Противороевое действие ТОС-3 на трутневом расплоде

Aims. Previously we suggested the way of antiswarm treatment bee-families bringing in nest-bowls of the pheromone preparation TOS-3 developed by us. The aim of this work is development of new method of antiswarm treatment using this preparation. Methods. A site of drone comb treated by the pheromone...

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Published in:Фактори експериментальної еволюції організмів
Date:2013
Main Authors: Ишмуратова, Н.М., Яковлева, М.П., Тамбовцев, К.А., Ишмуратов, Г.Ю.
Format: Article
Language:Russian
Published: Інститут молекулярної біології і генетики НАН України 2013
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Online Access:https://nasplib.isofts.kiev.ua/handle/123456789/177579
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Journal Title:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Cite this:Противороевое действие ТОС-3 на трутневом расплоде / Н.М. Ишмуратова, М.П. Яковлева, К.А. Тамбовцев, Г.Ю. Ишмуратов // Фактори експериментальної еволюції організмів: Зб. наук. пр. — 2013. — Т. 13. — С. 48-50. — Бібліогр.: 3 назв. — рос.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
id nasplib_isofts_kiev_ua-123456789-177579
record_format dspace
spelling Ишмуратова, Н.М.
Яковлева, М.П.
Тамбовцев, К.А.
Ишмуратов, Г.Ю.
2021-02-16T13:03:22Z
2021-02-16T13:03:22Z
2013
Противороевое действие ТОС-3 на трутневом расплоде / Н.М. Ишмуратова, М.П. Яковлева, К.А. Тамбовцев, Г.Ю. Ишмуратов // Фактори експериментальної еволюції організмів: Зб. наук. пр. — 2013. — Т. 13. — С. 48-50. — Бібліогр.: 3 назв. — рос.
2219-3782
https://nasplib.isofts.kiev.ua/handle/123456789/177579
Aims. Previously we suggested the way of antiswarm treatment bee-families bringing in nest-bowls of the pheromone preparation TOS-3 developed by us. The aim of this work is development of new method of antiswarm treatment using this preparation. Methods. A site of drone comb treated by the pheromone preparation TOS-3. Results. Considerable reduction of the area drone brood is noted when processing by the preparation TOS-3. Conclusions. Thus, sites of drone cells are biologically active zone of the bee nest which processing by a synthetic pheromone of a queen bee prevents emergence of swarm process at an early stage, and also reduces extent of defeat by varroatosis in the processed sites of comb. Key words: pheromone, preparation TOS-3, antiswarm activity, drone brood.
ru
Інститут молекулярної біології і генетики НАН України
Фактори експериментальної еволюції організмів
Аналіз та оцінка генетичних ресурсів
Противороевое действие ТОС-3 на трутневом расплоде
Antiswarm activity of TOS-3 on drone brood
Article
published earlier
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
title Противороевое действие ТОС-3 на трутневом расплоде
spellingShingle Противороевое действие ТОС-3 на трутневом расплоде
Ишмуратова, Н.М.
Яковлева, М.П.
Тамбовцев, К.А.
Ишмуратов, Г.Ю.
Аналіз та оцінка генетичних ресурсів
title_short Противороевое действие ТОС-3 на трутневом расплоде
title_full Противороевое действие ТОС-3 на трутневом расплоде
title_fullStr Противороевое действие ТОС-3 на трутневом расплоде
title_full_unstemmed Противороевое действие ТОС-3 на трутневом расплоде
title_sort противороевое действие тос-3 на трутневом расплоде
author Ишмуратова, Н.М.
Яковлева, М.П.
Тамбовцев, К.А.
Ишмуратов, Г.Ю.
author_facet Ишмуратова, Н.М.
Яковлева, М.П.
Тамбовцев, К.А.
Ишмуратов, Г.Ю.
topic Аналіз та оцінка генетичних ресурсів
topic_facet Аналіз та оцінка генетичних ресурсів
publishDate 2013
language Russian
container_title Фактори експериментальної еволюції організмів
publisher Інститут молекулярної біології і генетики НАН України
format Article
title_alt Antiswarm activity of TOS-3 on drone brood
description Aims. Previously we suggested the way of antiswarm treatment bee-families bringing in nest-bowls of the pheromone preparation TOS-3 developed by us. The aim of this work is development of new method of antiswarm treatment using this preparation. Methods. A site of drone comb treated by the pheromone preparation TOS-3. Results. Considerable reduction of the area drone brood is noted when processing by the preparation TOS-3. Conclusions. Thus, sites of drone cells are biologically active zone of the bee nest which processing by a synthetic pheromone of a queen bee prevents emergence of swarm process at an early stage, and also reduces extent of defeat by varroatosis in the processed sites of comb. Key words: pheromone, preparation TOS-3, antiswarm activity, drone brood.
issn 2219-3782
url https://nasplib.isofts.kiev.ua/handle/123456789/177579
citation_txt Противороевое действие ТОС-3 на трутневом расплоде / Н.М. Ишмуратова, М.П. Яковлева, К.А. Тамбовцев, Г.Ю. Ишмуратов // Фактори експериментальної еволюції організмів: Зб. наук. пр. — 2013. — Т. 13. — С. 48-50. — Бібліогр.: 3 назв. — рос.
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AT tambovcevka protivoroevoedeistvietos3natrutnevomrasplode
AT išmuratovgû protivoroevoedeistvietos3natrutnevomrasplode
AT išmuratovanm antiswarmactivityoftos3ondronebrood
AT âkovlevamp antiswarmactivityoftos3ondronebrood
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first_indexed 2025-11-25T23:48:42Z
last_indexed 2025-11-25T23:48:42Z
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fulltext 48 – 2000. – Vol. 41. – P. 1–9. 5. Hasterok R., Wolny E., Hosiawa M. et al., Comparative analysis of rDNA distribution in chromosomes of various species of Brassicaceae // Ann. Bot. – 2006. – V. 97. – P. 205–216. 6. Kamisugi.Y, Nakayama S., O’Neil C.M. et al. Visualization of the Brassica self-incompatibility S-locus on identi- fied oilseed rape chromosomes // Plant Molecular Biology. – 1998. – Vol. 38. – P. 1081–1087. 7. Muravenko O.V., Yurkevich O.YU.,Bolsheva N.L. et al, Comparison of genomes of eight species of sections Linumand Adenolinum from the genus Linum based on chromosome banding, molecular markers and RAPD analysis // Genetika. – 2009. – V. 135, 2. – P. 245–255. 8. Olin-Fatih M. and Heneen W.K. C-banded karyotypes of Brassica campestris, B. oleracea and B. napus // Ge- nome. – 1992. – Vol. 35. – P. 583–589. 9. Snowdon R. J., Friedrich T., Friedt W., Kohler W. Identifying the chromosomes of the A- and C-genome diploid Brassica species B. rapa (syn. campestris) and B. oleracea in their amphidiploid B. napus // Theor. Appl. Genet. – 2002. – Vol. 104. – P. 533–538. 10. U N. Genome-analysis in Brassica with special reference to the experimental formation of B. napus and peculiar mode of fertilization // Japanese Journal of Botany. – 1935. – Vol. 7. – P. 389–453. 11. Xiong Z. and Pires J.C. Karyotype and identification of all homoelogous chromosomes of allopolyploid Brassica napus and its diploid progenitors // Genetics. – 2011. – Vol. 187. – P. 37–49. ZEMTSOVA L.V. 1, AMOSOVA A.V. 1, SAMATADZE T.E. 1, GRUSHETSKAYA Z.E. 2, VOLOVIK V.T. 3, ZELENIN A.V. 1, LEMESH B.A. 2, MURAVENKO O.V. 1 1 Engelgardt Institute of Molecular Biology of RAS Russia, 119991, Moscow, Vavilov str., 32, e-mail: olgmur1@yandex.ru 2 The Institute of Genetics and Cytology of NAS of Belarus Belarus, 220072, Minsk, Academichnaya str., 27, e-mail: v.lemesh@igc.bas-net.by 3 All-Russian Williams Fodder Research Institute of RAAS Russia, 141005, Lobnya, Moscow region, e-mail: vik_volovik@mail.ru CHROMOSOME MARKERS STUDY OF RAPE VARIETIES OF RUSSIAN AND BELORUSSIAN SELECTION Aims. Dependable marking of rape chromosomes is necessary for breeding of agriculturally important varieties. Using chromosome markers the karyotypes of 13 spring and winter rape varieties of Russian and Belorussian selection were studied. Methods. C-, DAPI-banding and FISH with 26S and 5S rDNA were used. Results. More informative C/DAPI-banding was obtained by using DNA intercalator 9-aminoacridine, and rape chromosome identification was made. 26S and 5S rDNA loci were localized on chromosomes 4, 5, 6, 8, 10, 14, 15, 16 and 18. Intra- and intervarietal polymorphism of these chromosome markers was found. Conclusions. The generalized species karyogram that included all the alternates of C/DAPI-patterns as well as 26S and 5S rDNA localization was constructed. Key words: rape varieties, chromosome markers, polymorphism. . ., . ., . ., . . , 450054, . , , 71, e-mail: insect@anrb.ru -3 - ( - ) - -3 9- -2 - (9- ) – - [1, 2]. , . , , , - , : - - , . 49 -3. , , – – , -3, . , , , 9- , , . - 2012 . . - ( 5 ), , , . . 7x7 , . « » 5 , 2 -3 40 %- 50 . 5 40 %- . , 200, . ( 3 ) . -3 ( . 1). 100 %. 1. -3 ( =5) , % 22 8,16±3,34*** 29 19,14± 1,07*** 5 28.74±1,96*** 12 40,46±2,97*** . *** – ; > 0.999. ( . 2). . [3]. 2. -3 ( =5) , % 5,2±0,58 1,4±0,51 4,8±0,80 6,0±0,71 , , , . 50 1. . ., . .,. . . . // 2045175 31.03.92. 2. . ., . ., . .. . ., . . « » // . – 2004. – 3. – . 13. 3. . . Varroa jacobsoni Oudemans, Apis mellifera L.: . . - . . – ., 2002. – 47 . ISHMURATOVA N.M., YAKOVLEVA M.P., TAMBOVTSEV K.A., ISHMURATOV G.YU. Institute of Organic Chemistry Ufa Scientific Center of the Russian Academy of Sciences, Russia, 450054, Ufa, Pr. Oktyabrya, 71. e-mail: insect@anrb.ru ANTISWARM ACTIVITY OF TOS-3 ON DRONE BROOD Aims. Previously we suggested the way of antiswarm treatment bee-families bringing in nest-bowls of the pheromone preparation TOS-3 developed by us. The aim of this work is development of new method of an- tiswarm treatment using this preparation. Methods. A site of drone comb treated by the pheromone prepara- tion TOS-3. Results. Considerable reduction of the area drone brood is noted when processing by the prepa- ration TOS-3. Conclusions. Thus, sites of drone cells are biologically active zone of the bee nest which processing by a synthetic pheromone of a queen bee prevents emergence of swarm process at an early stage, and also reduces extent of defeat by varroatosis in the processed sites of comb. Key words: pheromone, preparation TOS-3, antiswarm activity, drone brood. . .1, 2, . .1, . .1, 2, . .3, . .4, . .1, . .2, . . 1, 2 1 , 03022, . , . , 33, e-mail: hromogen-black@ukr.net 2 « » , 04123, . , . , 2 , e-mail: iht@i.kiev.ua 3 . . . ’ , 39074, . , - , ., . , 15, e-mail: udsr@ukr.net 4 . . « - » , . , . , 30/20- 1, (GLOBODERA ROSTOCHIENSIS), (SOLANUM TUBEROSUM SSP. TUBEROSUM) Globodera rostochiensis Woll. - (Solanum tuberosum ssp. tuberosum) ’ [1]. - 12 % [2], 10–15 [3–5] 50–60 [6, 7]. Solanum tuberosum ssp. tuberosum, - - , [8–10]. - [11–18], - - 1 [19] ( Ro1 Ro4 [20] [21] - - [9]). G. rostochiensis Ro1, . -