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<article article-type="research-article" dtd-version="1.3" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xml:lang="ru"><front><journal-meta><journal-id journal-id-type="publisher-id">vavilov</journal-id><journal-title-group><journal-title xml:lang="ru">Вавиловский журнал генетики и селекции</journal-title><trans-title-group xml:lang="en"><trans-title>Vavilov Journal of Genetics and Breeding</trans-title></trans-title-group></journal-title-group><issn pub-type="epub">2500-3259</issn><publisher><publisher-name>Institute of Cytology and Genetics of Siberian Branch of the RAS</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="doi">10.18699/VJGB-23-117</article-id><article-id custom-type="elpub" pub-id-type="custom">vavilov-4013</article-id><article-categories><subj-group subj-group-type="heading"><subject>Research Article</subject></subj-group><subj-group subj-group-type="section-heading" xml:lang="ru"><subject>АКТУАЛЬНЫЕ ТЕХНОЛОГИИ В ГЕНЕТИКЕ И СЕЛЕКЦИИ РАСТЕНИЙ</subject></subj-group><subj-group subj-group-type="section-heading" xml:lang="en"><subject>MAINSTREAM TECHNOLOGIES IN PLANT GENETICS AND BREEDING</subject></subj-group></article-categories><title-group><article-title>Изучение потенциала исходного селекционного материала пшеницы (Triticum aestivum L.) в андрогенезе (Triticum aestivum L.)</article-title><trans-title-group xml:lang="en"><trans-title>Study of wheat (Triticum aestivum L.) breeding material  potential for (Triticum aestivum L.)androgenesis</trans-title></trans-title-group></title-group><contrib-group><contrib contrib-type="author" corresp="yes"><contrib-id contrib-id-type="orcid">https://orcid.org/0000-0002-7499-6803</contrib-id><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Петраш</surname><given-names>Н. В.</given-names></name><name name-style="western" xml:lang="en"><surname>Petrash</surname><given-names>N. V.</given-names></name></name-alternatives><bio xml:lang="ru"><p>Новосибирск</p></bio><bio xml:lang="en"><p>Novosibirsk</p></bio><email xlink:type="simple">pnv11@bionet.nsc.ru</email><xref ref-type="aff" rid="aff-1"/></contrib><contrib contrib-type="author" corresp="yes"><contrib-id contrib-id-type="orcid">https://orcid.org/0000-0003-1573-1618</contrib-id><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Капко</surname><given-names>Т. Н.</given-names></name><name name-style="western" xml:lang="en"><surname>Kapko</surname><given-names>T. N.</given-names></name></name-alternatives><bio xml:lang="ru"><p>Новосибирск</p></bio><bio xml:lang="en"><p>Novosibirsk</p></bio><xref ref-type="aff" rid="aff-1"/></contrib><contrib contrib-type="author" corresp="yes"><contrib-id contrib-id-type="orcid">https://orcid.org/0000-0003-4497-9137</contrib-id><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Советов</surname><given-names>В. В.</given-names></name><name name-style="western" xml:lang="en"><surname>Sovetov</surname><given-names>V. V.</given-names></name></name-alternatives><bio xml:lang="ru"><p>Новосибирск</p></bio><bio xml:lang="en"><p>Novosibirsk</p></bio><xref ref-type="aff" rid="aff-1"/></contrib></contrib-group><aff-alternatives id="aff-1"><aff xml:lang="ru">Сибирский научно-исследовательский институт растениеводства и селекции – филиал Федерального исследовательского центра  &#13;
Институт цитологии и генетики Сибирского отделения Российской академии наук<country>Россия</country></aff><aff xml:lang="en">Siberian Research Institute of Plant Production and Breeding – Branch of the Institute of Cytology and Genetics  of the Siberian Branch of the Russian Academy of Sciences<country>Russian Federation</country></aff></aff-alternatives><pub-date pub-type="collection"><year>2023</year></pub-date><pub-date pub-type="epub"><day>29</day><month>12</month><year>2023</year></pub-date><volume>27</volume><issue>8</issue><fpage>1022</fpage><lpage>1030</lpage><permissions><copyright-statement>Copyright &amp;#x00A9; Петраш Н.В., Капко Т.Н., Советов В.В., 2023</copyright-statement><copyright-year>2023</copyright-year><copyright-holder xml:lang="ru">Петраш Н.В., Капко Т.Н., Советов В.В.</copyright-holder><copyright-holder xml:lang="en">Petrash N.V., Kapko T.N., Sovetov V.V.</copyright-holder><license license-type="creative-commons-attribution" xlink:href="https://creativecommons.org/licenses/by/4.0/" xlink:type="simple"><license-p>This work is licensed under a Creative Commons Attribution 4.0 License.</license-p></license></permissions><self-uri xlink:href="https://vavilov.elpub.ru/jour/article/view/4013">https://vavilov.elpub.ru/jour/article/view/4013</self-uri><abstract><p>Создание удвоенных гаплоидов – ценный биотехнологический подход в селекции растений, позволяющий ускоренно создавать новые сорта за счет одноэтапного получения гомозиготных линий. Целью настоящего исследования было проведение оценки показателей андрогенеза in vitro в культуре пыльников исходного селекционного материала сортов и комбинаций F1 и F2 и выявление перспективных образцов с хорошей отзывчивостью. В работе использован растительный материал, перспективный для селекционных программ Сибирского научно-исследовательского института растениеводства и селекции – филиала ИЦиГ СО РАН. Десять сортов мягкой пшеницы и гибриды F1 и F2 девяти комбинаций скрещивания оценивали по основным параметрам андрогенеза in vitro: числу новообразований, числу альбиносов и зеленых растений-регенерантов и всех регенерировавших растений. Индукцию андрогенеза in vitro проводили в культуре пыльников на питательной среде Chu (N6), в качестве регулятора роста использовали 1 мг/л 2.4-Д. У изучаемых образцов обнаружен различный ответ на индукцию андрогенеза in vitro. Отмечен максимальный выход новообразований у гибридов F2 Новосибирская 15 × Лютесценс ШТ-335. Наибольшее количество зеленых растений-регенерантов обнаружено у F1 Новосибирская 15 × Лютесценс ШТ-335. По результатам дисперсионного анализа установлено достоверное ( p &lt; 0.01) влияние генотипа на изучаемые признаки. Выявлены сорта с хорошей отзывчивостью в культуре пыльников (Новосибирская 15) и с отсутствием отзывчивости к андрогенезу in vitro (Новосибирская 31). Сорт Новосибирская 16 характеризовался низкой регенерационной способностью новообразований. Среди гибридов значительный гетерозисный эффект отмечен по признаку «число новообразований на 100 пыльников» в комбинациях Новосибирская 15 × Лютесценс ШТ-335, Новосибирская 15 × Лютесценс 111/09, Загора Новосибирская × Обская 2. Сорт Новосибирская 15 рекомендован к включению в скрещивания как сорт, обеспечи вающий высокую отзывчивость в андрогенезе in vitro гибридов. Применение технологии удвоенн ых гаплоидов позволило быстро создать DH-линии на основе изучаемого материала.</p></abstract><trans-abstract xml:lang="en"><p>Doubled haploid technology is a valuable biotechnological approach in plant breeding that enables one to quickly create new varieties through the single-stage production of homozygous lines. The aim of this study was to assess the indicators of in vitro androgenesis in the anther culture of the initial breeding material of varieties and combinations of F1 and F2 and to identify promising accessions with good responsiveness. For that purpose, the plant material that proved promising for the breeding programs of Siberian Research Institute of Plant Production and Breeding (SibRIPP&amp;B) was used. Ten cultivars of common wheat and the F1 and F2 hybrids of nine combinations were evaluated for the main parameters of in vitro androgenesis such as the number of new formations, albino, green and all regenerated plants. Induction of androgenesis in vitro was carried out in anther culture in growth medium Chu (N6) containing 1 mg/l of growth regulator 2,4-D. The studied samples showed different responses to induction. The maximum level of new formations was found in F2 hybrids Novosibirskaya 15 × Lutescens ShT-335. The largest number of green plants was found in F1 Novosibirskaya 15 × Lutescens ShT-335. According to the results of variance analysis, a significant ( p &lt; 0.01) influence of genotype on the studied traits was established. Varieties with good responsiveness to anther culture (Novosibirskaya 15) and lack of responsiveness to in vitro androgenesis (Novosibirskaya 31) were identified. Novosibirskaya 16 was characterized by a low regeneration capacity of new formations. A significant heterotic effect was revealed considering the number of new formations per 100 anthers among the hybrids of such combinations as Novosibirskaya 15 × Lutescens ShT-335, Novosibirskaya 15 × Lutescens 111/09, and Zagora Novosibirskaya × Obskaya 2. Novosibirskaya 15 was recommended for inclusion in crossings as a parental form that provides high hybrid responsiveness during in vitro androgenesis. The use of doubled haploid technology made it possible to quickly create DH-lines based on the breeding material.</p></trans-abstract><kwd-group xml:lang="ru"><kwd>удвоенные гаплоиды</kwd><kwd>андрогенез in vitro</kwd><kwd>культура пыльников</kwd><kwd>Triticum aestivum L.</kwd><kwd>гетерозисный эффект</kwd></kwd-group><kwd-group xml:lang="en"><kwd>doubled haploids</kwd><kwd>in vitro androgenesis</kwd><kwd>anther culture</kwd><kwd>Triticum aestivum L.</kwd><kwd>heterosis</kwd></kwd-group><funding-group xml:lang="en"><funding-statement>This work was supported by Institute of Cytology and Genetics, Siberian Branch of Russian Academy of Sciences budget project No. FWNR-2022-0017.</funding-statement></funding-group></article-meta></front><back><ref-list><title>References</title><ref id="cit1"><label>1</label><citation-alternatives><mixed-citation xml:lang="ru">Abd El-Fatah B.E.S., Sayed M.A., El-Sanusy S.A. 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