Literature DB >> 31100630

Differences of Acer platanoides L. and Tilia cordata Mill. Response patterns/survival strategies during cultivation in extremely polluted mining sludge - A pot trial.

Kinga Drzewiecka1, Aneta Piechalak2, Piotr Goliński1, Monika Gąsecka1, Zuzanna Magdziak1, Małgorzata Szostek3, Sylwia Budzyńska1, Przemysław Niedzielski4, Mirosław Mleczek5.   

Abstract

The study aimed to evaluate the physiological mechanisms underlying differences in metals and metalloid uptake and tolerance of two tree species cultivated in mining waste material. Two-year old Acer platanoides L. and Tilia cordata Mill. were cultivated in mining sludge characterized by high pH, salinity and an extremely high concentration of As. Both species were able to develop leaves from leafless seedlings, however, their total biomass was greatly reduced in comparison to control plants, following the severe disturbances in chlorophyll content. Phytoextraction abilities were observed for T. cordata for Ba, Nb, Rb and Se, and phytostabilisation was stated for Pd, Ru, Sc and Sm for both species, Ba and Nd for A. platonoides and Be for T. cordata only. Metal exclusion was observed for the majority of detected elements indicating an intense limitation of metal transport to photosynthetic tissue. A diversified uptake of elements was accompanied by a species-specific pattern of physiological reaction during the cultivation in sludge. Organic ligands (glutatnione and low-molecular-weight organic acids) were suppressed in A. platanoides, and enhanced biosynthesis of phenolic compounds was observed for both species, being more pronounced in T. cordata. Despite its higher accumulation of key metabolites for plant reaction to oxidative stress, such as phenolic acids, flavonoids and organic ligands, T. cordata exhibited relatively lower tolerance to sludge, probably due to the increased uptake and translocation rate of toxic metal/loids to aerial organs and/or restricted accumulation of salicylic acid which is known to play a decisive role in mechanisms of plant tolerance.
Copyright © 2019 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Mining sludge; Physiological response; Phytostabilization; Revegetation; Tree species

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Year:  2019        PMID: 31100630     DOI: 10.1016/j.chemosphere.2019.05.051

Source DB:  PubMed          Journal:  Chemosphere        ISSN: 0045-6535            Impact factor:   7.086


  1 in total

1.  The Effects of Nature-Inspired Synthesis on Silver Nanoparticle Generation.

Authors:  Zuzana Šimonová; Veronika Krbečková; Zuzana Vilamová; Edmund Dobročka; Bořivoj Klejdus; Miroslav Cieslar; Ladislav Svoboda; Jiří Bednář; Richard Dvorský; Jana Seidlerová
Journal:  ACS Omega       Date:  2022-02-03
  1 in total

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