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2013 | 35 | 05 |

Tytuł artykułu

Oxidative stress in the root nodules of Phaseolus vulgaris is induced under conditions of phosphorus deficiency

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
One of the most adverse effects of phosphorus (P) deficiency on N2-fixing legumes is the generation of harmful active oxygen species which cause oxidative stress. And although oxidative stress has been widely studied in roots and shoots of various plant species, it has not yet sufficiently been documented in bean nodules so far. In this study, two recombinant inbred lines RIL115 (P-deficiency tolerant) and RIL147 (P-deficiency sensitive) of common bean and Concesa (local variety) were inoculated separately with the reference strain R. tropici CIAT899, RhM11 (R. gallicum) or RhM14 (R. tropici); two local strains of the Marrakesh region of Morocco. Nodulated plants were grown under semi-hydroponic conditions with sufficient or deficient P supply and analyzed for their oxidative responses at the flowering stage. The results indicated that P-deficiency decreased the growth of shoots (48 %) and nodules (32 %), particularly with RhM14 exhibiting the highest decrease (52 %) of nodulation. This constraint increased electrolyte leakage of nodules (40 %) as compared to leaves (20 %), especially for plants inoculated with RhM14 and CIAT899. Moreover, high H2O2 and malondialdehyde contents were noticed in P-deficient nodules of RhM14 and RhM11. These variations were associated with peroxidase activity stimulation in P-deficient nodules induced by CIAT899 and RhM14. In symbiosis with RIL115, these last strains exhibited the highest nodule phenol content. Overall, phenol content was mainly enhanced in P-deficient nodules (35 %) as compared to the leaves (16 %). It was concluded that the genotypes inoculated with CIAT899 and RhM11 are relatively P-deficiency tolerant combinations as compared to those inoculated with RhM14. Increase of oxidative stress in nodules rather than in leaves points to the need for further investigations of mechanisms that improve the root-nodule efficiency under adverse conditions.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

35

Numer

05

Opis fizyczny

p.1633-1644,fig.,ref.

Twórcy

autor
  • Faculte´ des Sciences et Techniques Gue´liz, Equipe de Biotechnologie Ve´ge´tale et Agrophysiologie des Symbioses, BP 549, 40000 Marrakech, Morocco
  • INRA, UMR Eco&Sols-Ecologie Fonctionnelle & Bioge´ochimie Des Sols & Agroe´cosyste`mes, 2 Place Viala, 34060 Montpellier, France
autor
  • Faculte´ des Sciences et Techniques Gue´liz, Equipe de Biotechnologie Ve´ge´tale et Agrophysiologie des Symbioses, BP 549, 40000 Marrakech, Morocco
autor
  • Faculte´ des Sciences et Techniques Gue´liz, Equipe de Biotechnologie Ve´ge´tale et Agrophysiologie des Symbioses, BP 549, 40000 Marrakech, Morocco
autor
  • INRA, UMR Eco&Sols-Ecologie Fonctionnelle & Bioge´ochimie Des Sols & Agroe´cosyste`mes, 2 Place Viala, 34060 Montpellier, France
autor
  • Faculte´ des Sciences et Techniques Gue´liz, Equipe de Biotechnologie Ve´ge´tale et Agrophysiologie des Symbioses, BP 549, 40000 Marrakech, Morocco

Bibliografia

  • Aroca R, Irigoyen JJ, Sanchez-Diaz M (2003) Drought enhances maize chilling tolerance. II. Photosynthetic traits and protective mechanisms against oxidative stress. Plant Physiol 117:540–549
  • Asada K (1999) The water–water cycle in chloroplasts: scavenging of active oxygen and dissipation of excess photons. Annu Rev Plant Physiol 50:601–639
  • Bargaz A, Ghoulam C, Faghire M, Aslan Attar H, Drevon JJ (2011a) The nodule conductance to the O2 diffusion increases with high phosphorus content in the Phaseolus vulgaris-rhizobia symbiosis. Symbiosis 53:157–164
  • Bargaz A, Drevon JJ, Oufdou K, Mandri B, Faghire M, Ghoulam C (2011b) Nodule phosphorus requirement and O2 uptake in common bean genotypes under phosphorus deficiency. Acta Agric Scan Section B-Soil Plant Sci 61:602–611
  • Bargaz A, Ghoulam C, Amenc L, Lazali M, Faghire M, Drevon J-J (2012) Phosphoenol pyruvate phosphatase is induced in the root nodule cortex of Phaseolus vulgaris under phosphorus deficiency. J Exp Bot 63:4723–4730
  • Blokhina O, Virolainen E, Fagerstedt KV (2003) Antioxidants, oxidative damage and oxygen deprivation stress. Ann Bot 91:179–194
  • 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
  • Clement M, Lambert A, Herouart D, Boncompagni E (2008) Identification of new up-regulated genes under drought stress in soybean nodules. Gene 426:15–22
  • Dechassa D, Khairy S, Ernst C (2010) Protein and polyphenol profile changes in soybean roots under aluminum stress. Int J Plant Physiol Biochem 3:38–45
  • Demiral T, Turkan I (2005) Comparative lipid peroxidation, antioxidant systems and proline content in roots of two rice cultivars differing in salt tolerance. Environ Exp Bot 53:247–257
  • Diani Z, Ouarraki EL, Aissam S, Hsissou D, El Modafar C (2009) Induction of early oxidative events in soft wheat leaves inoculated with Septoria tritici and their relationship to resistance of Moroccan cultivars. Int J Agri Biol 11:351–359
  • Drevon J-J, Alkama N, Araujo A, Beebe B, Attar Aslan, Benoit J, Lopez A, Martinez-Romero E, Rodino P, Tajini F, Zaman-Allah M (2011) Nodular diagnosis for ecological engineering of the symbiotic nitrogen fixation with legumes. Proc Environ Sci 9:40–46
  • El Modafar C, Cle´rivet A, Macheix JJ (1996) Flavan accumulation in stems Platanus x acerifolia seedlings inoculated with Ceratocystis fimbriata f.sp platani, the canker stain disease agent. Can J Bot 74:1982–1997
  • Elsheikh EAE, Wood M (1995) Nodulation and N2 fixation in soybean inoculated with salt-tolerant rhizobia or salt-sensitive bradyrhizobia in saline soil. Soil Biol Biochem 27:657–661
  • Faghire M, Bargaz A, Farissi M, Mandri B, Palma F, Lluch C, Tejera Garcıa NA, Herrera-Cervera JA, Ghoulam C (2011) Effect of salinity on nodulation, nitrogen fixation and growth of common bean (Phaseolus vulgaris) inoculated with rhizobia strains isolated from Haouz region of Morocco. Symbiosis 55:69–75
  • Faghire M, Mandri B, Oufdou K, Bargaz A, Ghoulam C, Ramırez-Bahena M, Velázquez E, Peix A (2012) Identification at species and biovar levels of strains nodulating P. vulgaris in saline soils of Marrakesh region (Morocco) and analysis of otsA gene putatively involved in osmotolerance. Syst Appl Microbiol 35:156–164
  • Foyer CH, Noctor G (2005) Oxidant and antioxidant signalling in plants: a re-evaluation of the concept of oxidative stress in a physiological context. Plant Cell Environ 28:1056–1071
  • Ghoulam C, Foursy A, Fares K (2002) Effect of salt stress on growth, inorganic ions and proline accumulation in relation to osmotic adjustment in sugar beet (Beta vulgaris L.). Environ Exp Bot 47:39–50
  • Heath RL, Packer L (1968) Photoperoxidation in isolated chloroplast I. Kinetics and stoichiometry of fatty acid peroxidation. Arch Biochem Biophys 125:189–198 in Abdul Jaleel C, Sankar B, Murali PV, Gomathinayagam M, Lakshmanan GMA, Panneerselvam R (2008) Water deficit stress effects on reactive oxygen metabolism in Catharanthus roseus; impacts on ajmalicine accumulation. Colloids Surfaces B: Biointerfaces 62:105–111
  • Hori K, Wada A, Shibuta T (1997) Changes in phenoloxidase activities of the galls on leaves of Ulmus vidana formed by Tetraneura funiformis. Appl Entomol Zool 32:365–371
  • Iturbe-Ormaetxe I, Matamoros M, Rubio M, Dalton D, Becana M (2001) The antioxidants of legume nodule mitochondria. Mol Plant Microbe Interact 10:1189–1196
  • Juszczuk I, Malusa` E, Rychter AM (2001) Oxidative stress during phosphate deficiency in roots of bean plants (Phaseolus vulgaris L.). J Plant Physiol 158:1299–1305
  • Krouma A, Ben Hamed K, Abdelly C (2008) Symbiotic response of common bean (Phaseolus vulgaris L.) to iron deficiency. Acta Physiol Plant 30:27–34
  • Lavid N, Schwartz A, Lewinsohn E (2001) Phenols and phenol oxidases are involved in cadmium accumulation in the water plants Nymphoides peltata (Menyanthaceae) and Nymphaeae (Nymphaeaceae). Planta 214:189–195
  • Lynch JP, Clair SB (2004) Mineral stress: the missing link in understanding how global climate change will affect plants in real world soils. Field Cr Res 90:101–115
  • Mandhania S, Madan S, Sawhney V (2006) Antioxidant defense mechanism under salt stress in wheat seedlings. Biol Plant 50:227–231
  • Mandri B, Drevon JJ, Oufdou K, Plassard P, Payre H, Bargaz A, Ghoulam C (2012) Interactions between common bean (Phaseolus vulgaris) genotypes and rhizobia strains isolated from Moroccan soils for growth, phosphatase and phytase activities under phosphorus deficiency conditions. Plant Nutr 35:1477–1490
  • Marino D, Frendo P, Ladrera R, Zabalza A, Puppo A, Arrese-Igor C, González EM (2007) Nitrogen fixation control under drought stress: localised or systemic? Plant Physiol 143:1968–1974
  • Michalak A (2006) Phenolic compounds and their antioxidant activity in plants growing under heavy metal stress. Polish J Environ Stud 4:523–530
  • Mittler R (2002) Oxidative stress, antioxidants and stress tolerance. Trends Plant Sci 7:405–410
  • Moran JF, Klucas RV, Grayer RJ, Abian J, Becana M (1997) Complexes of iron with phenolic compounds from soybean nodules and other legume tissues: prooxidant and antioxidant properties. Free Radic Biol Med 22:861–870
  • Murphy J, Riley JP (1962) A modified single solution method for the determination of phosphate in natural waters. Acta Anal Chim 27:31–36
  • Noctor G, Foyer CH (1998) Ascorbate and glutathione: keeping active oxygen species under control. Annu Rev Plant Physiol Plant Mol Biol 49:249–279
  • Rotaru V, Sinclair TR (2009) Interactive influence of phosphorus and iron on, nitrogen fixation by soybean. Environ Exp Bot 66:94–99
  • Schulze J, Drevon JJ (2005) P-deficiency increases the O2 uptake per N2 reduced in alfalfa. J Exp Bot 56:1779–1784
  • Shanker AK, Djanaguiraman M, Sudhagar R, Chandrashekar CN, Pathmanabhan G (2004) Differential antioxidative response of ascorbate glutathione pathway enzymes and metabolites to chromium speciation stress in green gram (Vigna radiata (L.) R.Wilczek. cv CO 4) roots. Plant Sci 166:1035–1043
  • Takahama U, Oniki T (2000) Flavonoid and some other phenolics as substrates of peroxidase: physiological significance of the redox reactions. J Plant Res 113:301–309
  • Tejera NA, Campos R, Sanjuan J, Lluch C (2004) Nitrogenase and antioxidant enzyme activities in Phaseolus vulgaris nodules formed by Rhizobium tropici isogenic strains with varying tolerance to salt stress. J Plant Physiol 161:329–338
  • Turkan I, Bor M, Ozdemir F, Koca H (2005) Differential responses of lipid peroxidation and antioxidants in the leaves of droughttolerant P. acutifolius Gray and drought-sensitive P. vulgaris L. subjected to polyethylene glycol mediated water stress. Plant Sci 168:223–231
  • Vadez V, Drevon JJ (2001) Genotypic variability in phosphorus use efficiency for symbiotic N2 fixation in common bean (Phaseolus vulgaris). Agronomie 21:691–699
  • Vance CP (2001) Symbiotic nitrogen fixation and phosphorus acquisition. Plant nutrition in a world of declining renewable resources. Plant Physiol 127:390–397
  • Velikova V, Yordanov I, Edreva A (2000) Oxidative stress and some antioxidant system in acid treated bean plants: protective role of exogenous polyamines. Plant Sci 151:59–66
  • Wang HH, Feng T, Peng XX, Yan ML, Zhou PL, Tang XK (2009) Ameliorative effects of brassinosteroid on excess manganeseinduced oxidative stress in Zea mays L. Leaves. Agric Sci China 8:1063–1074

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