, sendo que as variações se encontram nas relações internas do subgênero Lycipta. A primeira análise gerou uma árvore com 250 passos, índice de consistência 41 e índice de retenção 63. A segunda análise resultou em um cladograma de 242 passos, índice de consistência 42 e índice de retenção 64. A terceira análise corrobora e dá suporte aos resultados obtidos nas duas primeiras. Os resultados indicam a existência do subgênero, entretanto não se pode afirmar que Lycipta seja monofilético, uma vez que uma de suas espécies está relacionada como grupo irmão do subgênero. Uma nova espécie de Lycipta é descrita, com distribuição no Rio Grande do Sul (Esmeralda, São Francisco de Paula, Caçapava do Sul e Pelotas). O subgênero, a partir deste trabalho, passa a contar com 13 espécies válidas, sendo fornecida ainda uma chave de identificação para as espécies de Lycipta.
The subgenus Lycipta Stål, 1862 is included in Euschistus Dallas, 1851 and is exclusively Neotropical in distribution. After the original description of the genus, the most important taxonomic studies on Euschistus are the synopsis of Stål (1872), some redescription and illustrations by Distant (1880, 1893), descriptions of new taxa and revisions by Rolston (1973, 1974, 1978, 1982, 1984). The last paper on the subgenus is that of Rolston (1982); the subgenus status and classification have never been tested using cladistic methodology. In this work, Euschistus (Lycipta) is studied for its monophyly and the relationships among species. Specimens of Lycipta that did not fit the descriptions of known species were found among the studied material, and were considered Euschistus (Lycipta) new species. The cladogram was rooted in Carpocoris purpureipennis (DeGeer, 1783), and 11 additional species belonging to genera and subgenera considered close related were included as outgroups: Proxys victor (Fabricius, 1775), Dichelops furcatus (Fabricius, 1775), Spinalanx rolstoni Thomas, 1995, Spinalanx monstrabilis Rolston & Rider, 1988, Ladeaschistus bilobus (Stål, 1872), Euschistus (Euschistus) taurulus Berg, 1878, Euschistus (Euschistus) rufimanus Stål, 1872, Euschistus (Euschistus) heros (Fabricius, 1798), Euschistus (Mitripus) acutus Dallas, 1851, Euschistus (Mitripus) convergens (Herrich-Schäffer, 1842), and Euschistus (Mitripus) hansi Grazia, 1987. Seventy seven morphological characters were collected from 25 taxa: 13 belonging to the in group and 12 to the outgroup. Data were subjected to three parsimony analysis by heuristic search: the first with 25 terminal taxa and equal weighting of characters, the second with equal weighing of characters, but excluding the taxon Spinalanx monstrabilis, and the third excluding the same taxon and assigning different functions of implicit weighing in which K value (constant of concavity) was modified. Similar results were obtained from the three methods, only internal relations in the subgenus Lycipta varied. The first analysis generated a tree with 250 steps, consistency index of 41 and retention index of 63. The second analysis resulted in a cladogram of 242 steps, consistency index 42and retention index 64.The third analysis corroborates and supports the results obtained in the other two. Results indicate the existence of the subgenus, however Lycipta is not undisputedly monophyletic, since one of the species seems related to the sister group of the subgenus. A new species of Lycipta is described based on material from field trips and deposited in the collection of the Zoology Department (UFRG) (distributed in Rio Grande do Sul: Esmeralda, San Francisco de Paula, Caçapava do Sul, and Pelotas). After this work, the subgenus comprises 13 valid species; a key to the species of Lycipta is also provided.
9

Aldea, Andrés Francisco Fernandez. "Revisão de Oenopiella Bergoth, 1891 (Hemiptera, Pentatomidae, Carpocorini)." reponame:Biblioteca Digital de Teses e Dissertações da UFRGS, 2013. http://hdl.handle.net/10183/78151.

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Este projeto visou realizar um estudo sobre a morfologia das espécies de Oenopiella, com ênfase na genitália de ambos os sexos. Foram descritas e ilustradas as principais características, com o objetivo de efetuar um registro da variação morfológica das estruturas analisadas. Além da redescrição de Oenopiella unidentata Spinola, 1852, Oenopiella punctaria Stål, 1859 e Oenopiella pallidula Stål, 1872, duas novas espécies são descritas.
This project aimed to carry out a study on the morphology of the species of Oenopiella with emphasis on the genitalia of both sexes. The main features were described and illustrated in order to make a record of morphological variation of the analyzed structures. Besides redescription of Oenopiella unidentata Spinola, 1852, Oenopiella punctaria Stål, 1859, and Oenopiella pallidula Stål, 1872, two new species are here described.
10

Garbelotto, Thereza de Almeida. "Filogenia e classificação de DISCOCEPHALINI (HEMIPTERA: PENTATOMIDAE: DISCOCEPHALINAE)." reponame:Biblioteca Digital de Teses e Dissertações da UFRGS, 2015. http://hdl.handle.net/10183/128950.

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A subfamília Discocephalinae, proposta por Fieber em 1861, é um grupo de percevejos fitófagos conhecidos apenas da região Neotropical, geralmente reconhecidos por apresentarem a inserção do lábio posterior à margem anterior dos olhos e tricobótrios lateralizados em relação aos espiráculos. Duas tribos são compõe a subfamília, Discocephalini e Ochlerini, entretanto pouco é conhecido de Discocephalini. A tribo teve uma diagnose apresentada quando proposta por Fieber, porém sua composição sofreu grandes alterações até hoje, e em termos de descrição do grupo é dito apenas que estes incluem espécies com corpo geralmente achatado, tamanho pequeno a médio, de coloração geralmente castanha, manchada de preto ou castanho escuro. Abordagens mais recentes baseadas em filogenias apontaram o grupo como parafilético. Com base nesta deficiência de conhecimento de Discocephalini e na incerteza sobre sua monofilia foi feito um estudo abordando a sistemática da tribo. O gênero Braunus Distant, antes pertencente à Discocephalini, foi reconhecido como sinônimo sênior de Lojus McDonald, e com base na classificação de Lojus transferido para Carpocorini (Pentatominae) em uma revisão do gênero que incluiu também a redescrição da espécie tipo do gênero (B. sciocorinus) e das demais espécies conhecidas; a descrição de três novas espécies para o gênero (B. machadoi sp. nov.; B. gibbus sp. nov. e B. prionotus sp. nov.); e uma chave de identificação para o gênero. Uma chave ilustrada para os gêneros de Discocephalini foi elaborada além de diagnoses para cada um dos 41 gêneros não-fósseis da tribo, muitos desses conhecidos apenas de suas descrições originais e pouco representados em coleções científicas. Ainda, o gênero Anhanga Distant foi transferido para Pentatominae, e Allinocoris Ruckes foi sinonimizado a Uncicrus Ruckes. Finalmente uma avaliação da monofilia da tribo foi feita utilizando caracteres morfológicos. As análises apontaram Discocephalini como polifilética, no entanto a maioria dos gêneros da tribo agruparam-se em um clado apenas (clado C) e, dentre estes, alguns dos gêneros apontados como relacionados por autores prévios apresentaram algum relacionamento. Uma diagnose para os gêneros do “clado C” foi elaborada, no entanto não foram feitas alterações da classificação atual. As análises ainda apontaram um possível parafiletismo de Discocephalinae.

Книги з теми "Pentatomidé":

1

Thomas, Donald B. Taxonomic synopsis of the asopine Pentatomidae (Heteroptera) of the Western Hemisphere. Lanham, Md: Entomological Society of America, 1992.

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2

Larivière, Marie-Claude. Cydnidae, Acanthosomatidae, and Pentatomidae (Insecta:Heteroptera): Systematics, geographical distribution, and bioecology. Lincoln, Canterbury, N.Z: Manaaki Whenua Press, 1995.

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3

Larivière, Marie-Claude. Description of Parabrochymena, new genus, and redefinition and review of Brochymena Amyot and Audinet-Serville (Hemiptera: Pentatomidae), with considerations on natural history, chorological affinities, and evolutionary relationships. Ottawa: Entomological Society of Canada, 1992.

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4

Larivière, Marie-Claude. Description of Parabrochymena, new genus, and redefinition and review of Brochymena amyot and audinet-serville (Hemiptera : Pentatomidae): With considerations on natural history, chorological affinities, and evolutionary relationships. Ottawa: Entomological Society of Canada, 1992.

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5

Zimmer, John Todd. Pentatomidae of Nebraska. Creative Media Partners, LLC, 2022.

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6

Zimmer, John Todd. The Pentatomidae Of Nebraska. Franklin Classics, 2018.

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7

Zimmer, John Todd. The Pentatomidae Of Nebraska. Franklin Classics, 2018.

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8

Zimmer, John Todd. The Pentatomidae of Nebraska. Franklin Classics Trade Press, 2018.

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9

Zimmer, John Todd. The Pentatomidae of Nebraska. Franklin Classics Trade Press, 2018.

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10

Ehler, Lester E. Farmscape Ecology of Stink Bugs in Northern California. Entomological Society of Amer, 2000.

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Частини книг з теми "Pentatomidé":

1

Frank, J. Howard, J. Howard Frank, Michael C. Thomas, Allan A. Yousten, F. William Howard, Robin M. Giblin-davis, John B. Heppner, et al. "Pentatomidae." In Encyclopedia of Entomology, 2782. Dordrecht: Springer Netherlands, 2008. http://dx.doi.org/10.1007/978-1-4020-6359-6_2841.

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2

Grazia, Jocélia, Antônio R. Panizzi, Caroline Greve, Cristiano F. Schwertner, Luiz A. Campos, Thereza de A. Garbelotto, and José Antônio Marin Fernandes. "Stink Bugs (Pentatomidae)." In True Bugs (Heteroptera) of the Neotropics, 681–756. Dordrecht: Springer Netherlands, 2015. http://dx.doi.org/10.1007/978-94-017-9861-7_22.

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3

Salini, S., and K. J. David. "Asopinae (Pentatomidae) Predators." In Insect Predators in Pest Management, 133–45. Boca Raton: CRC Press, 2023. http://dx.doi.org/10.1201/9781003370864-5.

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4

Follett, Peter A., M. Tracy Johnson, and Vincent P. Jones. "Parasitoid Drift in Hawaiian Pentatomoids." In Nontarget Effects of Biological Control, 77–93. Boston, MA: Springer US, 2000. http://dx.doi.org/10.1007/978-1-4615-4577-4_6.

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5

Frank, J. Howard, J. Howard Frank, Michael C. Thomas, Allan A. Yousten, F. William Howard, Robin M. Giblin-davis, John B. Heppner, et al. "Predatory Stink Bugs (Hemiptera: Pentatomidae, Asopinae)." In Encyclopedia of Entomology, 3042–45. Dordrecht: Springer Netherlands, 2008. http://dx.doi.org/10.1007/978-1-4020-6359-6_3115.

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6

Mitchell, Paula Levin, Adam R. Zeilinger, Enrique Gino Medrano, and Jesus F. Esquivel. "Pentatomoids as Vectors of Plant Pathogens." In Invasive Stink Bugs and Related Species (Pentatomoidea), 611–40. Boca Raton : Taylor & Francis, 2017.: CRC Press, 2018. http://dx.doi.org/10.1201/9781315371221-13.

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7

Borges, Miguel, and Maria Carolina Blassioli-Moraes. "Chapter 5. The Semiochemistry of Pentatomidae." In Stink Bugs, 95–124. 6000 Broken Sound Parkway NW, Suite 300 Boca Raton, FL 33487-2742: CRC Press, 2017. http://dx.doi.org/10.1201/9781315120713-6.

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8

Capinera, John L., Thomas O. Crist, John B. Heppner, Minos E. Tzanakakis, Severiano F. Gayubo, Aurélien Tartar, Pauline O. Lawrence, et al. "Harlequin Bug, Murgantia histrionica (Hahn) (Hemiptera: Pentatomidae)." In Encyclopedia of Entomology, 1766–68. Dordrecht: Springer Netherlands, 2008. http://dx.doi.org/10.1007/978-1-4020-6359-6_1264.

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9

Heppner, John B., David B. Richman, Steven E. Naranjo, Dale Habeck, Christopher Asaro, Jean-Luc Boevé, Johann Baumgärtner, et al. "Stink Bugs (Hemiptera: Pentatomidae), Emphasizing Economic Importance." In Encyclopedia of Entomology, 3567–70. Dordrecht: Springer Netherlands, 2008. http://dx.doi.org/10.1007/978-1-4020-6359-6_4404.

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10

Panizzi, Antônio R. "Dynamics of Phytophagous Pentatomids Associated with Soybean in Brazil." In World Soybean Research Conference III: Proceedings, 674–80. New York: CRC Press, 2022. http://dx.doi.org/10.1201/9780429267932-114.

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Тези доповідей конференцій з теми "Pentatomidé":

1

Medal, Julio C. "Biological control of the brown marmorated stink bug,Halyomorpha halys(Hemiptera: Pentatomidae) usingEuthyrhynchus floridanus(Hemiptera: Pentatomidae)." In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.109183.

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2

Lucini, Tiago. "EPG (electropenetrography) studies with neotropical pentatomids: Waveforms and feeding sites." In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.91432.

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3

Canassa, Vinícius Fernandes. "Antixenosis of soybean genotypes toDichelops melacanthus(Hemiptera: Pentatomidae)." In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.115048.

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4

Derjanschi, Valeriu. "Some rare Heteroptera species (Hemiptera) from the „Cobîleni” natural reserve, Republic of Moldova." In Xth International Conference of Zoologists. Institute of Zoology, Republic of Moldova, 2021. http://dx.doi.org/10.53937/icz10.2021.31.

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A list of the some rare heteroptera species from the „Cobîleni” Natural Reserve is published. The list contains 9 species from 5 families: Corixidae (3 species), Anthocoridae (1), Miridae (3), Lygaeidae (1) and Pentatomidae – 1 species. Data on bio-ecology and host plants are given. It is noted that the „Cobîleni” Reserve are the guarantor of the preservation of both typical biotopes and rare and endangered species of true bugs.
5

Lancaster, Jason. "Exploring sesquiterpenoid pheromone biosynthetic pathways in stink bugs (Pentatomidae)." In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.115327.

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6

Иванова, Раиса, Дина Елисовецкая та Я. Бриндза. "Инвазивный клоп Nezara Viridula L. (Hemiptera, Pentatomidae) в Республике Молдова". У International Scientific Symposium "Plant Protection – Achievements and Prospects". Institute of Genetics, Physiology and Plant Protection, Republic of Moldova, 2020. http://dx.doi.org/10.53040/9789975347204.11.

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In the summer of 2020 on the plantations of Phytolacca americana L. (pokeberry) growing in the central zone of the Republic of Moldova, a new, economically dangerous pest species was discovered, known as the southern green stink bug or southern vegetable bug – Nezara viridula L. (Heteroptera: Pentatomidae). At both stages of bug development, larvae and adults seriously harm agricultural crops, ornamental and wild plants. The number of larvae was high and reached to 3-5 per pokeberry bunch. In the same field, N. viridula larvae and imago were also found on tomato and amaranth plants.
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Grazia, Jocelia. "Cladistic analysis of Catacanthini Atkinson, 1888 (Hemiptera: Heteroptera: Pentatomidae: Pentatominae)." In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.111608.

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Lee, Doo-Hyung. "Current research status onHalyomorpha halys(Hemiptera: Pentatomidae) in South Korea." In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.89763.

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Елисовецкая, Дина, та Валерий Держанский. "Плодовитость перезимовавших самок хищного клопа Perillus bioculatus f. (Heteroptera, Pentatomidae)". У International symposium ”Actual problems of zoology and parasitology: achievements and prospects” dedicated to the 100th anniversary from the birth of academician Alexei Spassky. Institute of Zoology, Republic of Moldova, 2018. http://dx.doi.org/10.53937/9789975665902.83.

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Rider, David A. "The classification of the Pentatomidae (Hemiptera: Heteroptera): Past, present, and future." In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.94105.

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