Water relations in plants subjected to heavy metal stresses

Concentrations of heavy metals in soil seldom reach a level sufficient to cause osmotic disturbances in plants. It is likely that water entry to the roots is indirectly governed by other factors which are themselves affected by metals. Decreased elongation of the primary root, impaired secondary gro...

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Published inActa physiologiae plantarum Vol. 38; no. 11; pp. 1 - 13
Main Author Rucińska-Sobkowiak, Renata
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer Berlin Heidelberg 01.11.2016
Springer Nature B.V
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Abstract Concentrations of heavy metals in soil seldom reach a level sufficient to cause osmotic disturbances in plants. It is likely that water entry to the roots is indirectly governed by other factors which are themselves affected by metals. Decreased elongation of the primary root, impaired secondary growth, increased root dieback, or reduced root hair caused by toxic ions all exert a deleterious effect on the root-absorbing area and water uptake. Moreover, metals are able to decelerate short-distance water transfer both in symplast and apoplast, which in turn reduce the movement of water into the vascular system and affect water supply to the shoot. Long-distance transport is limited also due to decreased hydraulic conductivity in the root, stem and leaf midrib caused by a reduction in the size of vessels and tracheids, and partial blockage of xylem elements by cellular debris or gums. Heavy metals influence water delivery to the shoot due to inhibition of transpiration as they decrease the size of the leaves and the thickness of the lamina, reduce intercellular spaces, affect the density of stomata and decrease their aperture. Stomata closure is induced by direct interaction of toxic metals with guard cells and/or as a consequence of the early effects of metal toxicity on roots and stems. In metal-stressed plants, root-derived ABA or ABA-induced signals might play a role in stomatal movement. Disturbances in water relations trigger differential regulation of aquaporin gene expression, which may contribute to further reductions in water loss.
AbstractList Concentrations of heavy metals in soil seldom reach a level sufficient to cause osmotic disturbances in plants. It is likely that water entry to the roots is indirectly governed by other factors which are themselves affected by metals. Decreased elongation of the primary root, impaired secondary growth, increased root dieback, or reduced root hair caused by toxic ions all exert a deleterious effect on the root-absorbing area and water uptake. Moreover, metals are able to decelerate short-distance water transfer both in symplast and apoplast, which in turn reduce the movement of water into the vascular system and affect water supply to the shoot. Long-distance transport is limited also due to decreased hydraulic conductivity in the root, stem and leaf midrib caused by a reduction in the size of vessels and tracheids, and partial blockage of xylem elements by cellular debris or gums. Heavy metals influence water delivery to the shoot due to inhibition of transpiration as they decrease the size of the leaves and the thickness of the lamina, reduce intercellular spaces, affect the density of stomata and decrease their aperture. Stomata closure is induced by direct interaction of toxic metals with guard cells and/or as a consequence of the early effects of metal toxicity on roots and stems. In metal-stressed plants, root-derived ABA or ABA-induced signals might play a role in stomatal movement. Disturbances in water relations trigger differential regulation of aquaporin gene expression, which may contribute to further reductions in water loss.
ArticleNumber 257
Author Rucińska-Sobkowiak, Renata
Author_xml – sequence: 1
  givenname: Renata
  surname: Rucińska-Sobkowiak
  fullname: Rucińska-Sobkowiak, Renata
  email: renatar@amu.edu.pl
  organization: Department of Plant Ecophysiology, Adam Mickiewicz University
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ID FETCH-LOGICAL-c382t-6f1a195600e5a5241a06e27d77ea4d8018ff6b6bc395982981b7d626bdcb2f153
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Thu Sep 12 17:36:12 EDT 2024
Sat Dec 16 12:01:30 EST 2023
IsDoiOpenAccess true
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Issue 11
Keywords Water transport
Dehydration
Abscisic acid (ABA)
Cytokinin
Aquaporin
Language English
LinkModel DirectLink
MergedId FETCHMERGED-LOGICAL-c382t-6f1a195600e5a5241a06e27d77ea4d8018ff6b6bc395982981b7d626bdcb2f153
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PQID 1880842989
PQPubID 2043801
PageCount 13
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crossref_primary_10_1007_s11738_016_2277_5
springer_journals_10_1007_s11738_016_2277_5
PublicationCentury 2000
PublicationDate 2016-11-01
PublicationDateYYYYMMDD 2016-11-01
PublicationDate_xml – month: 11
  year: 2016
  text: 2016-11-01
  day: 01
PublicationDecade 2010
PublicationPlace Berlin/Heidelberg
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– name: Heidelberg
PublicationTitle Acta physiologiae plantarum
PublicationTitleAbbrev Acta Physiol Plant
PublicationYear 2016
Publisher Springer Berlin Heidelberg
Springer Nature B.V
Publisher_xml – name: Springer Berlin Heidelberg
– name: Springer Nature B.V
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Snippet Concentrations of heavy metals in soil seldom reach a level sufficient to cause osmotic disturbances in plants. It is likely that water entry to the roots is...
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SubjectTerms Abscisic acid
Agriculture
Apoplast
Biomedical and Life Sciences
Blood vessels
Deceleration
Detritus
Dieback
Disturbances
Elongation
Gene expression
Guard cells
Gums
Heavy metals
Leaves
Life Sciences
Metal concentrations
Metals
Permeability coefficient
Plant Anatomy/Development
Plant Biochemistry
Plant Genetics and Genomics
Plant Pathology
Plant Physiology
Plants
Review
Roots
Stems
Stomata
Toxicity
Transpiration
Water delivery
Water distribution
Water loss
Water relations
Water supply
Water transfer
Water uptake
Xylem
Title Water relations in plants subjected to heavy metal stresses
URI https://link.springer.com/article/10.1007/s11738-016-2277-5
https://www.proquest.com/docview/1880842989
Volume 38
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