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Original Article

Evidence of a new Hg-tolerant ecotype of Rumex induratus from Almadén (Ciudad Real, Spain)

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REFERENCES

  • Arnetoli M, Vooijs R, ten Bookum W, Galardi F, Gonnelli C, Gabbrielli R, et al. 2008. Arsenate tolerance in Silene paradoxa does not rely on phytochelatin-dependent sequestration. Environ Pollut 152: 585–591.
  • Broadhurst CL, Chaney RL, Angle JS, Maugel TK, Erbe EF, Murphy CA. 2004. Simultaneous hyperaccumulation of nickel, manganese, and calcium in Alyssum leaf trichomes. Environ Sci Technol 38: 5797–5802.
  • Calgaroto NS, Cargnelutti D, Rossato LV, Farias JG, Nunes ST, Tabaldi LA, et al. 2011. Zinc alleviates mercury-induced oxidative stress in Pfaffia glomerata (Spreng.) Pedersen. Biometals 24: 959–971.
  • Carrasco-Gil S, Álvarez-Fernández A, Sobrino-Plata J, Millán R, Carpena-Ruiz RO, Leduc DL, et al. 2011. Complexation of Hg with phytochelatins is important for plant Hg tolerance. Plant Cell Environ 34: 778–791.
  • Cho UH, Park JO. 2000. Mercury-induced oxidative stress in tomato seedlings. Plant Sci 156: 1–9.
  • Hartley-Whitaker J, Ainsworth G, Meharg AA. 2001. Copper- and arsenate-induced oxidative stress in Holcus lanatus L. clones with differential sensitivity. Plant Cell Environ 24: 713–722.
  • Heath RL, Packer L. 1968. Photoperoxidation in isolated chloroplasts. I. Kinetics and stoichiometry of fatty acids acid peroxidation. Arch Biochem Biophys 125: 189–198.
  • Jocelyn PC. 1987. Biochemistry of the –SH group. London: Academic press.
  • Krupp EM, Milne BF, Mestrot A, Meharg AA, Feldmann J. 2008. Investigation into mercury bound to biothiols: Structural identification using ESI-ion-trap MS and introduction of a method for their HPLC separation with simultaneous detection by ICP-MS and ESI-MS. Anal Bioanal Chem 390: 1753–1764.
  • Lombi E, Tearall KL, Howarth JR, Zhao F-J, Hawkesford MJ, McGrath SP. 2002. Influence of iron status on cadmium and zinc uptake by different ecotypes of the hyperaccumulator Thlaspi caerulescens. Plant Physiol 128: 1359–1367.
  • Lozano-Rodríguez E, Luguera M, Lucena JJ, Carpena-Ruiz RO. 1995. Evaluation of two differents acid digestion methods in closed systems of trace elements determination in plants. Quim Anal 14: 27–30.
  • Marmiroli M, Gonnelli C, Maestri E, Gabbrielli R, Marmiroli N. 2004. Localisation of nickel and mineral nutrients Ca, K, Fe, Mg by Scanning Electron Microscopy microanalysis in tissues of the nickel-hyperaccumulator Alyssum bertolonii Desv. and the non-accumulator Alyssum montanum L. Plant Biosyst 138: 231–243.
  • Mengoni A, Selvi F, Cusimano N, Galardi F, Gonelli C. 2006. Genetic diversity inferred from AFLP fingerprinting in populations of Onosma eichioides (Boraginaceae) from serpentine and calcareous soils. Plant Biosyst 140: 211–216.
  • Millán R, Gamarra R, Schmid T, Sierra MJ, Quejido AJ, Sánchez DM, et al. 2006. Mercury content in vegetation and soils of the Almadén mining area (Spain). Sci Total Environ 368: 79–87.
  • Millán R, Schmid T, Sierra MJ, Carrasco-Gil S, Villadóniga M, Rico C, et al. 2011. Spatial variation of biological and pedological properties in an area affected by a metallurgical mercury plant: Almadenejos (Spain). Appl Geochem 26: 174–181.
  • Moreno-Jiménez E, Gamarra R, Carpena-Ruiz RO, Millán R, Peñalosa JM, Esteban E. 2006. Mercury bioaccumulation and phytotoxicity in two wild plant species of Almadén area. Chemosphere 63: 1969–1973.
  • Moreno-Jiménez E, Peñalosa JM, Esteban E, Carpena RO. 2007. Mercury accumulation and resistance to mercury stress in Rumex induratus and Marrubium vulgare grown in perlite. J Plant Nutr Soil Sci 170: 485–494.
  • Moreno-Jiménez E, Esteban E, Carpena-Ruiz RO, Peñalosa JM. 2009. Arsenic- and mercury-induced phytotoxicity in the Mediterranean shrubs Pistacia lentiscus and Tamarix gallica grown in hydroponic culture. Ecotoxicol Environ Saf 72: 1781–1789.
  • Moreno-Jiménez E, Esteban E, Peñalosa JM. 2012. The fate of arsenic in soil - plant systems. Rev Environ Contam Toxicol 215: 1–37.
  • Murphy A, Taiz L. 1995. Comparison of metallothionein gene expression and nonprotein thiols in ten Arabidopsis ecotypes. Correlation with copper tolerance. Plant Physiol 109: 945–954.
  • Ortega-Villasante C, Rellán-Álvarez R, del Campo FF, Carpena-Ruiz RO, Hernández LE. 2005. Cellular damage induced by cadmium and mercury in Medicago sativa. J Exp Bot 56: 2239–2251.
  • Patra M, Bhowmik N, Bandopadhyay B, Sharma A. 2004. Comparison of mercury, lead and arsenic with respect to genotoxic effects on plant systems and the development of genetic tolerance. Environ Exp Bot 52: 199–223.
  • Patra M, Sharma A. 2000. Mercury toxicity in plants. Bot Rev 66: 379–422.
  • Rellán-Álvarez R, Ortega-Villasante C, Álvarez-Fernández A, Del Campo FF, Hernández LE. 2006. Stress responses of Zea mays to cadmium and mercury. Plant Soil 279: 41–50.
  • Shiyab S, Chen J, Han FX, Monts DL, Matta FB, Gu M, et al. 2009. Phytotoxicity of mercury in Indian mustard (Brassica juncea L.). Ecotoxicol Environ Saf 72: 619–625.
  • Sobrino-Plata J, Ortega-Villasante C, Flores-Cáceres ML, Escobar C, del Campo FF, Hernández LE. 2009. Differential alterations of antioxidant defenses as bioindicators of mercury and cadmium toxicity in alfalfa. Chemosphere 77: 946–954.
  • Veiga MM, Meech JA, Onate N. 1994. Mercury pollution from deforestation. Nature 368: 816–817.
  • Verkleij J, Van Hoof N, Chardonnens A, Koevoets P, Hakvoort H, ten Bookum W, et al. 2001. Mechanisms of heavy metal resistance in Silene vulgaris. Dev Plant Soil Sci (Plant Nutr) 92: 446–447.
  • Verbruggen N, Hermans C, Schat H. 2009. Molecular mechanisms of metal hyperaccumulation in plants. New Phytol 181: 759–776.
  • Wang Y, Greger M. 2004. Clonal differences in mercury tolerance, accumulation, and distribution in willow. J Environ Qual 33: 1779–1785.
  • Yu YJ, Hu HT, Wang CC, Yang L. 2011. QTL analysis of mercury tolerance and accumulation at the seedling stage in rice (Oryza sativa L.). J Food Agri Environ 9: 748–752.

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