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Responsiveness of Cells Linum Usitatissimum Cultivated in vitro to the Action of the Herbicide (for Example, Glyphosate)

Natural and Scientific Research-Biology

Authors

  • Nikolaeva Tatyana Nikolayevna A researcher of the K.A. Timiryazev Institute of Physiology of Plants of RAS. E-mail: biophenol@gmail.com
  • Goncharuk Evgenia Aleksandrovna PhD (Biological Sciences), scientific employee of the K.A. Timiryazev Institute of Physiology of Plants of RAS. E-mail: biophenol@gmail.com
  • Gorchakova Yulia Alexandrovna A second-year Master’s student under the program “Innovations in Biological and Environmental Education” of the Institute of Mathematics, Computer Science and Natural Sciences of Moscow City University. E-mail: nlv.mgpu@mail.ru
  • Shegigina Ekaterina Sergeevna A fifth-year student under the program “Biology, Foreign Language” of the Institute of Mathematics, Informatics and Natural Sciences of Moscow City University. E-mail: nlv.mgpu@mail.ru

How to link insert

Nikolaeva, T. N., Goncharuk, E. A., Gorchakova, Y. A. & Shegigina, E. S. (2017). Responsiveness of Cells Linum Usitatissimum Cultivated in vitro to the Action of the Herbicide (for Example, Glyphosate) Bulletin of the Moscow City Pedagogical University. Series "Pedagogy and Psychology", 2017, №4 (28),
References
1. 1. Butenko R.G. Biologiya kletok vy'sshix rastenij in vitro i biotexnologiya na ix osnove. M.: FBK-Press, 1999. 152 s.
2. 2. Voly'neczA. Fenol'ny'e soedineniya v zhiznedeyatel'nosti rastenij. Minsk: Bela­rus. navuka, 2014. 283 s.
3. 3. Vy'sochina G.I. Bioximicheskie podxody' k poznaniyu bioraznoobraziya rasti-tel'nogo mira // Sibirskij e'kologicheskij zhurnal. 1999. T. 3. S. 207-211.
4. 4. Goncharuk E.A., Kalashnikova E.A., Sheveluxa V.S. Vozdejstvie kadmiya na mor-fofiziologicheskie reakcii razlichny'x genotipov l'na-dolguncza v usloviyax in vitro i in vivo // Izvestiya TSXA. 2000. T. 2. S. 108-118.
5. 5. Goncharuk E.A., Zagoskina N.V. Tyazhely'e metally': postuplenie, toksichnosf i zashhitny'e mexanizmy' rastenij (na primere ionov kadmiya) // Visnik Xarkivs'kogo nacional'nogo agrarnogo universitetu. Seriya: Biologiya. 2017. № 1. S. 35-49.
6. 6. ZhantasovM.K., Zhantasova D.M., Kocherov E.N. Sovremennoe sostoyanie i perspek-tivy' proizvodstva glifosata // Modern high technologies. 2014. № 12. S. 156-159.
7. 7. Zhivetin V.V., Ginzburg L.N. Len i ego kompleksnoe ispol'zovanie. M.: Inform-Znanie, 2002. 400 s.
8. 8. Zagoskina N.V., Nikolaeva T.N., Lapshin P.V., Zavarzin A.A., Zavarzina A.G. Vodorastvorimy'e fenol'ny'e soedineniya u lishajnikov // Mikrobiologiya. 2013. T. 82.
9. № 4. S. 434-434.
10. 9. Zagoskina N.V., Nazarenko L.V. Aktivny'e formy' kisloroda i antioksidantnaya sistema rastenij // Vestnik MGPU. 2016. № 2 (22). S. 9-23.
11. 10. Zaprometov M.N. Fenol'ny'e soedineniya i metody' ix issledovaniya // Bioximi-cheskie metody' v fiziologii rastenij / red. O.A. Pavlinova. M.: Nauka, 1971. S. 185-197.
12. 11. ZaprometovM.N. Fenol'ny'e soedineniya. M.: Nauka, 1993. 271 s.
13. 12. Kolupaev Yu.E., Karpecz Yu.V. Formirovanie adaptivny'x reakcij rastenij na dejstvie abioticheskix stressorov. Kiev: Osnova, 2010. 352 s.
14. 13. Kuzneczova E.M., Chmil' V.D. Glifosat: povedenie v okruzhayushhej srede i urovni ostatkov // Sovremenny'e problemy' toksikologii. 2010. № 1. S. 87-95.
15. 14. Kurkin V.A., Vel'myajkina E.I. Razrabotka metodik analiza siropa e'xinacei purpurnoj // Farmaciya. 2011. № 7. S. 10-12.
16. 15. Lemesh V.A., Bogdanova M.V., Kubrak S.V., Nikitinskaya T.V., Titok V.V., Xoty'levaL.V. Molekulyarno-geneticheskij analiz polimorfizma podvidov l'na kul'turnogo dlya identiikacii genotipov s redkimi DNK-lokusami // Geneticheskie osnovy' selekcii rastenij. T. 4: Biotexnologiya v selekcii rastenij. Genomika i geneticheskaya inzheneriya. Minsk: Belarus. navuka, 2014. S. 206-242.
17. 16. Lukatkin A.S., Golovanova V.S. Intensivnost' perekisnogo okisleniya lipidov v oxlazhdenny'x list'yax teplolyubivy'x rastenij // Fiziologiya rastenij. 1988. T. 35. № 4.
18. S. 773-780.
19. 17. Men'shhikova E.B., Lankin V.Z., Zenkov N.K., Bondar'I.A., Krugovy'x N.F., Tru-fakin V.A. Okislitel'ny'j stress. Prooksidanty' i antioksidanty'. M.: Firma «Slovo», 2006.
20. 553 s.
21. 18. Olenichenko N.A., Zagoskina N.V. Otvetnaya reakciya ozimoj psheniczy' na dejst-vie nizkix temperatur: obrazovanie fenol'ny'x soedinenij i aktivnost' L-fenilalanin-ammiak-liazy' // Prikladnaya bioximiya i mikrobiologiya. 2005. T. 41. № 6. S. 681-685.
22. 19. OrdinaN.A. Struktura lubovoloknisty'x rastenij i ee izmenenie v processe pererabot-ki. M.: Legkaya industriya, 1978. S. 70-74.
23. 20. Pradedova E.V., Nimaeva O.D., Krivenko D.A. Subkletochny'e mexanizmy' detoksikacii gerbicidov u kul'turny'x rastenij. Sistema glutationa vakuolej i plastid i ee vozmozhny'j vklad v processy' detoksikacii u kletok korneplodov stolovoj svek-ly' // Aktual'ny'e problemy' nauki Pribajkal'ya. 2015. Vy'p. 1. 189 s.
24. 21. SizovI.A. Len. M.-L.: Sel'xozgiz, 1955. 256 s.
25. 22. Staroverov V.V., Stepanova A.Yu., Tereshonok D.V., Litvinova I.I. Kletochnaya selekciya v kul'ture in vitro l'na mnogoletnego (Linum perenne L.) na ustojchi-vost' k okislitel'nomu stressu // Plodovodstvo i yagodovodstvo Rossii. 2011. T. 26.
26. S. 230-236.
27. 23. Taraxovskij Yu.S., Kim Yu.A., Abdrasilov B.S., Muzafarov E.N. Flavonoidy': bioximiya, bioizika, medicina. M.: Synchrobook Pushhino, 2013. 308 s.
28. 24. Teslov L.S. Sravnitel'noe izuchenie lavonoidnogo sostava vidov roda Campanula L. ryada Rapunculoides Charadze iz sekcii Campanula // Rastitel'ny'e resursy'. 2000. T. 36. Vy'p. 1. S. 3-17.
29. 25. Trush M.M. Lyon-dolgunecz. M.: Kolos, 1976. S. 20-23.
30. 26. Chesnokova N.P., Ponukalina E.V., Bizenkova M.N. Molekulyarno-kletochny'e mexanizmy' inaktivacii svobodny'x radikalov v biologicheskix sistemax // Uspexi sovre-mennogo estestvoznaniya. 2006. № 7. S. 29-36.
31. 27. Apers S., Vlietinck A., Pieters L. Lignans and neolignans as lead compounds //
32. Phytochemistry Reviews. 2003. P. 201-217.
33. 28. Diederichsen Axel, Alvin Ulrich. Variability in stem iber content and its associa­tion with other characteristics in 1177 lax (Linum usitatissimum L.) genebank accessions // Industrial Crops and Products. 2009. P. 33-39.
34. 29. Gage T.B., Wendei S.H. Quantitative determination of certain lavonol3glyco-
35. sides // Anal. Chem. 1950. V. 22. P. 708-711.
36. 30. Karg S. New research on the cultural history of the useful plant Linum usitatis-simum L. (lax), a resource for food and textiles for 8,000 years // Veget. Hist. Archaeobot.
37. 2011. V. 20. P. 507-508.
38. 31. Lattanzio V., Kroon P.A., Quideau S., Treutter D. Plant phenolics — secondary me­tabolites with diverse functions // Recent Advances in Polyphenols Research. V. 1. Oxford: Wiley-Blackwell, 2008. P. 1-35.
39. 32. Millam S., Obert B., Pretova A. Plant cell and biotechnology studies in Linum usitatissimum // Plant Cell, Tissue and Organ Culture. 2005. V. 82. P. 93-103.
40. 33. Newairy Al-Sayeda A., HebaM. Abdou. Protective role of flax lignans against lead acetate induced oxidative damage and hyperlipidemia in rats // Food and Chemical Toxi­cology. 2009. P. 813-818.
41. 34. Verma P., Mathur A.K., MasoodN., Luqman S., Shanker K. Tryptophan over-pro­ducing cell suspensions of Catharanthus roseus (L) G. Don and their up-scaling in stirred tank bioreactor: detection of a phenolic compound with antioxidant potential // Protoplas-ma. 2013. V. 50. P. 371-380.
42. 35. Wyrill III J.B., Burnside O.C. Absorption, translocation, and metabolism of 2, 4-D and glyphosate in common milkweed and hemp dogbane // Weed science. 1976.
43. P. 557-566.
44. 36. Zuk Magdalena, et al. Engineering lax plants to increase their antioxidant capa­city and improve oil composition and stability // Journal of agricultural and food chemistry.
45. 2012. P. 5003-5012.
46.
47.
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