In-site and Ex-site Date Palm Exposure to Heavy Metals Involved Infra-Individual Biomarkers Upregulation

As a tree of considerable importance in arid regions-date palm, L. survival in contaminated areas of Sfax city has drawn our attention. Leaf samples of the plants grown in the study area showed high levels of cadmium (Cd), copper (Cu), and chromium (Cr). On the basis of this finding, the cellular me...

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Published inPlants (Basel) Vol. 10; no. 1; p. 137
Main Authors Chaâbene, Zayneb, Rorat, Agnieszka, Kriaa, Walid, Rekik, Imen, Mejdoub, Hafedh, Vandenbulcke, Franck, Elleuch, Amine
Format Journal Article
LanguageEnglish
Published Switzerland MDPI AG 12.01.2021
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Abstract As a tree of considerable importance in arid regions-date palm, L. survival in contaminated areas of Sfax city has drawn our attention. Leaf samples of the plants grown in the study area showed high levels of cadmium (Cd), copper (Cu), and chromium (Cr). On the basis of this finding, the cellular mechanisms that explain these metal accumulations were investigated in controlled conditions. After four months of exposure to Cd, Cr, or Cu, high bioconcentration and translocation factor (TF>1) have been shown for date palm plantlets exposed to Cd and low TF values were obtained for plantlets treated with Cr and Cu. Moreover, accumulation of oxidants and antioxidant enzyme activities occurred in exposed roots to Cu and Cd. Secondary metabolites, such as polyphenols and flavonoids, were enhanced in plants exposed at low metal concentrations and declined thereafter. Accumulation of flavonoids in cells may be correlated with the expression of the gene encoding Pdmate5, responsible for the transport of secondary metabolites, especially flavonoids. Other transporter genes responded positively to metal incorporation, especially but also and . The latter would be a new candidate gene sensitive to metallic stress in plants. Expressions of gene coding metal chelators were also investigated. and exhibited a strong induction in plants exposed to Cr. These modifications of the expression of some biochemical and molecular based-markers in date palm helped to better understand the ability of the plant to tolerate metals. They could be useful in assessing heavy metal contaminations in polluted soils and may improve accumulation capacity of other plants.
AbstractList As a tree of considerable importance in arid regions—date palm, Phoenix dactylifera L. survival in contaminated areas of Sfax city has drawn our attention. Leaf samples of the plants grown in the study area showed high levels of cadmium (Cd), copper (Cu), and chromium (Cr). On the basis of this finding, the cellular mechanisms that explain these metal accumulations were investigated in controlled conditions. After four months of exposure to Cd, Cr, or Cu, high bioconcentration and translocation factor (TF > 1) have been shown for date palm plantlets exposed to Cd and low TF values were obtained for plantlets treated with Cr and Cu. Moreover, accumulation of oxidants and antioxidant enzyme activities occurred in exposed roots to Cu and Cd. Secondary metabolites, such as polyphenols and flavonoids, were enhanced in plants exposed at low metal concentrations and declined thereafter. Accumulation of flavonoids in cells may be correlated with the expression of the gene encoding Pdmate5, responsible for the transport of secondary metabolites, especially flavonoids. Other transporter genes responded positively to metal incorporation, especially Pdhma2, but also Pdabcc and Pdnramp6 . The latter would be a new candidate gene sensitive to metallic stress in plants. Expressions of gene coding metal chelators were also investigated. Pdpcs1 and Pdmt3 exhibited a strong induction in plants exposed to Cr. These modifications of the expression of some biochemical and molecular based-markers in date palm helped to better understand the ability of the plant to tolerate metals. They could be useful in assessing heavy metal contaminations in polluted soils and may improve accumulation capacity of other plants.
As a tree of considerable importance in arid regions-date palm, L. survival in contaminated areas of Sfax city has drawn our attention. Leaf samples of the plants grown in the study area showed high levels of cadmium (Cd), copper (Cu), and chromium (Cr). On the basis of this finding, the cellular mechanisms that explain these metal accumulations were investigated in controlled conditions. After four months of exposure to Cd, Cr, or Cu, high bioconcentration and translocation factor (TF>1) have been shown for date palm plantlets exposed to Cd and low TF values were obtained for plantlets treated with Cr and Cu. Moreover, accumulation of oxidants and antioxidant enzyme activities occurred in exposed roots to Cu and Cd. Secondary metabolites, such as polyphenols and flavonoids, were enhanced in plants exposed at low metal concentrations and declined thereafter. Accumulation of flavonoids in cells may be correlated with the expression of the gene encoding Pdmate5, responsible for the transport of secondary metabolites, especially flavonoids. Other transporter genes responded positively to metal incorporation, especially but also and . The latter would be a new candidate gene sensitive to metallic stress in plants. Expressions of gene coding metal chelators were also investigated. and exhibited a strong induction in plants exposed to Cr. These modifications of the expression of some biochemical and molecular based-markers in date palm helped to better understand the ability of the plant to tolerate metals. They could be useful in assessing heavy metal contaminations in polluted soils and may improve accumulation capacity of other plants.
As a tree of considerable importance in arid regions—date palm, Phoenix dactylifera L. survival in contaminated areas of Sfax city has drawn our attention. Leaf samples of the plants grown in the study area showed high levels of cadmium (Cd), copper (Cu), and chromium (Cr). On the basis of this finding, the cellular mechanisms that explain these metal accumulations were investigated in controlled conditions. After four months of exposure to Cd, Cr, or Cu, high bioconcentration and translocation factor (TF > 1) have been shown for date palm plantlets exposed to Cd and low TF values were obtained for plantlets treated with Cr and Cu. Moreover, accumulation of oxidants and antioxidant enzyme activities occurred in exposed roots to Cu and Cd. Secondary metabolites, such as polyphenols and flavonoids, were enhanced in plants exposed at low metal concentrations and declined thereafter. Accumulation of flavonoids in cells may be correlated with the expression of the gene encoding Pdmate5, responsible for the transport of secondary metabolites, especially flavonoids. Other transporter genes responded positively to metal incorporation, especially Pdhma2, but also Pdabcc and Pdnramp6. The latter would be a new candidate gene sensitive to metallic stress in plants. Expressions of gene coding metal chelators were also investigated. Pdpcs1 and Pdmt3 exhibited a strong induction in plants exposed to Cr. These modifications of the expression of some biochemical and molecular based-markers in date palm helped to better understand the ability of the plant to tolerate metals. They could be useful in assessing heavy metal contaminations in polluted soils and may improve accumulation capacity of other plants.
Author Kriaa, Walid
Chaâbene, Zayneb
Elleuch, Amine
Vandenbulcke, Franck
Mejdoub, Hafedh
Rekik, Imen
Rorat, Agnieszka
AuthorAffiliation 1 Laboratory of Plant Biotechnology, Faculty of Sciences of Sfax, University of Sfax, Sfax 3000, Tunisia; hafedh.mejdoub@fss.rnu.tn (H.M.); amineelleuch@hotmail.com (A.E.)
3 Environmental Science Center, Qatar University, Doha P.O. Box 2713, Qatar; maswkri@yahoo.fr
4 High Institute of Applied Biology of Medenine, Medenine 4119, Tunisia; imenbmc@yahoo.fr
2 Laboratoire de Génie Civil et géo-Environnement–Université de Lille 1, F-59655 Villeneuve d’Ascq, France; agnieszkarorat@gmail.com (A.R.); franck.Vandenbulcke@univ-lille.fr (F.V.)
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– name: 4 High Institute of Applied Biology of Medenine, Medenine 4119, Tunisia; imenbmc@yahoo.fr
– name: 1 Laboratory of Plant Biotechnology, Faculty of Sciences of Sfax, University of Sfax, Sfax 3000, Tunisia; hafedh.mejdoub@fss.rnu.tn (H.M.); amineelleuch@hotmail.com (A.E.)
– name: 3 Environmental Science Center, Qatar University, Doha P.O. Box 2713, Qatar; maswkri@yahoo.fr
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Issue 1
Keywords atmospheric contamination
metallic stress
metal accumulation
integrative biomarkers
gene expression
Language English
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SSID ssj0000800816
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Snippet As a tree of considerable importance in arid regions-date palm, L. survival in contaminated areas of Sfax city has drawn our attention. Leaf samples of the...
As a tree of considerable importance in arid regions—date palm, Phoenix dactylifera L. survival in contaminated areas of Sfax city has drawn our attention....
As a tree of considerable importance in arid regions—date palm, Phoenix dactylifera L. survival in contaminated areas of Sfax city has drawn our attention....
SourceID doaj
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SourceType Open Website
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StartPage 137
SubjectTerms Accumulation
Antioxidants
Arid regions
Arid zones
atmospheric contamination
Bioaccumulation
Biological magnification
Biomarkers
Cadmium
Chelating agents
Chromium
Controlled conditions
Copper
Enzymatic activity
Enzymes
Exposure
Flavonoids
Gene expression
Heavy metals
Homeostasis
integrative biomarkers
Metabolites
metal accumulation
Metal concentrations
metallic stress
Metals
Nitrogen
Oxidants
Oxidative stress
Oxidizing agents
Phoenix dactylifera
Phytotoxicity
Plantlets
Polyphenols
Proteins
Secondary metabolites
Signal transduction
Soil contamination
Soil improvement
Soil pollution
Translocation
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Title In-site and Ex-site Date Palm Exposure to Heavy Metals Involved Infra-Individual Biomarkers Upregulation
URI https://www.ncbi.nlm.nih.gov/pubmed/33445405
https://www.proquest.com/docview/2478367330
https://search.proquest.com/docview/2478590431
https://pubmed.ncbi.nlm.nih.gov/PMC7826821
https://doaj.org/article/4a7063b687804976b5d9a1da20492e1a
Volume 10
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