Генетична трансформація цукрового буряку синтетичним геном cry1C

Aims. Insect pest’s impact makes a significant limitation of the sugar beet crop yield. Integration of cry-genes of Bacillus
 thuringiensis into the plant genome is one of the promising strategies to ensure of plant resistance. The aim of this work was to
 obtain sugar beet lines (ba...

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Published in:Фактори експериментальної еволюції організмів
Date:2015
Main Authors: Курило, В.В., Ємець, А.І.
Format: Article
Language:Ukrainian
Published: Інститут молекулярної біології і генетики НАН України 2015
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Online Access:https://nasplib.isofts.kiev.ua/handle/123456789/177526
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Journal Title:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Cite this:Генетична трансформація цукрового буряку синтетичним геном cry1C / В.В. Курило, А.І. Ємець // Фактори експериментальної еволюції організмів: Зб. наук. пр. — 2015. — Т. 17. — С. 193-196. — Бібліогр.: 21 назв. — укр.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
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author Курило, В.В.
Ємець, А.І.
author_facet Курило, В.В.
Ємець, А.І.
citation_txt Генетична трансформація цукрового буряку синтетичним геном cry1C / В.В. Курило, А.І. Ємець // Фактори експериментальної еволюції організмів: Зб. наук. пр. — 2015. — Т. 17. — С. 193-196. — Бібліогр.: 21 назв. — укр.
collection DSpace DC
container_title Фактори експериментальної еволюції організмів
description Aims. Insect pest’s impact makes a significant limitation of the sugar beet crop yield. Integration of cry-genes of Bacillus
 thuringiensis into the plant genome is one of the promising strategies to ensure of plant resistance. The aim of this work was to
 obtain sugar beet lines (based on the MM1/2 line) transformed with cry1C genes using vector construction pRD400-cry1CST.
 Methods. Genetic transformation of sugar beet was performed using the procedure of co-cultivation of leaf explants with
 Agrobacterium tumefacins. Results. Sugar beet line MM1/2 was transformed by Agrobacterium-mediated transformation
 using vector pRD400-cry1CST, containing synthetic cry1C gene and selectable marker gene neomycin phosphotransferase
 II (nptII), that conferring resistance to kanamycin. After the optimization protocol of genetic transformation and direct
 regeneration from leaf discs a transgenic sugarbeet lines were obtained. They survived on a selective medium containing 1
 mg/l benzylaminopurine (BAP), kanamycin as the selective agent in a concentration of 100 mg/l and 250 mg/l cefotaxime
 to eliminate excess Agrobacterium. The frequency of transformation in this case was 57.2 %. Conclusions. Based on the
 selection and capacity for growth and development in the presence of the selective agent kanamycin, we could suggest that
 a target cry1C gene was integrated into the genome of sugar beet plants, that confers resistance to a number of insect genus
 of Lepidoptera and Diptera and its expression in transgenic lines of B. vulgaris.
 Keywords: genetic transformation, Agrobacterium tumefaciens, Beta vulgaris, cry-genes.
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publisher Інститут молекулярної біології і генетики НАН України
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spelling Курило, В.В.
Ємець, А.І.
2021-02-16T12:24:19Z
2021-02-16T12:24:19Z
2015
Генетична трансформація цукрового буряку синтетичним геном cry1C / В.В. Курило, А.І. Ємець // Фактори експериментальної еволюції організмів: Зб. наук. пр. — 2015. — Т. 17. — С. 193-196. — Бібліогр.: 21 назв. — укр.
2219-3782
https://nasplib.isofts.kiev.ua/handle/123456789/177526
62.37:633:6:632.7
Aims. Insect pest’s impact makes a significant limitation of the sugar beet crop yield. Integration of cry-genes of Bacillus
 thuringiensis into the plant genome is one of the promising strategies to ensure of plant resistance. The aim of this work was to
 obtain sugar beet lines (based on the MM1/2 line) transformed with cry1C genes using vector construction pRD400-cry1CST.
 Methods. Genetic transformation of sugar beet was performed using the procedure of co-cultivation of leaf explants with
 Agrobacterium tumefacins. Results. Sugar beet line MM1/2 was transformed by Agrobacterium-mediated transformation
 using vector pRD400-cry1CST, containing synthetic cry1C gene and selectable marker gene neomycin phosphotransferase
 II (nptII), that conferring resistance to kanamycin. After the optimization protocol of genetic transformation and direct
 regeneration from leaf discs a transgenic sugarbeet lines were obtained. They survived on a selective medium containing 1
 mg/l benzylaminopurine (BAP), kanamycin as the selective agent in a concentration of 100 mg/l and 250 mg/l cefotaxime
 to eliminate excess Agrobacterium. The frequency of transformation in this case was 57.2 %. Conclusions. Based on the
 selection and capacity for growth and development in the presence of the selective agent kanamycin, we could suggest that
 a target cry1C gene was integrated into the genome of sugar beet plants, that confers resistance to a number of insect genus
 of Lepidoptera and Diptera and its expression in transgenic lines of B. vulgaris.
 Keywords: genetic transformation, Agrobacterium tumefaciens, Beta vulgaris, cry-genes.
uk
Інститут молекулярної біології і генетики НАН України
Фактори експериментальної еволюції організмів
Молекулярні та клітинні біотехнології
Генетична трансформація цукрового буряку синтетичним геном cry1C
Genetic transformation of sugar beet by synthetic cry1C gene
Article
published earlier
spellingShingle Генетична трансформація цукрового буряку синтетичним геном cry1C
Курило, В.В.
Ємець, А.І.
Молекулярні та клітинні біотехнології
title Генетична трансформація цукрового буряку синтетичним геном cry1C
title_alt Genetic transformation of sugar beet by synthetic cry1C gene
title_full Генетична трансформація цукрового буряку синтетичним геном cry1C
title_fullStr Генетична трансформація цукрового буряку синтетичним геном cry1C
title_full_unstemmed Генетична трансформація цукрового буряку синтетичним геном cry1C
title_short Генетична трансформація цукрового буряку синтетичним геном cry1C
title_sort генетична трансформація цукрового буряку синтетичним геном cry1c
topic Молекулярні та клітинні біотехнології
topic_facet Молекулярні та клітинні біотехнології
url https://nasplib.isofts.kiev.ua/handle/123456789/177526
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AT êmecʹaí genetičnatransformacíâcukrovogoburâkusintetičnimgenomcry1c
AT kurilovv genetictransformationofsugarbeetbysyntheticcry1cgene
AT êmecʹaí genetictransformationofsugarbeetbysyntheticcry1cgene