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Salinity modulates lead (Pb) tolerance and phytoremediation potential of quinoa: a multivariate comparison of physiological and biochemical attributes.
Iftikhar, Azka; Abbas, Ghulam; Saqib, Muhammad; Shabbir, Arslan; Amjad, Muhammad; Shahid, Muhammad; Ahmad, Iftikhar; Iqbal, Shahid; Qaisrani, Saeed Ahmad.
Afiliación
  • Iftikhar A; Department of Environmental Sciences, COMSATS University Islamabad, Vehari Campus, Vehari, Pakistan.
  • Abbas G; Department of Environmental Sciences, COMSATS University Islamabad, Vehari Campus, Vehari, Pakistan. g.a92pk@gmail.com.
  • Saqib M; Institute of Soil and Environmental Sciences, University of Agriculture, Faisalabad, Pakistan. drhmsab@yahoo.com.
  • Shabbir A; Department of Environmental Sciences, COMSATS University Islamabad, Vehari Campus, Vehari, Pakistan.
  • Amjad M; Department of Environmental Sciences, COMSATS University Islamabad, Vehari Campus, Vehari, Pakistan.
  • Shahid M; Department of Environmental Sciences, COMSATS University Islamabad, Vehari Campus, Vehari, Pakistan.
  • Ahmad I; Department of Environmental Sciences, COMSATS University Islamabad, Vehari Campus, Vehari, Pakistan.
  • Iqbal S; Department of Agronomy, Muhammad Nawaz Sharif University of Agriculture, Multan, Pakistan.
  • Qaisrani SA; Department of Environmental Sciences, COMSATS University Islamabad, Vehari Campus, Vehari, Pakistan.
Environ Geochem Health ; 44(1): 257-272, 2022 Jan.
Article en En | MEDLINE | ID: mdl-33907913
Salinity and lead (Pb) contamination of soil are important environmental issues. A hydroponics experiment was performed to unravel the effects of salinity on modulation of Pb tolerance and phytoremediation potential of quinoa. Four-week-old plants of quinoa genotype "Puno" were treated with different concentrations of NaCl (0, 150 and 300 mM), Pb (0, 250 and 500 µM) and their combinations. It was noticed that plant biomass, chlorophyll contents and stomatal conductance of quinoa were slightly affected at 150 mM NaCl or 250 µM Pb. However, the higher concentrations of NaCl (300 mM) and Pb (500 µM) caused significant decline in these attributes. The accumulation of Na in quinoa increased under the combined application of salt with highest level of Pb. The uptake of K was not affected at the lower levels of either salinity or Pb, but decreased significantly at their highest levels. The combination of salinity and Pb increased H2O2 contents and caused lipid peroxidation that was mitigated by the activation of antioxidant enzymes (superoxide dismutase, catalase, peroxidase, ascorbate peroxidase). The activities of these enzymes increased by 4-, 3.75-, 5.4- and 2-fold, respectively, in the combined application of 500 µM Pb and 300 mM NaCl with respect to control. A multivariate analysis indicated that Pb tolerance potential of quinoa under combined application of NaCl and Pb was higher at 150 than 300 mM NaCl. The bioconcentration factor and translocation factor for Pb remained less than one either in the absence or presence of salinity. Lead accumulation and tolerance potential indicated that quinoa genotype "Puno" is suitable for phytostabilization of Pb under saline conditions.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Contaminantes del Suelo / Chenopodium quinoa Idioma: En Revista: Environ Geochem Health Asunto de la revista: QUIMICA / SAUDE AMBIENTAL Año: 2022 Tipo del documento: Article País de afiliación: Pakistán

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Contaminantes del Suelo / Chenopodium quinoa Idioma: En Revista: Environ Geochem Health Asunto de la revista: QUIMICA / SAUDE AMBIENTAL Año: 2022 Tipo del documento: Article País de afiliación: Pakistán