Труды сотрудников ИЛ им. В.Н. Сукачева СО РАН

w10=
Найдено документов в текущей БД: 3

    Key techniques for somatic embryogenesis and plant regeneration of Pinus koraiensis
/ F. Gao, C. Peng, H. Wang [et al.] // Forests. - 2020. - Vol. 11, Is. 9. - Ст. 912, DOI 10.3390/F11090912 . - ISSN 1999-4907

Кл.слова (ненормированные):
Cryopreservation -- Embryogenic lines -- Korean pine -- Megagametophytes -- Regenerated plant -- Somatic embryos -- Amino acids -- Animal cell culture -- Cells -- Conservation -- Petroleum prospecting -- Reforestation -- Timber -- Cryopreservation methods -- Embryo maturation -- Germination percentages -- Medium components -- Plant growth regulators -- Plant regeneration -- Somatic embryogenesis -- Varietal forestries -- Growth kinetics -- coniferous forest -- cryopreservation -- embryonic development -- forest management -- gametophyte -- growth regulator -- regeneration -- Amino Acids -- Cells -- Conservation -- Growth Regulators -- Reforestation -- Somatic Embryogenesis -- Korea -- Pinus koraiensis

Аннотация: Korean pine is the dominant species of Korean pine forests. It is an economically valuable species that yields oil, high-quality timber and nuts, and it offers great prospects for further development. Complete regenerated plants of Korean pine were obtained via somatic embryogenesis using megagametophytes as the explant. The seeds of 27 families of Korean pine were collected to induce embryogenic lines. We compared the effects of explant collection time, family and medium components (concentrations of sucrose, plant growth regulators and acid-hydrolyzed casein) on embryogenic lines induction. The effects of plant growth regulators and L-glutamine contents on the proliferation and maturation of embryogenic cell lines were studied, and the germinating ability of different cell lines was evaluated. The embryogenic lines induction percentage of Korean pine reached 33.33%. When 4.52 ?mol·L-1 2,4-D and 2.2 ?mol·L-1 6-BA were added to the medium of embryogenic lines proliferation, the ability of embryo maturation was the best (cell line 001#-100 was 135.71·g-1 fresh weight). Adding 1-1.5g L-1 L-glutamine to the proliferation medium can improve the ability of embryo maturation (cell line 001#-100 was 165.63·g-1 fresh weight). The germination percentage of the three cell lines tested was significant, and the highest was 66%. We report on successful regeneration and cryopreservation methods for somatic embryos of Korean pine. This technology could be used to propagate the excellent germplasm resources of Korean pine and to establish multi-varietal forestry. © 2020 by the authors.

Scopus

Держатели документа:
State Key Laboratory of Tree Genetics and Breeding, School of Forestry, Northeast Forestry University, Harbin, 150040, China
Laboratory of Forest Genetics and Breeding, Institution of the Russian Academy of Sciences V.N., Sukachev Institute of Forest Siberian Branch of RAS, Krasnoyarsk, 660036, Russian Federation
Department of Cell Biology and Institute of Plant Physiology K.A., Timiryazev Russian Academy of Sciences, Moscow, 127276, Russian Federation
Department of Plant Physiology, Biological Faculty, Lomonosov Moscow State University, Moscow, 119991, Russian Federation
State Forestry and Grassland Administration Engineering Technology Research Center of Korean Pine, Harbin, 150040, China

Доп.точки доступа:
Gao, F.; Peng, C.; Wang, H.; Nikolaevna, I.; Mikhaylovich, A.; Shen, H.; Yang, L.

    Key Techniques for Somatic Embryogenesis and Plant Regeneration ofPinus koraiensis
/ F. Gao, C. X. Peng, H. Wang [et al.] // Forests. - 2020. - Vol. 11, Is. 9. - Ст. 912, DOI 10.3390/f11090912. - Cited References:37. - The work was supported by the National Key R&D Program of China (2017YFD0600600), and the Innovation Project of State Key Laboratory of Tree Genetics and Breeding (Northeast Forestry University, 2016C01). . - ISSN 1999-4907
РУБ Forestry

Аннотация: Korean pine is the dominant species of Korean pine forests. It is an economically valuable species that yields oil, high-quality timber and nuts, and it offers great prospects for further development. Complete regenerated plants of Korean pine were obtained via somatic embryogenesis using megagametophytes as the explant. The seeds of 27 families of Korean pine were collected to induce embryogenic lines. We compared the effects of explant collection time, family and medium components (concentrations of sucrose, plant growth regulators and acid-hydrolyzed casein) on embryogenic lines induction. The effects of plant growth regulators and L-glutamine contents on the proliferation and maturation of embryogenic cell lines were studied, and the germinating ability of different cell lines was evaluated. The embryogenic lines induction percentage of Korean pine reached 33.33%. When 4.52 mu mol center dot L(-1)2,4-D and 2.2 mu mol center dot L(-1)6-BA were added to the medium of embryogenic lines proliferation, the ability of embryo maturation was the best (cell line 001#-100 was 135.71 center dot g(-1)fresh weight). Adding 1-1.5g L-1L-glutamine to the proliferation medium can improve the ability of embryo maturation (cell line 001#-100 was 165.63 center dot g(-1)fresh weight). The germination percentage of the three cell lines tested was significant, and the highest was 66%. We report on successful regeneration and cryopreservation methods for somatic embryos of Korean pine. This technology could be used to propagate the excellent germplasm resources of Korean pine and to establish multi-varietal forestry.

WOS

Держатели документа:
Northeast Forestry Univ, Sch Forestry, State Key Lab Tree Genet & Breeding, Harbin 150040, Peoples R China.
RAS, Forest Siberian Branch, Sukachev Inst, Lab Forest Genet & Breeding,Inst Russian Acad Sci, Krasnoyarsk 660036, Russia.
Timiryazev Russian Acad Sci, Dept Cell Biol, Moscow 127276, Russia.
Timiryazev Russian Acad Sci, Inst Plant Physiol KA, Moscow 127276, Russia.
Lomonosov Moscow State Univ, Fac Biol, Dept Plant Physiol, Moscow 119991, Russia.
State Forestry & Grassland Adm Engn Technol Res C, Harbin 150040, Peoples R China.

Доп.точки доступа:
Gao, Fang; Peng, Chunxue; Wang, Hao; Tretyakova, Iraida Nikolaevna; Nosov, Alexander Mikhaylovich; Shen, Hailong; Yang, Ling; National Key R&D Program of China [2017YFD0600600]; Innovation Project of State Key Laboratory of Tree Genetics and Breeding (Northeast Forestry University) [2016C01]

    Размножение лиственницы сибирской с использованием биотехнологии соматического эмбриогенеза
/ И. Н. Третьякова, М. Э. Пак // Лесоведение. - 2023. - № 5. - С. 526-536DOI 10.31857/S002411482305011X
   Перевод заглавия: SIBERIAN LARCH REPRODUCTION USING THE SOMATIC EMBRYOGENESIS BIOTECHNOLOGY
Аннотация: Биотехнология соматического эмбриогенеза в культуре in vitro в сочетании с геномной селекцией и криоконсервацией применяется для создания сортовых генетически тестированных быстрорастущих плантаций (программа Multi-Varietal Forestry MVF, Park, 2014, 2016, 2018). В институте леса им. Сукачева СО РАН в 2008 г. впервые была разработана биотехнология соматического эмбриогенеза для лиственницы сибирской (Larix sibirica Ledeb.) и получены 42 пролиферирующие клеточные линии, состоящие из эмбрионально-суспензорной массы (ЭСМ). Возраст клеточных линий достигает 13 лет. Между клеточными линиями наблюдалась значительная изменчивость по числу и размеру глобулярных зародышей в пролиферирующих эмбриогенных культурах, способности соматических зародышей созревать и прорастать. У разных клеточных линий на 1 г ЭСМ число глобулярных соматических зародышей колеблется от 2040 до 11103, созревает от 10 до 1220 зародышей. Регенеранты прорастают в ростовой камере, и клоны отдельных клеточных линий успешно растут в теплице и далее в почве лесопитомника на стационаре “Погорельский бор” ИЛ СО РАН. Генотипирование клонов по микросателлитным локусам показало полную их генетическую идентичность клеточной линии, из которой они были получены. У клонированных деревьев лиственницы сибирской в семилетнем возрасте произошла закладка генеративных органов. Таким образом, в настоящее время возможно оперативное внедрение программы MVF для плантационного лесовыращивания в России
The biotechnology of somatic embryogenesis in vitro, combined with genomic selection and cryopreservation is used to create varietal genetically tested fast-growing plantations (Multi-Varietal Forestry program (MVF), Park, 2014, 2016, 2018). In 2008, the Sukachev Forest Institute of the Siberian Branch of the RAS has developed for the first time the biotechnology of somatic embryogenesis for Siberian larch (Larix sibirica Ledeb.) and obtained 42 proliferating cell lines consisting of embryonal-suspensor mass (ESM). The age of cell lines reaches 13 years. Significant variability was observed between cell lines in the number and size of globular embryos in proliferating embryogenic cultures, and in the ability of somatic embryos to mature and germinate. In different cell lines, the number of globular somatic embryos per 1 g of ESMs fresh weight ranges from 2040 to 11103, with 10 to 1220 embryos maturing. The regenerants germinate in a growth chamber, and plantlets of individual cell lines grow successfully in a greenhouse and then in the soil of the forest nursery at the Forest Institute's Pogorelsky Bor station. Genotyping of clones at microsatellite loci showed their complete genetic identity to the cell line from which they were obtained. In cloned Siberian larch trees at the age of seven, the initiation of generative organs forming occurred. Thus, at present, it is possible to quickly implement the MVF program for plantation forestry in Russia.

РИНЦ

Держатели документа:
ИЛ СО РАН : 660036, Красноярск, Академгородок, 50/28

Доп.точки доступа:
Пак, Мария Эдуардовна; Pak, M.; Tret'yakova, Iraida Nikolayevna