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Auswahl der wissenschaftlichen Literatur zum Thema „Geometridae Host plants“
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Zeitschriftenartikel zum Thema "Geometridae Host plants"
Staude, Hermann S., Marion Maclean, Silvia Mecenero, Rudolph J. Pretorius, Rolf G. Oberprieler, Simon An Noort, Allison Sharp et al. „Geometroidea: Geometridae: Geometrinae, Larentiinae, Sterrhinae; Uraniidae“. Metamorphosis 31, Nr. 3 (21.03.2022): 125–43. http://dx.doi.org/10.4314/met.v31i3.8.
Der volle Inhalt der QuelleStaude, Hermann S., Marion Maclean, Silvia Mecenero, Rudolph J. Pretorius, Rolf G. Oberprieler, Simon Van Noort, Allison Sharp et al. „Geometroidea: Geometridae: Ennominae (2)“. Metamorphosis 31, Nr. 3 (17.03.2022): 91–109. http://dx.doi.org/10.4314/met.v31i3.6.
Der volle Inhalt der QuelleStaude, Hermann S., Marion Maclean, Silvia Mecenero, Rudolph J. Pretorius, Rolf G. Oberprieler, Simon Van Noort, Allison Sharp et al. „Geometroidea: Geometridae: Ennominae (3)“. Metamorphosis 31, Nr. 3 (17.03.2022): 110–24. http://dx.doi.org/10.4314/met.v31i3.7.
Der volle Inhalt der QuelleStaude, Hermann S., Marion Maclean, Silvia Mecenero, Rudolph J. Pretorius, Rolf G. Oberprieler, Simon Van Noort, Allison Sharp et al. „Geometroidea: Geometridae: Desmobathrinae, Ennominae (1)“. Metamorphosis 31, Nr. 3 (17.03.2022): 72–90. http://dx.doi.org/10.4314/met.v31i3.5.
Der volle Inhalt der QuelleButler, Linda. „FOOD PLANT STUDIES FOR THE HALF-WING GEOMETER, PHIGALIA TITEA (CRAMER) (LEPIDOPTERA: GEOMETRIDAE)“. Canadian Entomologist 117, Nr. 5 (Mai 1985): 547–51. http://dx.doi.org/10.4039/ent117547-5.
Der volle Inhalt der QuelleFutuyma, Douglas J., und Thomas E. Philippi. „GENETIC VARIATION AND COVARIATION IN RESPONSES TO HOST PLANTS BYALSOPHILA POMETARIA(LEPIDOPTERA: GEOMETRIDAE)“. Evolution 41, Nr. 2 (März 1987): 269–79. http://dx.doi.org/10.1111/j.1558-5646.1987.tb05796.x.
Der volle Inhalt der QuelleSegar, Simon T., Martin Volf, Brus Isua, Mentap Sisol, Conor M. Redmond, Margaret E. Rosati, Bradley Gewa et al. „Variably hungry caterpillars: predictive models and foliar chemistry suggest how to eat a rainforest“. Proceedings of the Royal Society B: Biological Sciences 284, Nr. 1866 (08.11.2017): 20171803. http://dx.doi.org/10.1098/rspb.2017.1803.
Der volle Inhalt der QuelleGUEDES, ROZILEUDO DA SILVA, TEOTÔNIO LUCAS SABINO FERNANDES und FERNANDO CÉSAR VIEIRA ZANELLA. „FIRST RECORD OF Numia terebintharia GUENÉE (LEPIDOPTERA: GEOMETRIDAE) IN Ziziphus joazeiro MART. (RHAMNACEAE) IN BRAZIL“. Revista Caatinga 34, Nr. 1 (Januar 2021): 236–41. http://dx.doi.org/10.1590/1983-21252021v34n124rc.
Der volle Inhalt der QuelleFutuyma, Douglas J., und Thomas E. Philippi. „Genetic Variation and Covariation in Responses to Host Plants by Alsophila pometaria (Lepidoptera: geometridae)“. Evolution 41, Nr. 2 (März 1987): 269. http://dx.doi.org/10.2307/2409137.
Der volle Inhalt der QuelleDINIZ, I. R., H. C. MORAIS, A. M. F. BOTELHO, F. VENTUROLI und B. C. CABRAL. „Lepidopteran caterpillar fauna on lactiferous host plants in the central Brazilian cerrado“. Revista Brasileira de Biologia 59, Nr. 4 (November 1999): 627–35. http://dx.doi.org/10.1590/s0034-71081999000400012.
Der volle Inhalt der QuelleDissertationen zum Thema "Geometridae Host plants"
Geraldo, Mariana. „Larvas de Geometridae (Lepidoptera) e seus parasitoides em sub-bosque nativo na Universidade Federal de São Carlos, Campus São Carlos, Estado de São Paulo“. Universidade Federal de São Carlos, 2011. https://repositorio.ufscar.br/handle/ufscar/2046.
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Geometridae larvae and their parasitoids were surveyed in a understory at Universidade Federal de São Carlos, Campus São Carlos, SP. Larvae were colected among April 2009 to April 2010, with an entomological umbrella in 18 native species plants. It obtained 863 larvae including 46 species and 24 genera belong to majority the Ennominae. The Larentiinae and Sterrhinae subfamilies were also represented for Eois and Cyclophora, respectively. The Ennominae genus obtained were: Certima, Glena, Herbita, Hymenomima, Iridopsis, Ischnopteris, Isochromodes, Lomographa, Macaria, Melanolophia, Microgonia, Microxydia, Nematocampa, Oxydia, Patalene, Pero, Phyllodonta, Physocleora, Prochoerodes, Sabulodes, Thyrinteina and Trotopera. Macaria rigidata was the more abundant species which represented 31%. It recorded 174 parasitized larvae from which 337 parasitoids emerged. They are distributed among Braconidae, Ichneumonidae, Eulophidae (Hymenoptera) and Diptera, with Hymenoptera predominance. The obtained parasitoids were: Diolcogaster, Protapanteles, Glyptapanteles, Aleiodes, (Braconidae), Casinaria, Charops, Cryptophion, Diradops, Dusona, Jomine, Neotheronia, Podogaster, Polycyrtus, Mesochorinae (Ichneumonidae), Euplectrus (Eulophidae) and Tachinidae (Diptera). It recorded new parasitoids species of the genus: Diradops, Jomine and Neotheronia (Hymenoptera, Ichneumonidae). Geometridae larvae were present throughout the collection period and had increased occurrence at the end of rainy season.
Foi realizado um levantamento de larvas de Geometridae e de seus parasitoides em um subbosque localizado na Universidade Federal de São Carlos, Campus São Carlos, SP. As larvas foram coletadas, no período de abril de 2009 a abril de 2010, por meio de guarda-chuva entomológico em 18 espécies de plantas nativas. Foram coletadas 863 larvas incluindo 46 espécies e 24 gêneros pertencentes na maioria aos Ennominae. As subfamílias Larentiinae e Sterrhinae foram também representadas, respectivamente com os gêneros Eois e Cyclophora. Os gêneros de Ennominae obtidos foram: Certima, Glena, Herbita, Hymenomima, Iridopsis, Ischnopteris, Isochromodes, Lomographa, Macaria, Melanolophia, Microgonia, Microxydia, Nematocampa, Oxydia, Patalene, Pero, Phyllodonta, Physocleora, Prochoerodes, Sabulodes, Thyrinteina e Trotopera. A espécie mais abundante foi Macaria rigidata que representou 31%. Foram registradas 174 larvas parasitadas das quais emergiram 337 parasitoides distribuídos em Braconidae, Ichneumonidae, Eulophidae (Hymenoptera) e Diptera, com a predominância de Hymenoptera. Os parasitoides obtidos foram: Diolcogaster, Protapanteles, Glyptapanteles, Aleiodes, (Braconidae), Casinaria, Charops, Cryptophion, Diradops, Dusona, Jomine, Neotheronia, Podogaster, Polycyrtus, Mesochorinae (Ichneumonidae), Euplectrus (Eulophidae) e Tachinidae (Diptera). Foram registradas novas espécies de parasitoides dos gêneros: Diradops, Jomine e Neotheronia (Hymenoptera, Ichneumonidae). As larvas de Geometridae estiveram presentes em todo o período de coleta e apresentaram maior ocorrência no final do período chuvoso.
Geraldo, Mariana. „Geometridae (Lepidoptera) e Hymenoptera parasitoides em área de Mata Estacional Semidecídua na Estação Ecológica de Jataí, Luiz Antônio - SP“. Universidade Federal de São Carlos, 2017. https://repositorio.ufscar.br/handle/ufscar/9304.
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Larvae of Geometridae (Lepidoptera) were obtained with an entomological umbrella, from October 2013 to September 2015, in two areas of semi-deciduous forest (Mata/Cerradão and Mata) at Estação Ecológica de Jataí, Luiz Antônio, São Paulo state. The larvae of Geometridae were kept in the laboratory until the adult or parasitoid emergence. Especimens of the families Braconidae and Ichneumonidae were obtained, from January 2014 to February 2015, with two Malaise traps located in the same local of collection of Geometridae larvae. The material obtained in the Malaise traps was sorted, the individuals of the families Braconidae and Ichneumonidae were identified in subfamily level and the Microgastrinae, Cheloninae and Rogadinae, Campopleginae and Mesochorinae subfamilies were identified at the genus level. A total of 416 larvae of Geometridae weas collected, 190 in the Mata/Cerradão stretch and 226 in the Mata stretch, of which, 52 and 39, respectively, were parasitized. Among the Geometridae, the subfamily Ennominae was represented by individuals of 14 genera (Argyrotome, Glena, Hymenomima, Iridopsis, Ischnopteris, Lomographa, Macaria, Nepheloleuca, Patalene, Phrygionis, Physocleora, Prochoerodes, Rhomboptila and Trotopera), the subfamily Larentiinae by four (Eubaphe, Eupithecia, Euphyia and Pterocypha) and the subfamily Sterrhinae by two (Cyclophora and Idaea). A total of 91 larvae of Geometridae, from 11 genera, were obtained parasitized by 198 parasitoids. The parasitoids obtained belong to the families Braconidae, Ichneumonidae, Eulophidae and Diptera. The Malaise traps provided 2720 individuals of the Ichneumonoidea superfamily, of these 1210 are Braconidae and 1510 are Ichneumonidae, in the Mata/Cerradão stretch, and 702 in the Mata stretch, of which 214 individuals of the Braconidae family and 488 individuals of the Ichneumonidae family. Among the Braconidae, the subfamily Microgastrinae was the most abundant, with 44.5% of individuals in the Mata/Cerradão stretch and 31.8% in the Mata stretch. Eighteen genera of Microgastrinae were recorded (Alphomelon, Apanteles, Choeras, Cotesia, Diolcogaster, Distatrix, Glyptapanteles, Hypomicrogaster, Iconella, Microplitis, Papanteles, Parapanteles, Pholetesor, Prasmodon, Promicrogaster, Protapanteles, Pseudapanteles and Rasivalva), five of Rogadinae (Aleiodes, Choreborogas, Rogas, Stiropius and Yelicones) and four of Cheloninae (Ascogaster, Chelonus, Microchelonus and Phanerotoma). Between the Ichneumonidae collected, 161 individuals were obtained from the subfamily Campopleginae in the Mata/Cerradão stretch and 35 in the Mata stretch. The genera of Campopleginae obtained were Campoletis, Campoplex, Casinaria, Charops, Cryptophion, Cymodusa, Diadegma, Dusona, Hyposoter, Microcharops and Venturia.
Larvas de Geometridae (Lepidoptera) foram obtidas por meio de guarda-chuva entomólogico, no período de outubro de 2013 a setembro de 2015, em duas áreas de mata estacional semidecídua (transecto Mata/Cerradão e transecto Mata) na Estação Ecológica de Jataí, Luiz Antônio, São Paulo. As larvas de Geometridae foram mantidas em laboratório até a emergência do adulto ou do parasitoide. Exemplares das famílias Braconidae e Ichneumonidae foram obtidos, no período de janeiro de 2014 a fevereiro de 2015, por meio de duas armadilhas Malaise localizadas nos mesmos transectos de coleta das larvas de Geometridae. O material obtido nas armadilhas Malaise foi triado, os indivíduos das famílias Braconidae e Ichneumonidae foram identificados em nível de subfamília e as subfamílias Microgastrinae, Cheloninae e Rogadinae, Campopleginae e Mesochorinae foram identificados em nível de gênero. Foram coletadas 416 larvas de Geometridae, 190 no transecto Mata/Cerradão e 226 no transecto Mata, das quais, 52 e 39, respectivamente, estavam parasitadas. Entre os Geometridae, a subfamília Ennominae foi representada por indivíduos de 15 gêneros (Argyrotome, Cimicodes, Glena, Hymenomima, Iridopsis, Ischnopteris, Lomographa, Macaria, Nepheloleuca, Patalene, Phrygionis, Physocleora, Prochoerodes, Rhomboptila e Trotopera), a subfamília Larentiinae por quatro (Eubaphe, Eupithecia, Euphyia e Pterocypha) e a subfamília Sterrhinae por dois (Cyclophora e Idaea). Foram obtidas 91 larvas de Geometridae, de 11 gêneros, parasitadas por 198 parasitoides. Os parasitoides obtidos pertencem às famílias Braconidae, Ichneumonidae, Eulophidae e Diptera. As armadilhas Malaise forneceram 2720 indivíduos da superfamília Ichneumonoidea, destes 1210 Braconidae e 1510 Ichneumonidae, no transecto Mata/Cerradão e 702 no transecto Mata, dos quais 214 indivíduos da família Braconidae e 488 indivíduos da família Ichneumonidae. Entre os Braconidae, a subfamília Microgastrinae foi a mais abundante, com 44,5% de indivíduos no transecto Mata/Cerradão e 31,8% no transecto Mata. Foram registrados 18 gêneros de Microgastrinae (Alphomelon, Apanteles, Choeras, Cotesia, Diolcogaster, Distatrix, Glyptapanteles, Hypomicrogaster, Iconella, Microplitis, Papanteles, Parapanteles, Pholetesor, Prasmodon, Promicrogaster, Protapanteles, Pseudapanteles e Rasivalva), cinco de Rogadinae (Aleiodes, Choreborogas, Rogas, Stiropius e Yelicones) e quatro de Cheloninae (Ascogaster, Chelonus, Microchelonus e Phanerotoma). Entre os Ichneumonidae coletados, foram obtidos 161 indivíduos da subfamília Campopleginae no transecto Mata/Cerradão e 35 no transecto Mata. Os gêneros de Campopleginae obtidos foram Campoletis, Campoplex, Casinaria, Charops, Cryptophion, Cymodusa, Diadegma, Dusona, Hyposoter, Microcharops e Venturia.
Ramachandran, Raman. „Behaviour of first instar `Ectropis excursaria` (Lepidoptera: Geometridae) in relation to host-finding process“. 1986. http://web4.library.adelaide.edu.au/theses/09PH/09phr165.pdf.
Der volle Inhalt der QuelleRamachandran, Raman. „Behaviour of first instar Ectropis excursaria (Lepidoptera: Geometridae) in relation to host-finding process“. Thesis, 1986. http://hdl.handle.net/2440/20581.
Der volle Inhalt der QuelleTimlick, Blaine Herbert Leslie. „Studies on the fall cankerworm, Alsophila pometaria (Harris) (Lepidoptera: Geometridae) in Manitoba, with reference to performance on different host trees, defoliation intensity and host plant selection“. 1992. http://hdl.handle.net/1993/7242.
Der volle Inhalt der QuelleBücher zum Thema "Geometridae Host plants"
Confer Defoliators Of British Columbia. Canadian Forest Service, 2006.
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Tanhuanpää, Miia, und Kai Ruohomäki. „Population Cycles of the Autumnal Moth in Fennoscandia“. In Population Cycles. Oxford University Press, 2002. http://dx.doi.org/10.1093/oso/9780195140989.003.0012.
Der volle Inhalt der QuelleKonferenzberichte zum Thema "Geometridae Host plants"
Oryniak, Andrii, und Igor Orynyak. „Swelling of VVER-1000 Core Baffle: Numerical Modeling and Direct Measurement of its Geometrical Dimensions“. In ASME 2017 Pressure Vessels and Piping Conference. American Society of Mechanical Engineers, 2017. http://dx.doi.org/10.1115/pvp2017-65769.
Der volle Inhalt der QuelleAmulfi, G. L., D. Micheli und P. Pinamonti. „Velocity Measurements Downstream of the Impellers in a Multistage Centrifugal Blower“. In ASME 1994 International Gas Turbine and Aeroengine Congress and Exposition. American Society of Mechanical Engineers, 1994. http://dx.doi.org/10.1115/94-gt-041.
Der volle Inhalt der QuelleLe Duff, Jean Alain, Bruno Tacchini, Jean Michel Stephan, Regis Tampigny, Antoine Fissolo und Ludovic Vincent. „High Cycle Thermal Fatigue Issues in RHRS Mixing Tees and Thermal Fatigue Test on a Representative 304 L Mixing Zone“. In ASME 2011 Pressure Vessels and Piping Conference. ASMEDC, 2011. http://dx.doi.org/10.1115/pvp2011-57951.
Der volle Inhalt der QuelleCatalano, Luciano Andrea, Fabio De Bellis, Riccardo Amirante und Matteo Rignanese. „A High-Efficiency Heat Exchanger for Closed Cycle and Heat Recovery Gas Turbines“. In ASME Turbo Expo 2010: Power for Land, Sea, and Air. ASMEDC, 2010. http://dx.doi.org/10.1115/gt2010-22509.
Der volle Inhalt der QuelleValle´e, Christophe, Tobias Seidel, Dirk Lucas, Akio Tomiyama und Michio Murase. „Comparison of CCFL Experiments Performed in Two Different Models of the Hot Leg of a PWR With Rectangular Cross-Section“. In 18th International Conference on Nuclear Engineering. ASMEDC, 2010. http://dx.doi.org/10.1115/icone18-30089.
Der volle Inhalt der QuelleBohn, Dieter, und Robert Krewinkel. „Influence of a Broken-Away TBC on the Flow Structure and Wall Temperature of an Effusion Cooled Multi-Layer Plate Using the Conjugate Calculation Method“. In ASME Turbo Expo 2008: Power for Land, Sea, and Air. ASMEDC, 2008. http://dx.doi.org/10.1115/gt2008-50378.
Der volle Inhalt der QuelleGoinis, Georgios, Marcello Benvenuto, Stefano Gino Mosele und Andrea Schneider. „Simulation of a Multistage Compressor at Low Load Operation with Additional Bleed Air Extraction for Minimum Environmental Load Reduction“. In GPPS Chania22. GPPS, 2022. http://dx.doi.org/10.33737/gpps22-tc-96.
Der volle Inhalt der QuelleAndreini, Antonio, Bruno Facchini, Alessio Picchi, Lorenzo Tarchi und Fabio Turrini. „Experimental and Theoretical Investigation of Thermal Effectiveness in Multi-Perforated Plates for Combustor Liner Effusion Cooling“. In ASME Turbo Expo 2013: Turbine Technical Conference and Exposition. American Society of Mechanical Engineers, 2013. http://dx.doi.org/10.1115/gt2013-94667.
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