Salinity Tolerance in Plants: Mechanisms and Regulation of Ion Transport

Life presumably arose in the primeval oceans with similar or even greater salinity than the present ocean, so the ancient cells were designed to withstand salinity. However, the immediate ancestors of land plants most likely lived in fresh, or slightly brackish, water. The fresh/brackish water origi...

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Autores:
Tipo de recurso:
Book
Fecha de publicación:
2018
Institución:
Universidad de Bogotá Jorge Tadeo Lozano
Repositorio:
Expeditio: repositorio UTadeo
Idioma:
eng
OAI Identifier:
oai:expeditiorepositorio.utadeo.edu.co:20.500.12010/14210
Acceso en línea:
https://www.frontiersin.org/research-topics/2058/salinity-tolerance-in-plants-mechanisms-and-regulation-of-ion-transport
http://hdl.handle.net/20.500.12010/14210
Palabra clave:
Science (General)
Botany
Halophytes
Salinity tolerance
Ion transporters
Systems biology
Synthetic biology
Ion channels
Salt glands
Halotropism
Rights
License
Abierto (Texto Completo)
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dc.title.spa.fl_str_mv Salinity Tolerance in Plants: Mechanisms and Regulation of Ion Transport
title Salinity Tolerance in Plants: Mechanisms and Regulation of Ion Transport
spellingShingle Salinity Tolerance in Plants: Mechanisms and Regulation of Ion Transport
Science (General)
Botany
Halophytes
Salinity tolerance
Ion transporters
Systems biology
Synthetic biology
Ion channels
Salt glands
Halotropism
title_short Salinity Tolerance in Plants: Mechanisms and Regulation of Ion Transport
title_full Salinity Tolerance in Plants: Mechanisms and Regulation of Ion Transport
title_fullStr Salinity Tolerance in Plants: Mechanisms and Regulation of Ion Transport
title_full_unstemmed Salinity Tolerance in Plants: Mechanisms and Regulation of Ion Transport
title_sort Salinity Tolerance in Plants: Mechanisms and Regulation of Ion Transport
dc.subject.spa.fl_str_mv Science (General)
Botany
Halophytes
topic Science (General)
Botany
Halophytes
Salinity tolerance
Ion transporters
Systems biology
Synthetic biology
Ion channels
Salt glands
Halotropism
dc.subject.lemb.spa.fl_str_mv Salinity tolerance
Ion transporters
Systems biology
Synthetic biology
dc.subject.keyword.spa.fl_str_mv Ion channels
Salt glands
Halotropism
description Life presumably arose in the primeval oceans with similar or even greater salinity than the present ocean, so the ancient cells were designed to withstand salinity. However, the immediate ancestors of land plants most likely lived in fresh, or slightly brackish, water. The fresh/brackish water origins might explain why many land plants, including some cereals, can withstand moderate salinity, but only 1 – 2 % of all the higher plant species were able to re-discover their saline origins again and survive at increased salinities close to that of seawater. From a practical side, salinity is among the major threats to agriculture, having been one of the reasons for the demise of the ancient Mesopotamian Sumer civilisation and in the present time causing huge annual economic losses of over 10 billion USD. The effects of salinity on plants include osmotic stress, disruption of membrane ion transport, direct toxicity of high cytoplasmic concentrations of sodium and chloride on cellular processes and induced oxidative stress. Ion transport is the crucial starting point that determines salinity tolerance in plants. Transport via membranes is mediated mostly by the ion channels and transporters, which ensure selective passage of specific ions. The molecular and structural diversity of these ion channels and transporters is amazing. Obtaining the detailed descriptions of distinct ion channels and transporters present in halophytes, marine algae and salt-tolerant fungi and then progressing to the cellular and the whole organism mechanisms, is one of the logical ways to understand high salinity tolerance. Transfer of the genes from halophytes to agricultural crops is a means to increase salt tolerance of the crops. The theoretical scientific approaches involve protein chemistry, structure-function relations of membrane proteins, synthetic biology, systems biology and physiology of stress and ion homeostasis. At the time of compiling this e-book many aspects of ion transport under salinity stress are not yet well understood. The e-book has attracted researchers in ion transport and salinity tolerance. We have combined our efforts to achieve a wider, more detailed understanding of salt tolerance in plants mediated by ion transport, to understand present and future ways to modify and manipulate ion transport and salinity tolerance and also to find natural limits for the modifications.
publishDate 2018
dc.date.created.none.fl_str_mv 2018-08-27
dc.date.accessioned.none.fl_str_mv 2020-10-05T19:45:07Z
dc.date.available.none.fl_str_mv 2020-10-05T19:45:07Z
dc.type.local.spa.fl_str_mv Libro
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format http://purl.org/coar/resource_type/c_2f33
dc.identifier.isbn.none.fl_str_mv 978-2-88945-369-6
dc.identifier.issn.none.fl_str_mv 1664-8714
dc.identifier.other.none.fl_str_mv https://www.frontiersin.org/research-topics/2058/salinity-tolerance-in-plants-mechanisms-and-regulation-of-ion-transport
dc.identifier.uri.none.fl_str_mv http://hdl.handle.net/20.500.12010/14210
dc.identifier.doi.none.fl_str_mv 10.3389/978-2-88945-369-6
identifier_str_mv 978-2-88945-369-6
1664-8714
10.3389/978-2-88945-369-6
url https://www.frontiersin.org/research-topics/2058/salinity-tolerance-in-plants-mechanisms-and-regulation-of-ion-transport
http://hdl.handle.net/20.500.12010/14210
dc.language.iso.spa.fl_str_mv eng
language eng
dc.relation.references.spa.fl_str_mv Volkov, V., Beilby, M. J., eds. (2017). Salinity Tolerance in Plants: Mechanisms and Regulation of Ion Transport. Lausanne: Frontiers Media. doi: 10.3389/978-2-88945-369-6
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rights_invalid_str_mv Abierto (Texto Completo)
https://creativecommons.org/licenses/by/4.0/
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dc.format.extent.spa.fl_str_mv 243 páginas
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dc.publisher.spa.fl_str_mv Frontiers Media SA
institution Universidad de Bogotá Jorge Tadeo Lozano
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spelling 2020-10-05T19:45:07Z2020-10-05T19:45:07Z2018-08-27978-2-88945-369-61664-8714https://www.frontiersin.org/research-topics/2058/salinity-tolerance-in-plants-mechanisms-and-regulation-of-ion-transporthttp://hdl.handle.net/20.500.12010/1421010.3389/978-2-88945-369-6243 páginasapplication/pdfengFrontiers Media SAScience (General)BotanyHalophytesSalinity toleranceIon transportersSystems biologySynthetic biologyIon channelsSalt glandsHalotropismSalinity Tolerance in Plants: Mechanisms and Regulation of Ion TransportLibrohttp://purl.org/coar/resource_type/c_2f33Abierto (Texto Completo)https://creativecommons.org/licenses/by/4.0/http://purl.org/coar/access_right/c_abf2Volkov, V., Beilby, M. J., eds. (2017). Salinity Tolerance in Plants: Mechanisms and Regulation of Ion Transport. Lausanne: Frontiers Media. doi: 10.3389/978-2-88945-369-6Life presumably arose in the primeval oceans with similar or even greater salinity than the present ocean, so the ancient cells were designed to withstand salinity. However, the immediate ancestors of land plants most likely lived in fresh, or slightly brackish, water. The fresh/brackish water origins might explain why many land plants, including some cereals, can withstand moderate salinity, but only 1 – 2 % of all the higher plant species were able to re-discover their saline origins again and survive at increased salinities close to that of seawater. From a practical side, salinity is among the major threats to agriculture, having been one of the reasons for the demise of the ancient Mesopotamian Sumer civilisation and in the present time causing huge annual economic losses of over 10 billion USD. The effects of salinity on plants include osmotic stress, disruption of membrane ion transport, direct toxicity of high cytoplasmic concentrations of sodium and chloride on cellular processes and induced oxidative stress. Ion transport is the crucial starting point that determines salinity tolerance in plants. Transport via membranes is mediated mostly by the ion channels and transporters, which ensure selective passage of specific ions. The molecular and structural diversity of these ion channels and transporters is amazing. Obtaining the detailed descriptions of distinct ion channels and transporters present in halophytes, marine algae and salt-tolerant fungi and then progressing to the cellular and the whole organism mechanisms, is one of the logical ways to understand high salinity tolerance. Transfer of the genes from halophytes to agricultural crops is a means to increase salt tolerance of the crops. The theoretical scientific approaches involve protein chemistry, structure-function relations of membrane proteins, synthetic biology, systems biology and physiology of stress and ion homeostasis. At the time of compiling this e-book many aspects of ion transport under salinity stress are not yet well understood. The e-book has attracted researchers in ion transport and salinity tolerance. We have combined our efforts to achieve a wider, more detailed understanding of salt tolerance in plants mediated by ion transport, to understand present and future ways to modify and manipulate ion transport and salinity tolerance and also to find natural limits for the modifications.Volkov, VadimBeilby, Mary J.ORIGINAL3696_SALINITY TOLERANCE IN PLANTS.PDF3696_SALINITY TOLERANCE IN PLANTS.PDFVer documentoapplication/pdf65666161https://expeditiorepositorio.utadeo.edu.co/bitstream/20.500.12010/14210/1/3696_SALINITY%20TOLERANCE%20IN%20PLANTS.PDF360968142f17fe0c11194f8a17f568bdMD51open accessLICENSElicense.txtlicense.txttext/plain; charset=utf-82938https://expeditiorepositorio.utadeo.edu.co/bitstream/20.500.12010/14210/2/license.txtabceeb1c943c50d3343516f9dbfc110fMD52open accessTHUMBNAIL3696_SALINITY TOLERANCE IN PLANTS.PDF.jpg3696_SALINITY TOLERANCE IN PLANTS.PDF.jpgIM Thumbnailimage/jpeg30612https://expeditiorepositorio.utadeo.edu.co/bitstream/20.500.12010/14210/3/3696_SALINITY%20TOLERANCE%20IN%20PLANTS.PDF.jpge016e7710ccb295cd015955615a6d6cfMD53open access20.500.12010/14210oai:expeditiorepositorio.utadeo.edu.co:20.500.12010/142102021-02-23 15:22:19.876open accessRepositorio Institucional - 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