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Influencing Factors of Bidens pilosa L. Hyperaccumulating Cadmium Explored by the Real-Time Uptake of Cd(2+) Influx around Root Apexes under Different Exogenous Nutrient Ion Levels

Though Bidens pilosa L. has been confirmed to be a potential Cd hyperaccumulator, the accumulation mechanism is not yet clear. The dynamic and real-time uptake of Cd(2+) influx by B. pilosa root apexes was determined using non-invasive micro-test technology (NMT), which partly explored the influenci...

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Autores principales: Wang, Siqi, Dai, Huiping, Ji, Dandan, Cui, Shuang, Jiang, Chengzhi, Skuza, Lidia, Li, Lianzhen, Grzebelus, Dariusz, Wei, Shuhe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10054121/
https://www.ncbi.nlm.nih.gov/pubmed/36976992
http://dx.doi.org/10.3390/toxics11030227
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author Wang, Siqi
Dai, Huiping
Ji, Dandan
Cui, Shuang
Jiang, Chengzhi
Skuza, Lidia
Li, Lianzhen
Grzebelus, Dariusz
Wei, Shuhe
author_facet Wang, Siqi
Dai, Huiping
Ji, Dandan
Cui, Shuang
Jiang, Chengzhi
Skuza, Lidia
Li, Lianzhen
Grzebelus, Dariusz
Wei, Shuhe
author_sort Wang, Siqi
collection PubMed
description Though Bidens pilosa L. has been confirmed to be a potential Cd hyperaccumulator, the accumulation mechanism is not yet clear. The dynamic and real-time uptake of Cd(2+) influx by B. pilosa root apexes was determined using non-invasive micro-test technology (NMT), which partly explored the influencing factors of the Cd hyperaccumulation mechanism under the conditions of different exogenous nutrient ions. The results indicated that Cd(2+) influxes at 300 μm around the root tips decreased under Cd treatments with 16 mM Ca(2+), 8 mM Mg(2+), 0.5 mM Fe(2+), 8 mM SO(4)(2−) or 18 mM K(+) compared to single Cd treatments. The Cd treatments with a high concentration of nutrient ions showed an antagonistic effect on Cd(2+) uptake. However, Cd treatments with 1 mM Ca(2+), 0.5 mM Mg(2+), 0.5 mM SO(4)(2−) or 2 mM K(+) had no effect on the Cd(2+) influxes as compared with single Cd treatments. It is worth noting that the Cd treatment with 0.05 mM Fe(2+) markedly increased Cd(2+) influxes. The addition of 0.05 mM Fe(2+) exhibited a synergistic effect on Cd uptake, which could be low concentration Fe(2+) rarely involved in blocking Cd(2+) influx and often forming an oxide membrane on the root surface to help the Cd uptake by B. pilosa. The results also showed that Cd treatments with high concentration of nutrient ions significantly increased the concentrations of chlorophyll and carotenoid in leaves and the root vigor of B. pilosa relative to single Cd treatments. Our research provides novel perspectives with respect to Cd uptake dynamic characteristics by B. pilosa roots under different exogenous nutrient ion levels, and shows that the addition of 0.05 mM Fe(2+) could promote the phytoremediation efficiency for B. pilosa.
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spelling pubmed-100541212023-03-30 Influencing Factors of Bidens pilosa L. Hyperaccumulating Cadmium Explored by the Real-Time Uptake of Cd(2+) Influx around Root Apexes under Different Exogenous Nutrient Ion Levels Wang, Siqi Dai, Huiping Ji, Dandan Cui, Shuang Jiang, Chengzhi Skuza, Lidia Li, Lianzhen Grzebelus, Dariusz Wei, Shuhe Toxics Article Though Bidens pilosa L. has been confirmed to be a potential Cd hyperaccumulator, the accumulation mechanism is not yet clear. The dynamic and real-time uptake of Cd(2+) influx by B. pilosa root apexes was determined using non-invasive micro-test technology (NMT), which partly explored the influencing factors of the Cd hyperaccumulation mechanism under the conditions of different exogenous nutrient ions. The results indicated that Cd(2+) influxes at 300 μm around the root tips decreased under Cd treatments with 16 mM Ca(2+), 8 mM Mg(2+), 0.5 mM Fe(2+), 8 mM SO(4)(2−) or 18 mM K(+) compared to single Cd treatments. The Cd treatments with a high concentration of nutrient ions showed an antagonistic effect on Cd(2+) uptake. However, Cd treatments with 1 mM Ca(2+), 0.5 mM Mg(2+), 0.5 mM SO(4)(2−) or 2 mM K(+) had no effect on the Cd(2+) influxes as compared with single Cd treatments. It is worth noting that the Cd treatment with 0.05 mM Fe(2+) markedly increased Cd(2+) influxes. The addition of 0.05 mM Fe(2+) exhibited a synergistic effect on Cd uptake, which could be low concentration Fe(2+) rarely involved in blocking Cd(2+) influx and often forming an oxide membrane on the root surface to help the Cd uptake by B. pilosa. The results also showed that Cd treatments with high concentration of nutrient ions significantly increased the concentrations of chlorophyll and carotenoid in leaves and the root vigor of B. pilosa relative to single Cd treatments. Our research provides novel perspectives with respect to Cd uptake dynamic characteristics by B. pilosa roots under different exogenous nutrient ion levels, and shows that the addition of 0.05 mM Fe(2+) could promote the phytoremediation efficiency for B. pilosa. MDPI 2023-02-27 /pmc/articles/PMC10054121/ /pubmed/36976992 http://dx.doi.org/10.3390/toxics11030227 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Siqi
Dai, Huiping
Ji, Dandan
Cui, Shuang
Jiang, Chengzhi
Skuza, Lidia
Li, Lianzhen
Grzebelus, Dariusz
Wei, Shuhe
Influencing Factors of Bidens pilosa L. Hyperaccumulating Cadmium Explored by the Real-Time Uptake of Cd(2+) Influx around Root Apexes under Different Exogenous Nutrient Ion Levels
title Influencing Factors of Bidens pilosa L. Hyperaccumulating Cadmium Explored by the Real-Time Uptake of Cd(2+) Influx around Root Apexes under Different Exogenous Nutrient Ion Levels
title_full Influencing Factors of Bidens pilosa L. Hyperaccumulating Cadmium Explored by the Real-Time Uptake of Cd(2+) Influx around Root Apexes under Different Exogenous Nutrient Ion Levels
title_fullStr Influencing Factors of Bidens pilosa L. Hyperaccumulating Cadmium Explored by the Real-Time Uptake of Cd(2+) Influx around Root Apexes under Different Exogenous Nutrient Ion Levels
title_full_unstemmed Influencing Factors of Bidens pilosa L. Hyperaccumulating Cadmium Explored by the Real-Time Uptake of Cd(2+) Influx around Root Apexes under Different Exogenous Nutrient Ion Levels
title_short Influencing Factors of Bidens pilosa L. Hyperaccumulating Cadmium Explored by the Real-Time Uptake of Cd(2+) Influx around Root Apexes under Different Exogenous Nutrient Ion Levels
title_sort influencing factors of bidens pilosa l. hyperaccumulating cadmium explored by the real-time uptake of cd(2+) influx around root apexes under different exogenous nutrient ion levels
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10054121/
https://www.ncbi.nlm.nih.gov/pubmed/36976992
http://dx.doi.org/10.3390/toxics11030227
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