Response to zinc deficiency of two rice lines with contrasting tolerance is determined by root growth maintenance and organic acid exudation rates, and not by zinc-transporter activity

Detalles Bibliográficos
Autores principales: Widodo, Broadley, Martin R., Rose, Terry, Frei, Michael, Pariasca-Tanaka, Juan, Yoshihashi, Tadashi, Thomson, Michael, Hammond, John P., Aprile, Alessio, Close, Timothy J., Ismail, Abdelbagi M., Wissuwa, Matthias
Formato: Journal Article
Lenguaje:Inglés
Publicado: Wiley 2010
Materias:
Acceso en línea:https://hdl.handle.net/10568/166080
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author Widodo
Broadley, Martin R.
Rose, Terry
Frei, Michael
Pariasca-Tanaka, Juan
Yoshihashi, Tadashi
Thomson, Michael
Hammond, John P.
Aprile, Alessio
Close, Timothy J.
Ismail, Abdelbagi M.
Wissuwa, Matthias
author_browse Aprile, Alessio
Broadley, Martin R.
Close, Timothy J.
Frei, Michael
Hammond, John P.
Ismail, Abdelbagi M.
Pariasca-Tanaka, Juan
Rose, Terry
Thomson, Michael
Widodo
Wissuwa, Matthias
Yoshihashi, Tadashi
author_facet Widodo
Broadley, Martin R.
Rose, Terry
Frei, Michael
Pariasca-Tanaka, Juan
Yoshihashi, Tadashi
Thomson, Michael
Hammond, John P.
Aprile, Alessio
Close, Timothy J.
Ismail, Abdelbagi M.
Wissuwa, Matthias
author_sort Widodo
collection Repository of Agricultural Research Outputs (CGSpace)
format Journal Article
id CGSpace166080
institution CGIAR Consortium
language Inglés
publishDate 2010
publishDateRange 2010
publishDateSort 2010
publisher Wiley
publisherStr Wiley
record_format dspace
spelling CGSpace1660802025-05-14T10:24:28Z Response to zinc deficiency of two rice lines with contrasting tolerance is determined by root growth maintenance and organic acid exudation rates, and not by zinc-transporter activity Widodo Broadley, Martin R. Rose, Terry Frei, Michael Pariasca-Tanaka, Juan Yoshihashi, Tadashi Thomson, Michael Hammond, John P. Aprile, Alessio Close, Timothy J. Ismail, Abdelbagi M. Wissuwa, Matthias biochemical transport biochemical transporters nutrient deficiencies organic acids plant nutrition roots transcription zinc 2010-04 2024-12-19T12:55:51Z 2024-12-19T12:55:51Z Journal Article https://hdl.handle.net/10568/166080 en Wiley Widodo, ; Widodo; Broadley, Martin R.; Rose, Terry; Frei, Michael; Pariasca‐Tanaka, Juan; Yoshihashi, Tadashi; Thomson, Michael; Hammond, John P.; Aprile, Alessio; Close, Timothy J.; Ismail, Abdelbagi M. and Wissuwa, Matthias. 2010. Response to zinc deficiency of two rice lines with contrasting tolerance is determined by root growth maintenance and organic acid exudation rates, and not by zinc-transporter activity. New Phytologist, Volume 186 no. 2 p. 400-414
spellingShingle biochemical transport
biochemical transporters
nutrient deficiencies
organic acids
plant nutrition
roots
transcription
zinc
Widodo
Broadley, Martin R.
Rose, Terry
Frei, Michael
Pariasca-Tanaka, Juan
Yoshihashi, Tadashi
Thomson, Michael
Hammond, John P.
Aprile, Alessio
Close, Timothy J.
Ismail, Abdelbagi M.
Wissuwa, Matthias
Response to zinc deficiency of two rice lines with contrasting tolerance is determined by root growth maintenance and organic acid exudation rates, and not by zinc-transporter activity
title Response to zinc deficiency of two rice lines with contrasting tolerance is determined by root growth maintenance and organic acid exudation rates, and not by zinc-transporter activity
title_full Response to zinc deficiency of two rice lines with contrasting tolerance is determined by root growth maintenance and organic acid exudation rates, and not by zinc-transporter activity
title_fullStr Response to zinc deficiency of two rice lines with contrasting tolerance is determined by root growth maintenance and organic acid exudation rates, and not by zinc-transporter activity
title_full_unstemmed Response to zinc deficiency of two rice lines with contrasting tolerance is determined by root growth maintenance and organic acid exudation rates, and not by zinc-transporter activity
title_short Response to zinc deficiency of two rice lines with contrasting tolerance is determined by root growth maintenance and organic acid exudation rates, and not by zinc-transporter activity
title_sort response to zinc deficiency of two rice lines with contrasting tolerance is determined by root growth maintenance and organic acid exudation rates and not by zinc transporter activity
topic biochemical transport
biochemical transporters
nutrient deficiencies
organic acids
plant nutrition
roots
transcription
zinc
url https://hdl.handle.net/10568/166080
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