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  4. Copper, lead and zinc interactions during phytoextraction using Acer platanoides L. - a pot trial
 
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Copper, lead and zinc interactions during phytoextraction using Acer platanoides L. - a pot trial

Type
Journal article
Language
English
Date issued
2023
Author
Mleczek, Mirosław 
Budka, Anna 
Gąsecka, Monika 
Budzyńska, Sylwia 
Drzewiecka, Kinga 
Magdziak, Zuzanna 
Rutkowski, Paweł 
Goliński, Piotr 
Niedzielski, Przemysław
Faculty
Wydział Leśny i Technologii Drewna
Wydział Rolnictwa, Ogrodnictwa i Biotechnologii
Journal
Environmental Science and Pollution Research
ISSN
0944-1344
DOI
10.1007/s11356-022-23966-x
Web address
https://link.springer.com/article/10.1007/s11356-022-23966-x#Bib1
Volume
30
Number
10
Pages from-to
27191–27207
Abstract (EN)
Of the many environmental factors that modulate the phytoextraction of elements, little has been learnt about the role of metal interactions. The study aimed to show how different concentrations of Cu, Pb and Zn in the cultivation medium influenced the biomass, plant development and phytoextraction abilities of Acer platanoides L. seedlings. Additionally, the impact on the content and distribution of Ca, K, Mg and Na in plant parts was studied with an analysis of phenols. Plants treated with a mixture of two metals were characterised by lower biomass of leaves and higher major elements content jointly than those grown in the salt of one element. Leaves of A. platanoides cultivated in Pb5 + Zn1, Pb1 + Zn1 and Pb1 + Zn5 experimental systems were characterised by specific browning of their edges. The obtained results suggest higher toxicity to leaves of Pb and Zn present simultaneously in Knop solution than Cu and Pb or Cu and Zn, irrespective of the mutual ratio of the concentrations of these elements. Antagonism of Cu and Zn concerning Pb was clearly shown in whole plant biomass when one of these elements was in higher concentration (5 mmol L−1) in solution. In the lowest concentrations (1 mmol L−1), there was a synergism between Cu and Zn in plant roots. Plants exposed to Zn5, Cu1 + Pb5, Pb5 + Zn1 and Cu1 + Zn1 were characterised by higher total phenolic content than the rest plants. Both the presence and the concentration of other elements in the soil are significant factors that modulate element uptake, total phenolic content, and plant development.
Keywords (EN)
  • antagonism

  • metals

  • plant phenolics

  • synergism

  • trace elements

  • trees

License
cc-bycc-by CC-BY - Attribution
Open access date
November 15, 2022
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