Littérature scientifique sur le sujet « Apis mellifera L. Quinalphos »

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Articles de revues sur le sujet "Apis mellifera L. Quinalphos"

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Aryal, L. N., R. B. Thapa, S. Tiwari, and N. K. Chaudhary. "Foraging Behavior of Native Honeybee (Apis Cerana F.) and European Honeybee (Apis Mellifera L.) on Flowers of Common Buckwheat (Fagopyrum Esculentum M.) in Chitwan, Nepal." International Journal of Applied Sciences and Biotechnology 4, no. 2 (2016): 236–39. http://dx.doi.org/10.3126/ijasbt.v4i2.15131.

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This paper is the findings of the research conducted on foraging behavior of Native honeybee (Apis cerana F.) and European honeybee (Apis mellifera L.) on flowering buckwheat (Fagopyrum esculentum Moench) inside the cage during November 2012 to 2013 at Meghauli, Chitwan, Nepal. Apis cerana F. started their foraging activities early in the morning (8.24 ± 0.50 AM) and ceased late in the evening (5.18 ± 0.20 PM) in comparison to Apis mellifera L., which started foraging at 8.29 ± 0.50 AM and ceased at 4.56 ± 0.50 PM. The total duration of foraging per day was more in Apis cerana F. than Apis mel
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Pudasaini, Rameshwor, and Resham Bahadur Thapa. "Comparative Foraging Behavior of Apis Cerana F. and Apis Mellifera L. in Rapeseed under Cage Condition in Chitwan, Nepal." International Journal of Applied Sciences and Biotechnology 2, no. 4 (2014): 483–87. http://dx.doi.org/10.3126/ijasbt.v2i4.11238.

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An experiment was conducted to determine the foraging behavior of Apis mellifera L. and Apis cerana F. in rapeseed under cage condition in Chitwan, Nepal during 2012-2013. This experiment showed that Apis cerana F. foraged extra 42 minute per day as compared to Apis mellifera L. Apis cerana F. were more attracted to nectar, whereas Apis mellifera L. were more attracted to pollen collection throughout the day. The activities, in into hives and out from hives, for both species were recorded more at 2:00 pm and least at 8:00 am. The highest in-out were observed at 2:00 pm on both species as Apis
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Murylev, A. V., A. V. Petukhov, and V. Yu Lipatov. "Adaptations of honeybees Apis mellifera mellifera L. and Apis mellifera carpathica to low winter temperatures." Russian Journal of Ecology 43, no. 5 (2012): 409–11. http://dx.doi.org/10.1134/s1067413612050104.

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Tuegeh, Reinny Silvana, Herry Maurits Sumampouw, Meity Neltje Tanor, and Yermia Semuel Mokosuli. "Bioactive Contents, BSLT Toxicity and antioxidants from Apis dorsata Binghami and Apis mellifera nest extracts." JURNAL PEMBELAJARAN DAN BIOLOGI NUKLEUS 9, no. 2 (2023): 398–413. http://dx.doi.org/10.36987/jpbn.v9i2.4514.

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Beenest is rich in secondary metabolites because honeycombs, among others, are formed from plant resins (propolis). This study aimed to analyze differences in flavonoid content and in vitro antioxidant activity of Apis dorsata Binghami and Apis mellifera nest extracts. The samples used were A. dorsata from North Sulawesi and A. mellifera from South Sulawesi. The honeycomb was extracted using 95% ethanol solvent. Honeycomb extract was analyzed for its flavonoid content by the HPLC method, toxicity was tested by the BSLT method, and in vitro antioxidant activity was tested by the DPPH method. Th
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Kovačić, Marin, and Zlatko Puškadija. "Feromoni medonosne pčele (Apis mellifera L.)." Stočarstvo 71, no. 1-2 (2017): 9–19. http://dx.doi.org/10.33128/s.71.1-2.2.

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Podjelu uloga između članova pčelinje zajednice, kao i funkcioniranje pčelinje zajednice omogućuje savršena komunikacija, a ona se kod pčela odvija pomoću pčelinjeg plesa i najvećim dijelom putem feromona. Feromoni u pčelinjoj zajednici imaju ulogu spajanja pčela kao jedinki u jednu kohezivnu zajednicu, tzv. superorganizam. Također, feromoni imaju ključnu ulogu u svim aspektima života pčelinje zajednice, od razmnožavanja, do sakupljanja hrane i obrane zajednice. U ovom su radu obrađene žlijezde koje izlučuju feromone, kao i uloga pojedinih feromona na ponašanje pčelinje zajednice.
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Moritz, R. F. A. "Inzuchteffekte bei Drohnen (Apis mellifera L.)." Insectes Sociaux 32, no. 1 (1985): 104–5. http://dx.doi.org/10.1007/bf02233231.

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Oldroyd, B., A. Smolenski, S. Lawler, A. Estoup, and R. Crozier. "Colony aggregations in Apis mellifera L." Apidologie 26, no. 2 (1995): 119–30. http://dx.doi.org/10.1051/apido:19950205.

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Pudasaini, R., and RB Thapa. "Effect of pollination on rapeseed (Brassica campestris L. var. Toria) production in Chitwan, Nepal." Journal of Agriculture and Environment 15 (June 1, 2014): 41–45. http://dx.doi.org/10.3126/aej.v15i0.19814.

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Rapeseed is an important cash crop of Nepal and an experiment was conducted to study the effect of pollination on its production in Chitwan during 2012-2013. The experiment was designed in Randomized Complete Block with four replications and five pollination treatments. The rapeseed plots were caged with mosquito nets at 10% flowering except natural pollination. Two-framed colonies of Apis mellifera L. and Apis cerana F. were introduced separately for pollination, and control plot caged without pollinators. Seed set increased by 48.72% with Apis cerana F. and 45.73% with Apis mellifera L. poll
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Parajuli, Sangita Egan, and RB Thapa. "Foraging Behavior of Apis mellifera L. Landraces Under Terai Condition of Nepal." Nepal Journal of Science and Technology 13, no. 2 (2013): 51–56. http://dx.doi.org/10.3126/njst.v13i2.7714.

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A study was conducted to compare the foraging behavior of landraces of Apis mellifera L. under Terai condition of Nepal, for which the honeybee colonies were brought from Dang, Chitwan, Sarlahi and Parsa districts. The experiment was laid out in a randomized complete block design (RCBD) with six replications (colonies) and four treatments (landraces), i.e. Apis mellifera carnica, Apis mellifera russian, Apis mellifera buckfast and Apis mellifera ligustica. Each experimental unit consisted of 10 frame Langstroth bee hives with about 50,000 workers. Data recording continued from 26 March to 14 J
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Il’yasov, R. A., A. V. Petukhov, A. V. Poskryakov, and A. G. Nikolenko. "Local honeybee (Apis mellifera mellifera L.) populations in the Urals." Russian Journal of Genetics 43, no. 6 (2007): 709–11. http://dx.doi.org/10.1134/s1022795407060166.

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Thèses sur le sujet "Apis mellifera L. Quinalphos"

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Katinienė, Aurelija. "Tranų (apis mellifera l.) skraidymo ritmai." Master's thesis, Lithuanian Academic Libraries Network (LABT), 2007. http://vddb.library.lt/obj/LT-eLABa-0001:E.02~2007~D_20070816_170848-57136.

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2004 ir 2006 m. birželio – rugpjūčio mėn. buvo tiriama medunešių bičių (Apis mellifera L.) tranų skraidymo pradžia, tranų skraidymo dinamika dienos metu ir kokią įtaką jai daro aplinkos temperatūra. Įvertintas išskrendančių ir atskrendančių į tą pačią bičių šeimą tranų skaičius bei tranų skridimas į svetimas bi��ių šeimas. Ištirta 6 stipresnės ir 5 silpnesnės bičių šeimos. Buvo skaičiuojami per 2 min. iš avilio išskridę, po to per 2 min. į avilį atskridę tranai. Kiekvienos bičių šeimos tranai buvo pažymėti skirtinga spalva. Žymėti tranai turėjo savo individualius numerius. Tyrimų rezultatai pa
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Bovi, Thaís de Souza [UNESP]. "Toxicidade de inseticidas para abelhas Apis mellifera L." Universidade Estadual Paulista (UNESP), 2013. http://hdl.handle.net/11449/104999.

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Made available in DSpace on 2014-06-11T19:33:34Z (GMT). No. of bitstreams: 0 Previous issue date: 2013-04-19Bitstream added on 2014-06-13T21:06:30Z : No. of bitstreams: 1 bovi_ts_me_botfmvz.pdf: 296305 bytes, checksum: cd79bf7c5ea0761f01a0c3fe43cec56e (MD5)<br>Este trabalho teve por objetivos estabelecer a Dose Letal (DL50) de inseticidas em abelhas campeiras de Apis mellifera africanizadas e verificar a ocorrência de alterações comportamentais. O experimento foi desenvolvido no Setor de Apicultura da Faculdade de Medicina Veterinária e Zootecnia, Fazenda Experimental Lageado, UNESP, Campus
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Bovi, Thaís de Souza 1983. "Toxicidade de inseticidas para abelhas Apis mellifera L. /." Botucatu :, 2013. http://hdl.handle.net/11449/104999.

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Orientador: Ricardo de Oliveira Orsi<br>Banca: Edson Ramos de Siqueira<br>Banca: Lídia Maria Ruv Carelli Barreto<br>Resumo: Este trabalho teve por objetivos estabelecer a Dose Letal (DL50) de inseticidas em abelhas campeiras de Apis mellifera africanizadas e verificar a ocorrência de alterações comportamentais. O experimento foi desenvolvido no Setor de Apicultura da Faculdade de Medicina Veterinária e Zootecnia, Fazenda Experimental Lageado, UNESP, Campus de Botucatu. Foram utilizadas abelhas campeiras e testados os agrotóxicos Acefato, Cipermetrina, Deltametrina, Carbaril, Fipronil e Imidacl
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Paillard, Marilène. "Preservation of Honey Bee (Apis mellifera L.) Semen." Master's thesis, Université Laval, 2016. http://hdl.handle.net/20.500.11794/27245.

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L’abeille domestique (Apis mellifera Linnaeus) joue un rôle crucial comme pollinisateur dans l’industrie de l’agriculture. Cependant, durant les dernières décennies, une mortalité des colonies d’abeilles a été observée partout à travers le monde. La conservation du sperme d’abeille est un outil efficace pour sauvegarder la diversité génétique. Sa conservation est possible à température pièce, mais la cryoconservation serait une meilleure méthode pour la conservation à long terme. Notre objectif général est de développer une méthode de cryoconservation de la semence d’abeille. L’hypothèse no.1
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Sousa, Arlik Rafael Santiago de. "Divergências morfométricas e comportamentais em Apis mellifera L. (Hymenoptera:apidae)." Universidade Federal de Sergipe, 2014. https://ri.ufs.br/handle/riufs/3295.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico<br>Bees of the genus Apis are widely distributed throughout the tropical regions of the planet, playing fundamental role as pollinators. In Brazil they are a polihibrid formed by the crossbreed of African subspecies Apis mellifera scutellata and European subspecies, where due generalist habits the introgression of alleles of the African subspecies has led to a predominance of the your characteristics in relation to European subspecies. The scope of this work was to characterize the divergence among 71 colonies of Africanized honey b
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Franz, Karoline. "Physiologische Grundlagen der Arbeitsteilung bei der Honigbiene (Apis mellifera L.)." [S.l.] : [s.n.], 2007. http://opus.kobv.de/tuberlin/volltexte/2007/1533.

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Hasselmann, Martin. "Molekulare Charakterisierung des geschlechtsbestimmenden Locus der Honigbiene (Apis mellifera L.)." [S.l. : s.n.], 2004. http://deposit.ddb.de/cgi-bin/dokserv?idn=970626274.

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Köppler, Kirsten. "Ressourcennutzung und Sammelverhalten verschiedener Unterarten der Honigbiene Apis mellifera L." [S.l. : s.n.], 2002. http://deposit.ddb.de/cgi-bin/dokserv?idn=966253906.

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Cole, H. "A computerised atlas of the honeybee brain (Apis mellifera L.)." Thesis, Bucks New University, 1986. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.376424.

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Soares, Jefferson Bruno Carvalho. "Toxicidade de inseticidas neonicotinoides sobre abelhas Apis mellifera L. (africanizadas)." Universidade Federal Rural do Semi-Árido, 2016. http://bdtd.ufersa.edu.br:80/tede/handle/tede/568.

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Submitted by Socorro Pontes (socorrop@ufersa.edu.br) on 2017-03-10T12:54:12Z No. of bitstreams: 1 JeffersonBCS_DISSERT.pdf: 1486317 bytes, checksum: f7580d6ec5ee35a2be605d2dd55fbfdf (MD5)<br>Made available in DSpace on 2017-03-10T12:54:12Z (GMT). No. of bitstreams: 1 JeffersonBCS_DISSERT.pdf: 1486317 bytes, checksum: f7580d6ec5ee35a2be605d2dd55fbfdf (MD5) Previous issue date: 2016-02-16<br>Coordenação de Aperfeiçoamento de Pessoal de Nível Superior<br>Honey bees play an important role in both economic and environmental part. However, in recent years there has been observed a decline in the w
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Livres sur le sujet "Apis mellifera L. Quinalphos"

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Nowottnick, Klaus. Die Honigbiene, Apis mellifera L. Westarp Wissenschaften, 2004.

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Wehling, Wayne F. Pest risk assessment: Importation of adult queens, package bees and germplasm of honey bees, Apis mellifera L., from Australia : qualitative, pathway-initiated pest risk assessment. Plant Protection and Quarantine, Animal and Plant Health Inspection Service, U.S. Dept. of Agriculture, 2000.

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Kellar, Brenda M. One methodology for the incorporation of entomological material in the discipline of historic archaeology using the honey bee (Apis mellifera L.) as a test subject. Oregon State University, Department of Anthropology, 2004.

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Winston, Mark L. Killer bees: The Africanized honey bee in the Americas. Harvard University Press, 1992.

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Lewbart, Gregory A., Nicolas Vidal-Naquet, and Bernard Vallat. Honeybee Veterinary Medicine: Apis Mellifera L. 5m Publishing, 2015.

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Rademacher, Eva Ursula. Untersuchungen zum Wabenbauverhalten der Honigbiene (Apis mellifera L.). 1988.

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Purdy, John. Foraging Behavior of the Honey Bee (Apis Mellifera, L. ). Elsevier Science & Technology Books, 2023.

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Purdy, John. Foraging Behavior of the Honey Bee (Apis Mellifera, L. ). Elsevier Science & Technology, 2023.

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Rachinsky, Anna. Juvenilhormon und Ecdysteroide in der Kastenentwicklung der Honigbiene (Apis mellifera L.). 1990.

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Minnich, Dwight Elmer. Relation of Phototropism to Swarming in the Honey-Bee, Apis Mellifera L. Creative Media Partners, LLC, 2018.

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Chapitres de livres sur le sujet "Apis mellifera L. Quinalphos"

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Shaskolsky, D. V. "The Honeybee Apis mellifera L." In Animal Species for Developmental Studies. Springer US, 1990. http://dx.doi.org/10.1007/978-1-4613-0503-3_8.

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Moritz, Robin F. A., and Christian Brandes. "Behavior Genetics of Honeybees (Apis mellifera L.)." In Neurobiology and Behavior of Honeybees. Springer Berlin Heidelberg, 1987. http://dx.doi.org/10.1007/978-3-642-71496-2_3.

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Turkekul, Ibrahim. "Problems Detected in Pleurotus Ostreatus (Oyster Mushroom) Mushroom Cultivation in Türkiye." In Recent Applications and Biological Activities in Aquaculture and Agriculture. Nobel Tip Kitabevleri, 2024. http://dx.doi.org/10.69860/nobel.9786053359319.13.

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Turkey, which has a wide ecological diversity due to its geographical location, is rich in honey bee and its ecotypes. A number of researches have been carried out on the identification and breeding of honey bee genotypes in our country. Our Anatolia, which includes various habitats, is the genetic centre of the subspecies of Apis mellifera L. bee. Honey bee races in this region include Apis mellifera anatoliaca (Anatolian bee), Apis mellifera Caucasica (Caucasian bee), Apis mellifera Meda (Iranian bee), Apis mellifera Syriaca (Syrian bee) and Apis mellifera carnica (Carniolan bee). Apart from
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Ganie, Sajad A., Zul-Nuran Haifa, M. A. Paray, Parveena Bano, Rizwana Khurshid, and Sheikh Aafreen Rehman. "Colony Collapse Disorder of Managed Honey Bee (Apis mellifera L.) Populations." In Insect Diversity and Ecosystem Services. Apple Academic Press, 2024. http://dx.doi.org/10.1201/9781003471196-4.

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Lensky, Yaacov, and Pierre Cassier. "Alarm Pheromones of the Queen and Worker Honey Bees (Apis Mellifera L.)." In Bee Products. Springer US, 1997. http://dx.doi.org/10.1007/978-1-4757-9371-0_19.

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Rakover, Yoseph, and Yaacov Lensky. "Protein Traffic Between Body Compartments of the Female Honey Bee (Apis Mellifera L.)." In Bee Products. Springer US, 1997. http://dx.doi.org/10.1007/978-1-4757-9371-0_20.

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Arteaga-Llacza, Pedro, Angélica Miranda-Jara, and Wilber Quispe-Prado. "Jellybeans Supplemented with Honey Polyphenols (Apis Mellifera L.) from the Apurimac Life Zones." In Smart Innovation, Systems and Technologies. Springer Nature Switzerland, 2024. http://dx.doi.org/10.1007/978-3-031-66961-3_28.

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Bodrum, Ayşe Ebru. "American Foulbrood." In Diagnosis and Treatment Methods of Bee Diseases, edited by Münire Turhan and Ebubekir İzol. Nobel Tip Kitabevleri, 2024. http://dx.doi.org/10.69860/nobel.9786053359159.3.

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American Foulbrood (AFB) is one of the most important infections affecting all life stages of honey bee (Apis mellifera L.) brood. It is a infection that can be seen at any time of the year when honey bee brood is present. The causative agent of the disease is Paenibacillus larvae (P.larvae), a spore-forming. AFB is the most devastating bacterial infection of honey bees (Apis mellifera L.) (1). Infection is not only dangerous and lethal for honey bee larvae. Loss of offspring due to increased egg-laying activity in the colony can no longer be replaced by the queen bee. As a result, the populat
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"Index." In The Foraging Behavior of the Honey Bee (Apis Mellifera, L.). Elsevier, 2024. http://dx.doi.org/10.1016/b978-0-323-91793-3.09990-9.

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Purdy, John, and Francis A. Drummond. "Modeling and analysis of honey bee foraging behavior." In The Foraging Behavior of the Honey Bee (Apis Mellifera, L.). Elsevier, 2024. http://dx.doi.org/10.1016/b978-0-323-91793-3.00003-1.

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Actes de conférences sur le sujet "Apis mellifera L. Quinalphos"

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Berezin, A. "TYPES AND OCCURRENCE OF ABNORMAL WING VENATION IN APIS MELLIFERA L." In SCIENTIFIC SUPPORT FOR LIVESTOCK BREEDING IN SIBERIA. Krasnoyarsk Scientific Research Institute of Agriculture is a separate division of the Federal Research Center KSC SB RAS, 2024. https://doi.org/10.52686/9785605087915_99.

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The honey bee, widespread on 5 out of 6 continents, has developmental abnormalities, expressed, for example, in abnormal wing venation. Taking into account the frequency and types of these anomalies is important for understanding the processes of ontogenesis and systematics.
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Ostroverkhova, N. V. "DARK FOREST BEE APIS MELLIFERA MELLIFERA L. IN SIBERIA: CURRENT STATE AND WAYS OF POPULATION CONSERVATION." In V International Scientific Conference CONCEPTUAL AND APPLIED ASPECTS OF INVERTEBRATE SCIENTIFIC RESEARCH AND BIOLOGICAL EDUCATION. Tomsk State University Press, 2020. http://dx.doi.org/10.17223/978-5-94621-931-0-2020-56.

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Screening studies of the honey bee in Siberia made it possible to identify the dark forest bee Apis mellifera mellifera populations in the Tomsk region, Krasnoyarsk and Altai territories, and the Altai Republic. A comparative analysis of the genetic diversity of the dark forest bee populations of Siberia, the Urals and Europe, carried out according to the data of the molecular genetic study of the mitochondrial and nuclear genomes, suggests the existence of the Siberian ecotype of the Middle Russian breed. The studied bee colonies are characterized by a high adaptive potential (high degree of
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CÎRLIG, Natalia, Victor ȚÎȚEI, and Ana GUȚU. "The diversity of hymenoptera species (Hymenoptera L.) on the Phacelia tanacetifolia Benth. plants in the "Alexandru Ciubotaru" National Botanical Garden (Institute)." In "Instruire prin cercetare pentru o societate prosperă", conferinţă ştiinţifico-practică internaţională. Ion Creangă Pedagogical State University, 2024. https://doi.org/10.46727/c.v1.16-17-05-2024.p197-200.

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The article presents the diversity of Hymenoptera species (Hymenoptera L.) identified on the Phacelia tanacetifolia Benth. cv. 'Melifera' plants, grown in the collection of “Alexandru Ciubotaru” National Botanical Garden (Institute). Eight insect species of the order Hymenoptera L. have been identified (Apis mellifera, Bombus terrestris, B. lapidarius, B. hortorum, Megachile sp., Lasioglossum malachurus, Xylocopa violacea, Megascolia maculata), included in 5 families (Apidae, Megachilidae, Halictidae, Anthophoridae, Scoliidae)) and 6 genera. The presence of Apis mellifera specimens in large nu
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Saltykova, E. S., L. R. Gaifullina, A. V. Poskryakov, and A. G. Nikolenko. "INFLUENCE OF IMIDACLOPRIDE ON THE IMMUNITY OF HONEY BEES (APIS MELLIFERA L.)." In V International Scientific Conference CONCEPTUAL AND APPLIED ASPECTS OF INVERTEBRATE SCIENTIFIC RESEARCH AND BIOLOGICAL EDUCATION. Tomsk State University Press, 2020. http://dx.doi.org/10.17223/978-5-94621-931-0-2020-58.

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The effect of the neonicotinoid, which is the most toxic for bees, on the components of the individual immunity of Apis mellifera L. workers, was studied. It was shown that a non-lethal dose of imidacloprid caused pathological changes in the intestine and fat body cells, the insect's reaction to its own decaying cells and tissues, aggregation, adhesion and lysis of granulocytes that removes a significant proportion of protective cells from the bloodstream, the generation of reactive oxygen species under the inhibition of phenol oxidase activity in hemocytes.
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Marileide de Souza, Sá, Silva Laísa Genilsa de Souza, Cavalcante Marcelo Casimiro, and Oliveira Pedro de Assis de. "FORRAGEAMENTO E COMUNICAÇÃO EM ABELHAS Apis mellifera L. NA CAATINGA DO BRASIL." In III Congresso Internacional das Ciências Agrárias – COINTER PDVAgro. Instituto Internacional Despertando Vocações, 2018. http://dx.doi.org/10.31692/2526-7701.iiicointerpdvagro.2018.00135.

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Frunze, O., Y. S. Choi, H. G. Park, and E. J. Kang. "FEATURES OF SOLUBLE PROTEINS ROYAL JELLY APIS MELLIFERA L. DEPENDING ON TEMPERATURE." In Современные проблемы пчеловодства и апитерапии. Федеральное государственное бюджетное научное учреждение "Федеральный научный центр пчеловодства", 2021. http://dx.doi.org/10.51759/pchel_api_2021_295.

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Kietzman, Parry M. "Identification of stop signaling in foraging honey bee (Apis mellifera L.) colonies." In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.112774.

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Poiša, L. "The significance of bes (Apis mellifera L.) in preserving the natural environment." In international scientific-practical conference. MYKOLAIV NATIONAL AGRARIAN UNIVERSITY, 2024. http://dx.doi.org/10.31521/978-617-7149-78-0-38.

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Bees are a good indicator to assess the natural environment. Today, the demand for natural living conditions and natural products is increasing more and more. The aim of the study is to analyze the role of bees in the preservation of the natural environment. Research object: plant pollinators - Western honey bees (Apis mellifera L.). In Latvia, bees are used more and more to pollinate plants in cities
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Tomczyk, M., J. W. Strawa, A. A. Ptaszyńska, A. Wiater, and M. Kunat. "Hottonia palustris L. extracts as Apis mellifera boosters in the fight against nosemosis." In GA – 70th Annual Meeting 2022. Georg Thieme Verlag KG, 2022. http://dx.doi.org/10.1055/s-0042-1759346.

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Rodrigues, Ícaro de Lima, Davyd B. de Melo, and Danielo G. Gomes. "Bioacoustic Dataset of Sudden Queen Loss in an Apis mellifera L. Honeybee Colony." In Workshop de Computação Aplicada à Gestão do Meio Ambiente e Recursos Naturais. Sociedade Brasileira de Computação - SBC, 2024. http://dx.doi.org/10.5753/wcama.2024.3128.

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The queen bee plays a crucial role in maintaining colony well-being. However, traditionally determining her presence within a hive requires invasive methods, causing stress among the bees and potential nest damage. Audio monitoring offers a simpler, cost-effective, and non-invasive approach to detect various conditions using colony bioacoustics. In this study, we recorded an Africanized honeybee colony for six days, removing the queen on the final day. From these recordings, we sampled 300 frames of 3 seconds each, extracting three time-domain features, five spectral features, and 13 Mel-Frequ
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Rapports d'organisations sur le sujet "Apis mellifera L. Quinalphos"

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ชัยสวัสดิ์, สีมา, та ชนก ลิมปิพิชัย. การศึกษาสัณฐานวิทยาของเหล็กในของผึ้งมิ้ม (Apis florea F.), ผึ้งหลวง (Apis dorsata F.), ผึ้งโพรง (Apis cerana F.) และผึ้งพันธุ์ (Apis mellifera L.) ในประเทศไทย : รายงานผลการวิจัย. จุฬาลงกรณ์มหาวิทยาลัย, 1988. https://doi.org/10.58837/chula.res.1988.19.

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เหล็กในของผึ้งประกอบด้วนส่วนแข็ง (sclerites) ประกบกันคือ lancet 1 คู่ และ stylet 1 อัน พบว่าบน lancet และ stylet มี barb เป็นเงี่ยงแหลม ๆ จากการศึกษาภายใต้กล้องจุลทรรศน์อิเล็คตรอนแบบส่องกราด (scanning electron microscope) พบว่าผึ้งมิ้ม (Apis florae F.) มี lancet barbs 10 อัน stylet barbs 4-5 คู่ ผึ้งหลวง (Apis dorsata F.) มี lancet barbs 11 อัน stylet barbs 2-4 คู่ ผึ้งโพรง (Apis cerana F.) มี lancet barbs 10 อัน stylet barbs 4-5 คู่ ผึ้งพันธุ์ (Apis mellifera L.) มี lancet barbs 10 อัน stylet barbs 2-4 คู่ ซึ่งไม่พัฒนาเท่าผึ้งอีก 3 ชนิดเห็นเป็นตุ่มเล็ก ๆ เท่านั้น โดยลักษณะสัณฐานวิทยาที่ไม่เหม
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