Alterations in root lipid peroxidation and antioxidative responses in two rice cultivars under NaCl-salinity stress

Springer Science and Business Media LLC - Tập 30 Số 1 - Trang 81-89 - 2007
Mohammad Hussain Khan1, Sanjib Kumar Panda1
1Plant Biochemistry Laboratory, School of Life Sciences, Assam University, Silchar, India

Tóm tắt

Từ khóa


Tài liệu tham khảo

Acar O, Turkan I, Ozdemir F (2001) Superoxide dismutase and peroxidase activites in drought sensitive and resistant barley (Hordeum vulgare L.) cultivars. Acta Physiol Plant 23:351–356

Al-Karaki GN (2000) Growth, water use efficiency, and sodium and potassium acquisition by tomato cultivars grown under salt stress. J Plant Nutr 23:1–8

Alscher RG, Erturk N, Heath LS (2002) Role of superoxide dismutases (SODs) in controlling oxidative stress in plants. J Exp Bot 53:1331–1341

Bor M, Ozdemir F, Turkan I (2003) The effect of salt stress on lipid peroxidation and antioxidants in leaves of sugar beet Beta vulgaris L. and wild beet Beta maritima L. Plant Sci 164:77–84

Chance B, Maehly AC (1955) Assay of catalase and peroxidase. Methods Enzymol 2:764–775

Demiral T, Turkan I (2005) Comparative lipid peroxidation, antioxidant defense systems and proline content in roots of two rice cultivars differing in salt tolerance. Env Exp Bot 53:247–257

Dionisio-Sese ML, Tobita S (1998) Antioxidant responses of rice seedlings to salinity stress. Plant Sci 135:1–9

Fadzilla NM, Finch RP, Burdon RH (1997) Salinity, oxidative stress and antioxidant responses in shoot cultures of rice. J Exp Bot 48:325–331

Flowers TJ (2004) Improving crop salt tolerance. J Exp Bot 55:307–319

Giannopolitis CN, Ries SK (1977) Superoxide dismutase. I. Occurrence in higher plants. Plant Physiol 59:309–314

Gomez JM, Hernendez JA, Jimenez A, del Rio LA, Sevilla F (1999) Differential response of antioxidative enzymes of chloroplasts and mitochondria to long term NaCl stress of pea plants. Free Rad Res 31:S11–S18

Grant JJ, Loake GJ (2000) Role of reactive oxygen intermediate and cognate redox signaling in disease resistance. Plant Physiol 124:21–29

Griffith OW (1980) Determination of glutathione and glutathione disulfide using glutathione reductase and 2-vinylpyridine. Anal Biochem 106:207–221

Gueta-Dahan Y, Yaniv Z, Zilinskas BA, Ben-Hayyim G (1997) Salt and oxidative stress: similar and specific responses and their relation to salt tolerance in citrus. Planta 203:460–469

Hasegawa PM, Bressan RA, Zhu JK, Bohnert HJ (2000) Plant cellular and molecular responses to high salinity. Annu Rev Plant Physiol Plant Mol Biol 51:463–499

Heath RL, Packer L (1968) Photoperoxidation in isolated chloroplasts. I. Kinetic and stoichiometry of fatty acid peroxidation. Arch Biochem Biophys 125:189–198

Hernandez JA, Jimenez J, Mullineaux P, Sevilla F (2000) Tolerance of pea (Pisum sativum L.) to long term stress is associated with induction of antioxidant defences. Plant Cell Environ 23:853–862

Humpries EC (1956) Modern methods of plant analysis. In: Peach K, Tracey NV (eds), vol I. Springer, Berlin, p 468

Irihimovitch V, Shapira M (2000) Glutathione redox potential modulated by reactive oxygen species regulates translation of Rubisco large subunit in the chloroplast. J Biol Chem 275:16289–16295

Jain M, Mathur G, Koul S, Sarin NB (2001) Ameliorative effects of proline on salt stress-induced lipid peroxidation in cell lines of groundnut (Arachis hypogea L.). Plant Cell Rep 20:463–468

Jose A, Hernandez A, Maria S, Almansa B (2002) Short term effects of salt stress on antioxidant systems and leaf water relations of pea leaves. Physiol Plant 115:251–257

Khan MH, Panda SK (2002) Induction of oxidative stress in roots of Oryza sativa L. in response to salt stress. Biol Plant 45:625–627

Khan MH, Singha Ksh LB, Panda SK (2002) Changes in antioxidant levels in Oryza sativa L. roots subjected to NaCl-salinity stress. Acta Physiol Plant 24:145–148

Lin CC, Kao CH (2001) Cell wall peroxidase activity, hydrogen peroxide level and NaCl-inhibited root growth of rice seedlings. Plant Soil 230:135–143

Loginni B, Scartazza A, Brugnoli E, Navarri-Izzo F (1999) Antioxidant defence system, pigment composition and photosynthetic efficiency in two wheat cultivars subjected to drought. Plant Physiol 119:1091–1099

Mandhania S, Madan S, Sawhney V (2006) Antioxidant defense mechanism under salt stress in wheat seedlings. Biol Plant 227:227–231

May MJ, Vernoux T, Leaver C, Van Montagu M, Inze D (1998) Glutathione homeostasis in plants: implications for environmental sensing and plant development. J Exp Bot 49:649–667

Meloni DA, Oliva MA, Martinez CA, Cambraia J (2003) Photosynthesis and activity of superoxide dismutase, peroxidase and glutathione reductase in cotton under salt stress. Env Exp Bot 49:69–76

Mittova V, Volokita M, Guy M, Tal M (2000) Activities of SOD and the ascorbate–glutathione cycle enzymes in subcellular compartments in leaves and roots of the cultivated tomato and its wild salt-tolerant relative Lycopersicon pennilli. Physiol Plant 110:42–51

Molina A, Bueno P, Marin MC, Rodriguez-Rosales MP, Belver A, Venema K, Donaire JP (2002) Involvement of endogenous salicylic acid content, lipoxygenase and antioxidant enzyme activities in the response of tomato cell suspension culture to NaCl. New Phytol 156:409–415

Oidaira H, Sano S, Koshiba T, Ushimaru T (2000) Enhancement of oxidative enzyme activities in chilled rice seedlings. J Plant Physiol 156:811–913

Oser BL (1979) Hawks physiological chemistry. McGraw Hill, NewYork, pp 702–705

Panda SK, Khan MH (2003) Salt stress influences lipid peroxidation and antioxidants in the leaf of an indica rice (Oryza sativa L). Physiol Mol Biol Plants 9:273–278

Panda SK, Upadhyay RK (2003) Salt stress injury induces oxidative alteration and antioxidative defense in the roots of Lemna minor. Biol Plant 48:249–253

Racagni H, Pedranzani H, Alemano S, Taleisnik E, Abdala G, Machado-Domenech E (2003/2004) Effect of short-term salinity on lipid metabolism and ion accumulation in tomato roots. Biol Plant 47:373–377

Sagisaka S (1976) The occurrence of peroxide in a perennial plant Populas gelrica. Plant Physiol 57:308–309

Sairam RK, Rao KV, Sri vastava GC (2002) Differential response of wheat genotypes to long-term salinity stress in relation to oxidative stress, antioxidant activity and osmolytes concentration. Plant Sci 163:1037–1046

Shalata A, Mittova V, Volokita M, Guy M, Tal M (2001) Response of the cultivated tomato and its wild salt-tolerant relative Lycopersicon pennilli to salt-dependent oxidative stress: the root antioxidant system. Physiol Plant 112:487–494

Shigeoka S, Ishikawa T, Tamoi M, Miyagawa Y, Takeda T, Yabuta Y, Yoshimura K (2002) Regulation and function of ascorbate peroxidase isoenzymes. J Exp Bot 53:1305–1319

Smith IK, Vierheller TL, Thorne CA (1988) Assay of glutathione reductase in crude tissue homogenates using 5, 5′-dithiobis (2-nitrobenzoic acid). Anal Biochem 175:408–413

Sreenivasulu N, Grimm B, Wobus U, Weschke W (2000) Differential response of antioxidant compounds to salinity stress in salt-tolerant and salt-sensitive seedlings of foxtail millet (Setaria italica). Physiol Plant 109:435–442

Torrecillas A, Guillaume C, Alarcon JJ, Ruiz-Sanchez MC (1995) Water relations of two tomato species under water stress and recovery. Plant Sci 105:169–176

Tsai Y, Hongb C, Liua L, Kao CH (2004) Relative importance of Na+ and Cl− in NaCl-induced antioxidant systems in roots of rice seedlings. Physiol Plant 122:86–94

Vaidyanathan H, Sivakumar P, Chakrabarty R, Thomas G (2003) Scavenging of reactive oxygen species in NaCl-stressed rice (Oryza sativa L.)— differential response in salt-tolerant and sensitive varieties. Plant Sci 165:1411–1418

Wheatherley PE, Barrs C (1962) A reexamination of the relative turgidity technique for estimating water deficits in leaves. Aust J Boil Sci 15:413–428

Wilson JR, Ludlow MM, Fisher MJ, Schulze EE (1989) Adaptations to water stress of the leaf water relations of four tropical forage species. Aust J Plant Physiol 7:207–220