Εμφανίζονται 1 - 20 Αποτελέσματα από 567 για την αναζήτηση '"РАЗНОВИДНОСТИ"', χρόνος αναζήτησης: 0,91δλ Περιορισμός αποτελεσμάτων
  1. 1
  2. 2
  3. 3
    Academic Journal

    Συγγραφείς: Liudmila G. Babenko, Maria V. Dudorova

    Συνεισφορές: The study is supported by the Russian Science Foundation, project 22-18-00352 'Vocabulary Stock as an Ideographic Map of the World: A Universal Thesaurus of the Russian Language', https://rscf.ru/en/project/22-18-00352, грант Российского научного фонда, проект № 22-18-00352 «Свод лексики как идеографическая карта мира: Универсальный словарь-тезаурус русского языка», https://rscf.ru/project/22-18-00352

    Πηγή: Известия Уральского федерального университета. Серия 2: Гуманитарные науки, Vol 26, Iss 2 (2024)
    Izvestia. Ural Federal University Journal. Series 2. Humanities and Arts; Том 26, № 2; 9–28
    Известия Уральского федерального университета. Серия 2. Гуманитарные науки; Том 26, № 2; 9–28

  4. 4
  5. 5
    Academic Journal
  6. 6
  7. 7
    Academic Journal

    Συνεισφορές: The work was carried out within the framework of the state assignment for the project FGEM-2022-0003 "World resources of vegetable and melon crops of the VIR collection: effective ways to reveal the ecological and genetic patterns of the formation of diversity and the use of breeding potentia., Работа выполнена в рамках государственного задания по проекту FGEM-2022-0003 «Мировые ресурсы овощных и бахчевых культур коллекции ВИР: эффективные пути раскрытия экологогенетических закономерностей формирования разнообразия и использования селекционного потенциала».

    Πηγή: Vegetable crops of Russia; № 2 (2025); 36-44 ; Овощи России; № 2 (2025); 36-44 ; 2618-7132 ; 2072-9146

    Περιγραφή αρχείου: application/pdf

    Relation: https://www.vegetables.su/jour/article/view/2610/1639; Roberts J.L., Moreau R. Functional properties of spinach (Spinacia oleracea L.) phytochemicals and bioactives. Food & Function. 2016;7(8):3337–3353. https://doi.org/10.1039/c6fo00051g; Mukhanova Yu.I., Trebukhina K.A. Expand assortment. Potato and vegetables. 1987;1:23-25. (In Russ.); Pivovarov V.F. Vegetables of Russia. Moscow: Russian seeds. 1994. (In Russ.); Shivrina A.N. Biochemistry of spinach, sorrel, rhubarb. In the book: Biochemistry of vegetable crops. Moscow. 1961. p.304- 324 [ed. by I. Ermakov, V. V. Arasimovich] https://rusneb.ru/catalog/000199_000009_005943653/ (date of access: 14.01.2025); Pokrovsky A.A. Chemical composition of food products. Moscow, 1976. P.76-77. (ed. by M.F. Nesterin, I.M. Skurikhin) https://rusneb.ru/catalog/000200_000018_rc_2234586/ (15.01.2025); Sokolova D.V., Solovieva A.E. Characterization of the biochemical compositionand antioxidant activity of Spinacia oleracea L. and Spinacia turkestanica Iljin.: a comparative study. Vegetable crops of Russia. 2023;(4):23-29. https://doi.org/10.18619/2072-9146-2023-4-23-29; Longnecker M.P., Newcomb P.A., Mittendorf R., Greenberg E.R., Willett W.C. Intake of carrots, spinach, and supplements containing vitamin A in relation to risk of breast cancer. Cancer Epidemiol Biomarkers Prev.1997;6(11): 87–892.; Wang R., Furumoto T., Motoyama K., Okazaki K., Kondo A., Fukui H. Possible Antitumor Promoters in Spinacia oleracea (Spinach) and Comparison of their Contents among Cultivars. Bioscience, Biotechnology, and Biochemistry. 2002;66(2):248–254. https://doi.org/10.1271/bbb.66.248; Kuriyama I., Musumi K., Yonezawa Y., Takemura M., Maeda N., Iijima H., … Mizushina Y. Inhibitory effects of glycolipids fraction from spinach on mammalian DNA polymerase activity and human cancer cell proliferation. The Journal of Nutritional Biochemistry. 2005;16(10):594–601. https://doi.org/10.1016/j.jnutbio.2005.02.007; Maeda N., Matsubara K., Yoshida H., Mizushina Y. Anti-cancer Effect of Spinach Glycoglycerolipids as Angiogenesis Inhibitors Based on the Selective Inhibition of DNA Polymerase Activity. Mini-Reviews in Medicinal Chemistry. 2011;11(1):32–38. https://doi.org/10.2174/138955711793564042; Sidorova Y.S., Petrov N.A., Shipelin V.A., Mazo V.K. Spinach and quinoa - prospective food sources of biologically active substances. Voprosy Pitaniia. 2020;89(2):100-106. https://doi.org/10.24411/0042-8833-2020-10020 (In Russ.); Ryder E.J. Spinach. Leafy Salad Vegetables. 1979. 195–227. https://doi.org/10.1007/978-94-011-9699-4_6; Morelock T.E., Correll J.C. Spinach. In: Vegetables I. Handbook of plant breeding. (ed. by Prohens J., Nuez F.). Springer, New York. 2008. https://doi.org/.1007/978-0-387-30443-4_6; Bergquist S.Å.M., Gertsson U.E., Nordmark L.Y.G., Olsson M.E. Ascorbic Acid, Carotenoids, and Visual Quality of Baby Spinach as Affected by Shade Netting and Postharvest Storage. Journal of Agricultural and Food Chemistry. 2007;55(21):8444–8451. https://doi.org/10.1021/jf070396z; Li L.H., Lee J.C.-Y., Leung H.H., Lam W.C., Fu Z., Lo A.C.Y. Lutein Supplementation for Eye Diseases. Nutrients. 2020;12(6):1721. https://doi.org/10.3390/nu12061721; Murray I.J., Makridaki M., van der Veen R.L.P., Carden D., Parry N.R.A., Berendschot T.T.J.M. Lutein Supplementation over a One-Year Period in Early AMD Might Have a Mild Beneficial Effect on Visual Acuity: The CLEAR Study. Investigative Opthalmology & Visual Science. 2013;54(3):1781. https://doi.org/10.1167/iovs.12-10715; Manayi A., Abdollahi M., Raman T., Nabavi S.F., Habtemariam S., Daglia M., Nabavi S.M. Lutein and cataract: from bench to bedside. Critical Reviews in Biotechnology. 2015;36(5):829–839. https://doi.org/10.3109/07388551.2015.1049510; Food and Agriculture Organization of the United Nations (FAO), FAOSTAT, 2023. https://www.fao.org/faostat/en/#data/QCL (date of access: 14.01.2025); Deleuran L.C. Innovation in vegetable seed production and the role of consumers in the organic and conventional babyleaf chains: The case of Denmark. Renewable Agriculture and Food Systems. 2010;26(02):149–160. https://doi.org/10.1017/s1742170510000530; State Register for Selection Achievements Admitted for Usage. 2024. https://gossortrf.ru/publication/reestry.php (date of access: 14.01.2025). (In Russ.) 21. Rubatzky V.E., Yamaguchi M. Spinach, Table Beets, and Other Vegetable Chenopods. In World Vegetables: Principles, Production, and Nutritive Values. Springer, 1997:457-473. https://doi.org/10.1007/978-1-4615-6015-9_21; Dekandol' A. Place of origin of cultivated plants: Translation from the 2nd fr. ed. with add. according to later sources. Dr. Chr. Gobi, prof. St. Petersburg. university (ed.). St. Petersburg: K. Ricker, 1885:96-98. (in Russian) https://rusneb.ru/catalog/000199_000009_003599056/ (date of access: 14.01.2025); Hu J., Mou B., Vick B.A. Genetic diversity of 38 spinach (Spinacia oleracea L.) germplasm accessions and 10 commercial hybrids assessed by TRAP markers. Genetic Resources and Crop Evolution. 2007;54(8):1667–1674. https://doi.org/10.1007/s10722-006-9175-4; Hallavant C., Ruas M.-P. The first archaeobotanical evidence of Spinacia oleracea L. (spinach) in late 12th–mid 13th century a.d. France. Vegetation History and Archaeobotany. 2013;23(2):153–165. https://doi.org/10.1007/s00334-013-0400-8; An update of the Angiosperm Phylogeny Group classification for the orders and families of flowering plants: APG II. Botanical Journal of the Linnean Society. 2003;141(4):399–436. https://doi.org/10.1046/j.1095-8339.2003.t01-1-00158.x; Girenko M.M. Variability of plant sex in different varieties of spinach. Proceedings on Applied Botany, Genetics and Breeding. 1962;35(1):74-78 (In Russ.); Fujito S., Takahata S., Suzuki R., Hoshino Y., Ohmido N., Onodera Y. Evidence for a common origin of homomorphic and heteromorphic sex chromosomes in distinct Spinacia species. Genes%7CGenomes%7CGenetics. 2015;5:1663–1673. https://doi.org/10.1534/g3.115.018671; Xu C., Jiao C., Sun H., Cai X., Wang X., Ge C., … Wang Q. Draft genome of spinach and transcriptome diversity of 120 Spinacia accessions. Nature Communications. 2017;8:15275. https://doi.org/10.1038/ncomms15275; Simoons F.J. Food in China. A Cultural and Historical Inquiry. CRC Press, Boston. 1990; Girenko M.M. Initial material for breeding of leafy green crops in the northwestern zone of the USSR (spinach, lettuce, dill) [dissertation]. Leningrad; 1965. https://search.rsl.ru/ru/record/01000786532; Shi A., Qin J., Mou B., Correll J., Weng Y., Brenner D., … Ravelombola W. Genetic diversity and population structure analysis of spinach by single-nucleotide polymorphisms identified through genotyping-by-sequencing. PLOS ONE. 2017;12(11):e0188745. https://doi.org/10.1371/journal.pone.0188745; Khattak J.Z.K., Torp A.M., Andersen S.B. A genetic linkage map of Spinacia oleracea and localization of a sex determination locus. Euphytica. 2006;148:311–318. https://doi.org/10.1007/s10681-005-9031-1; Sneep J. The present position of spinach breeding. Euphytica, 1958а;7(1):1–8. https://doi.org/10.1007/bf00037858; Komai F., Masuda K. Plasticity in sex expression of spinach (Spinacia oleracea) regenerated from root tissues. Plant Cell Tissue and Organ Culture. 2004;78:285–287. https://doi.org/10.1023/B:TICU.0000025665.74491.1e; Pandey S.C., Kalloo G. Spinach. Genetic Improvement of Vegetable Crops. 1993;325–336. https://doi.org/10.1016/b978-0-08-040826-2.50027-8; Mikhov A.S., Alipieva M. Practical vegetable growing. Moscow. Kolos. 1980. (In Russ.); Ribera A., Bai Y., Wolters A.-M. A., van Treuren R., Kik C. A review on the genetic resources, domestication and breeding history of spinach (Spinacia oleracea L.). Euphytica. 2020;216(3). https://doi.org/10.1007/s10681-020-02585-y; Vilmorin-Andrieux. Description des Plantes Potage`res. Vilmorin Andrieux & Cie. 1855. Paris, pp. 127-130. https://gallica.bnf.fr/ark:/12148/bpt6k10250876/f5.item; Vilmorin-Andrieux. Les Plantes Potage`res. Vilmorin Andrieux & Cie. 1883. Paris, pp. 202–206. https://gallica.bnf.fr/ark:/12148/bpt6k9641303z/f9.image.texteImage; Gibault G. Histoire des légumes. Paris: Libraire Horticole. 1912. pp 81-88. https://gallica.bnf.fr/ark:/12148/bpt6k6422705t/f5.item; Smith L.B. Breeding mosaic resistant spinach and notes on malnutrition. Bulletin. Virginia Truck Experiment Station. 1920;31:137–160; Cook H.T., Nugent T.J., Paris G.K., Porter R.P. Fusarium wilt of spinach and the development of wilt resistant variety. Va. Truck Exp. Sta. 1947;110:1810–1820.; Sherbakoff C.D. Breeding for resistance to Fusarium and Verticillium wilts. The Botanical Review. 1949;15(6):377–422. https://doi.org/10.1007/bf02861698; Sneep J. The breeding of hybrid varieties and the production of hybrid seed in spinach. Euphytica. 1958;7(2):119–122. https://doi.org/10.1007/bf00035724; Jones R.K. Occurrence of race 3 of Peronospora effusa on spinach in Texas and identification of sources of resistance. Plant Disease. 1982;66(1):1078. https://doi.org/10.1094/PD-66-1078; Thompson A.E. The extent of natural crossing in inbred monoecious spinach lines. Proceedings. American Society for Horticultural Science. 1954;64:405-09.; Thompson A.E. The extent of hybrid vigor in spinach. Proceedings. American Society for Horticultural Science. 1956;67:440-4.; Smith P.G., Zahara M.B. New spinach immune to mildew: hybrid variety developed by plant breeding program intended for use where Viroflay is adapted, produces comparable yield. Hilgardia. 1956;10(7):15–15.; Zink F.W., Smith P.G. A second physiological race of spinach downy mildew. Plant Disease. 1958;42:818.; Smith P.G., Webb R.E., Millett A.M., Luhn C.H. Downy mildew on spinach: a second race of fungus has been found on Califlay variety in the coastal valley area of California. California Agriculture 1961;15(10):5–5. https://californiaagriculture.org/article/113287 (date of access: 14.01.2025); Eenink A.H. Linkage in Spinacia oleracea L. of two racespecific genes for resistance to downy mildew Peronospora farinosa f. sp. Spinaciae Byford. Euphytica 1976;25:713–715. doi.org/10.1007/bf00041610; Jones R.K., Dainello F.J. Occurrence of race 3 of Peronospora effusa on spinach in Texas and identification of sources of resistance. Plant Disease. 1982;66:1078–1079. https://doi.org/10.1094/PD-66-1078; Correll J.C., Morelock T.E., Black M.C., Koike S.T., Brandenberger L.P., Dainello F.J. Economically important diseases of spinach. Plant Disease. 1994;78:653–660.; Feng C., Saito K., Liu B., Manley A., Kammeijer K., Mauzey S. J., … Correll J. C. New Races and Novel Strains of the Spinach Downy Mildew Pathogen Peronospora effusa. Plant Disease. 2018;102(3):613–618. https://doi.org/10.1094/pdis-05-17-0781-re; The International Spinach Database (ISDB), Available online: https://ecpgr.cgn.wur.nl/lvintro/spinach/con_spec.htm (date of access: 14.01.2025); Van Treuren R., Coquin P., Lohwasser U. Genetic resources collections of leafy vegetables (lettuce, spinach, chicory, artichoke, asparagus, lamb’s lettuce, rhubarb and rocket salad): composition and gaps. Genetic Resources and Crop Evolution. 2012;59(6):981–997. https://doi.org/10.1007/s10722-011-9738-x; Van Treuren R., de Groot L., Hisoriev H., Khassanov F., Farzaliyev V., Melyan G., Gabrielyan I., van Soest L., Tulmans C., Courand D., de Visser J., Kimura R., Boshoven J.C., Janda T., Goossens R., Verhoef M., Dijkstra J., Kik C.Acquisition and regeneration of Spinacia turkestanica and S. tetrandra Steven ex M. Bieb. to improve a spinach gene bank collection. Genetic Resources and Crop Evolution. 2019. https://doi.org/10.1007/s10722-019-00792-8; Qian W., Feng C.D., Zhang H.L., Liu W., Xu D.H., Correll J.C., Xu Z.S. First report of race diversity of the spinach downy mildew pathogen, Peronospora effusa, in China. Plant Disease. 2016;100:1248. https://doi.org/10.1094/PDIS-08-15-0847-PDN; Sattler M.C., Carvalho C.R., Clarindo W.R. The polyploidy and its key role in plant breeding. Planta. 2015;243(2):281–296. https://doi.org/10.1007/s00425-015-2450-x; Ito M., Ohmido N., Akiyama Y., Fukui K., Koba T. Characterization of spinach chromosomes by condensation patterns and physical mapping of 5S and 45S rDNAs by FISH. Journal of the American Society for Horticultural Science. 2000;125(1):59-62. https://doi.org/10.21273/JASHS.125.1.59; Bragdo M. Breeding of polyploid spinach. Euphytica. 1962;11:143–148 https://doi.org/10.1007/BF00033786; Roughani A., Miri S.M., Kashi A.K., Khiabani B.N. Increasing the ploidy level in spinach (Spinacia oleracea L.) using mitotic inhibitors. Plant cell biotechnology and molecular biology. 2017;18(3-4):124-130.; Murphy J.B., Morelock T.E. Spinach breeding program yields lines containing high levels of carotenoid antioxidants. In: Richardson M.D., Clark J.R. (eds) Horticultural studies, research series. 2000; 475. University of Arkansas, Fayetteville, pp 36–39.; Howard L.R., Pandjaitan N., Morelock T., Gil M.I. Antioxidant Capacity and Phenolic Content of Spinach As Affected by Genetics and Growing Season. Journal of Agricultural and Food Chemistry. 2002;50(21):5891–5896. https://doi.org/10.1021/jf020507o; EURISCO. European Search Catalogue for Plant Genetic Resources. https://eurisco.ipkgatersleben.de/apex/eurisco_ws/r/eurisco/cropsearchresult1?p17_crop=spinach&p17_ce=N (дата обращения 15.01.2025); Sokolova D.V., Zaretsky A.M. Study of genetic resources of representatives of the amaranth family (Amaranthaceae Juss.) at the Polar Experimental Station of VIR. Abstracts of reports. Series "Northern agriculture. Issue 1". VIR. 2023. https://doi.org/10.30901/978-5-907145-97-9 https://www.vir.nw.ru/wp-content/uploads/2023/09/Severnoezemledelie_Ovoshhnye-kultury_nauchnyj-seminar-v-ramkah100-letiya-severnogo-zemledeliya-posvyashhennyj-90-letiyu-sodnya-rozhdeniya-L.-V.-Sazonovoj_2023.pdf (date of access: 14.01.2025) (In Russ.); Kiselev E.G., Sokolova D.V. Study of the VIR spinach collection for early maturity and sex divergence in ontogenesis at different sowing dates in the conditions of the North-West region of the Russian Federation. Abstracts of the Conference "VIR - 130: Plant Genetic Resources".2024. (In Russ.).; https://www.vegetables.su/jour/article/view/2610

  8. 8
  9. 9
  10. 10
  11. 11
  12. 12
  13. 13
  14. 14
  15. 15
    Academic Journal

    Πηγή: YASHIL IQTISODIYOT VA TARAQQIYOT; Vol. 2 No. 7 (2024): «Yashil iqtisodiyot va taraqqiyot» jurnali ; YASHIL IQTISODIYOT VA TARAQQIYOT; Том 2 № 7 (2024): «Yashil iqtisodiyot va taraqqiyot» журнали ; YASHIL IQTISODIYOT VA TARAQQIYOT; Том 2 № 7 (2024): «Yashil iqtisodiyot va taraqqiyot» jurnali ; 2992-8982 ; 0000-0000 ; 10.55439/GED/vol2_iss7

    Περιγραφή αρχείου: application/pdf

  16. 16
  17. 17
  18. 18
  19. 19
  20. 20