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  4. Early Response of the Populus nigra L. × P. maximowiczii Hybrid to Soil Enrichment with Metals
 
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Early Response of the Populus nigra L. × P. maximowiczii Hybrid to Soil Enrichment with Metals

Type
Journal article
Language
English
Date issued
2024
Author
Gąsecka, Monika 
Drzewiecka, Kinga 
Magdziak, Zuzanna 
Krzesiński, Włodzimierz 
Proch, Jędrzej
Niedzielski, Przemysław
Faculty
Wydział Leśny i Technologii Drewna
Wydział Rolnictwa, Ogrodnictwa i Biotechnologii
Journal
International Journal of Molecular Sciences
ISSN
1661-6596
DOI
10.3390/ijms252312520
Web address
https://www.mdpi.com/1422-0067/25/23/12520
Volume
25
Number
23
Pages from-to
art. 12520
Abstract (EN)
This study aimed to investigate the response of Populus nigra L. × Populus maximowiczii to the addition of selected metals in soil. Rooted cuttings were planted in pots containing soil enriched with equimolar concentrations of Pb, Zn, Al, Ni, and Cu (500 mL of 4 mM solutions of single metal salts: (Pb(NO3)2; Zn(NO3)2 × 6H2O; Al(NO3)3 × 9H2O; Ni(NO3)2 × 6H2O; or Cu(NO3)2 × 3H2O). Growth parameters, metal accumulation, and physiological and biochemical parameters were assessed after four weeks of cultivation, simulating early response conditions. The results showed diverse metal accumulation in poplar organs, along with an increase in biomass and minor changes in gas exchange parameters or chlorophyll fluorescence. Among low-molecular weight organic acids, citric and succinic acids were dominant in the rhizosphere, and roots with malonic acid were also present in the shoots. Only p-coumaric acid was found in the phenolic profile of the roots. The shoots contained both phenolic acids and flavonoids, and their profile was diversely modified byparticular metals. Sucrose and fructose content increased in shoots that underwent metal treatments, with glucose increasing only in Cu and Al treatments. Principal component analysis (PCA) revealed variations induced by metal treatments across all parameters. Responses to Pb and Znwerepartially similar, while Cu, Ni, or Al triggered distinct reactions. The results indicate the adaptation of P. nigra L. × P. maximowiczii to soil containing elevated levels of metals, along with potential for soil remediation and metal removal. However, further studies are needed to evaluate the effect of differences in early responses to particular metals on plant conditions from a long-term perspective.
Keywords (EN)
  • low-molecular-weight organic aci...

  • phenolic compounds

  • metal accumulation

  • physiological parameters

  • phytoremediation

  • poplar

License
cc-bycc-by CC-BY - Attribution
Open access date
November 21, 2024
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