Cold hardening prevents H 2O 2-induced programmed cell death in maize coleoptiles

Автор: Korsukova A.V., Grabelnych O.I., Pobezhimova T.P., Koroleva N.A., Fedoseeva I.V., Pavlovskaya N.S., Lyubushkina I.V., Borovik O.A., Fedyaeva A.V., Voznenko S.A., Ilyushneva E.M., Voinikov V.K.

Журнал: Журнал стресс-физиологии и биохимии @jspb

Статья в выпуске: 1 т.9, 2013 года.

Бесплатный доступ

An influence of cold hardening (8 °С, 7 days) on the respiration intensity, the content of reactive oxygen species and DNA fragmentation in coleoptiles of maize etiolated seedlings of different ages and a possibility of the cold hardening to prevent execution of the cell death, induced by treatment with 10 mM H 2O 2 (for 4 hours) of seedlings have been studied. It has been shown that H 2O 2 induces total DNA fragmentation in coleoptiles of maize etiolated seedlings, and a preliminary cold hardening prevents this process.

Reactive oxygen species, dna fragmentation, programmed cell death, coleoptile, zea mays l

Короткий адрес: https://sciup.org/14323714

IDR: 14323714

Список литературы Cold hardening prevents H 2O 2-induced programmed cell death in maize coleoptiles

  • Бакеева, Л.Е., Замятнина, В.А., Шорнинг, Б.Ю., Александрушкина, Н.И., Ванюшин, Б.Ф. (2001) Действие антиоксиданта ионола (ВНТ) на рост и развитие этиолированных проростков пшеницы: контроль за апоптозом, делением клеток, ультраструктурой органелл и дифференцировкой пластид. Биохимия, 66, 1048-1059.
  • Ванюшин, Б.Ф. (2001) Апоптоз у растений. Успехи биологической химии, 41, 3-38.
  • Замятнина, В.А., Бакеева, Л.Е., Александрушкина, Н.И., Ванюшин, Б.Ф. (2002) Апоптоз в первом листе у этиолированных проростков пшеницы: влияние антиоксиданта ионола (ВНТ) и перекисей. Биохимия, 67, 253-264.
  • Иванов, В.Б. (1974) Клеточные основы роста растений. М.: Наука, 223 с.
  • Кирнос, М.Д., Александрушкина, Н.И., Шорнинг, Б.Ю., Кудряшова, И.Б., Ванюшин, Б.Ф. (1999) Межнуклеосомная фрагментация и синтез ДНКвпроростках пшеницы. Физиол. растений, 46, 48-57.
  • Медведев, С.С. (2012) Физиология растений: учебник. СПб.: БХВ-Петербург, 512 с.
  • Рудашевская, Е.Л., Яковлев, А.Ю., Яковлева, О.В., Шишова, М.Ф. (2009) Изменение активности H+-АТФазы плазмалеммы клеток колеоптилей проростков кукурузы разного возраста. Цитология, 51, 149-154.
  • Самуилов, В.Д., Киселевский, Д.Б., Синицын, С.В., Шестак, А.А., Лагунова, Е.М., Несов, А.В. (2006) Н2О2 усиливает СN-индуцированный апоптоз в листьях гороха. Биохимия, 71, 481-492.
  • Трунова, Т.И. (2007) Растение и низкотемпературный стресс. М.: Наука, 54 с.
  • Amor, Y., Chevion, M. and Levine, A. (2000) Anoxia pretreatment protects soybean cells against H2O2-induced cell death: possible involvement of peroxidase and of alternative oxidase. FEBS Lett., 477, 175-180.
  • Balk, J. and Leaver, C.J. (2001) The PET1-CMS mitochondrial mutation in sunflower is associated with premature programmed cell death and cytochrome c release. The Plant Cell, 13, 1803-1818.
  • Gao, C., Zhang, L., Wen, F. and Xing, D. (2008) Sorting out the role of reactive oxygen species during plant programmed cell death induced by ultraviolet C overexposure. Plant Signaling & Behavior., 3, 197-198.
  • Grabelnych, O.I. (2005) The energetic functions of plant mitochondria under stress. Journal of Stress Physiology & Biochemistry, 1, 37-54.
  • Houot, V., Etienne, P., Petitot, A.S., Barbier, S., Blein, J.P. and Suty, L. (2001) Hydrogen peroxide induces programmed cell death features in cultured tobacco BY-2 cells, in a dose-dependent manner. J. Exp. Bot., 52, 1721-1730.
  • Jabs, T. (1998) Reactive oxygen intermediates as mediators of PCD in plants and animals. Biochem. Pharmacol., 57, 231-245.
  • Laemmli, U.K. (1970) Cleavage of structural proteins during the assemble of the head bacteriophage T4. Nature, 227, 680-685.
  • Lowry, O.H., Rosebrough, N.J., Farr, A.L. and Randall, R.J. (1951) Protein measurement with the Folin phenol reagent. J. Biol. Chem., 193, 265-275.
  • Maxwell, D.P., Wang, Y. and McIntosh, L. (1999) The alternative oxidase lowers mitochondrial reactive oxygen production in plant cells. Proc. Natl. Acad. Sci. USA, 96, 8271-8276.
  • Rikhvanov, E.G., Gamburg, K.Z., Varakina, N.N., Rusaleva, T.M., Fedoseeva, I.V., Tauson, E.L., Stupnikova, I.V., Stepanov, A.V., Borovskii, G.B. and Voinikov, V.K. (2007) Nuclear-mitochondrial cross-talk during heat shock in Arabidopsis cell culture. Plant J., 52, 763-768.
  • Tiwari, B.S., Belenghi, B. and Levine, A. (2002) Oxidative stress increased respiration and generation of reactive oxygen species, resulting in ATP depletion, opening of mitochondrial permeability transition, and programmed cell death. Plant Physiol., 128, 1271-1281.
  • Vacca, R.A., de Pinto, M.C., Valenti, D., Passarella, S., Marra, L. and de Gara, L. (2004) Production of reactive oxygen species, alteration of cytosolic ascorbate peroxidase, and impairment of mitochondrial metabolism are early events in heat shock-induced programmed cell death in tobacco Bright-Yellow 2 cells. Plant Physiol., 134, 1100-1112.
  • Vanyushin, B.F., Bakeeva, L.E., Zamyatnina, V.A. and Aleksandrushkina, N.I. (2004) Apoptosis in plants: specific features of plant apoptotic cells and effect of various factors and agents. Int. Rev. Cytol., 233, 135-179.
  • Wu, M.Z., Huang, J.J., Xu, S., Ling, T.F., Xie, Y.J. and Shen, W.B. (2011) Haem oxygenase delays programmed cell death in wheat aleurone layers by modulation of hydrogen peroxide metabolism. J. Exp. Bot., 62, 235-248.
Еще
Статья научная