Differential gene expression analysis provides new insights into the molecular basis of iron deficiency stress response in the citrus rootstock Poncirus trifoliata (L.) Raf.

Iron chlorosis is one of the major abiotic stresses affecting fruit trees and other crops in calcareous soils and leads to a reduction in growth and yield. Usual remediation strategies consist of amending iron to soil, which is an expensive practice, or using tolerant cultivars, which are difficult...

Descripción completa

Detalles Bibliográficos
Autores principales: Forner-Giner, María A., Llosa, María José, Carrasco, José L., Pérez-Amador, Miguel A., Navarro, Luis, Ancillo, Gema
Formato: Artículo
Lenguaje:Inglés
Publicado: 2017
Acceso en línea:http://hdl.handle.net/20.500.11939/5212
_version_ 1855491886657044480
author Forner-Giner, María A.
Llosa, María José
Carrasco, José L.
Pérez-Amador, Miguel A.
Navarro, Luis
Ancillo, Gema
author_browse Ancillo, Gema
Carrasco, José L.
Forner-Giner, María A.
Llosa, María José
Navarro, Luis
Pérez-Amador, Miguel A.
author_facet Forner-Giner, María A.
Llosa, María José
Carrasco, José L.
Pérez-Amador, Miguel A.
Navarro, Luis
Ancillo, Gema
author_sort Forner-Giner, María A.
collection ReDivia
description Iron chlorosis is one of the major abiotic stresses affecting fruit trees and other crops in calcareous soils and leads to a reduction in growth and yield. Usual remediation strategies consist of amending iron to soil, which is an expensive practice, or using tolerant cultivars, which are difficult to develop when not available. To understand the mechanisms underlying the associated physiopathy better, and thus develop new strategies to overcome the problems resulting from iron deficiency, the differential gene expression induced by iron deficiency in the susceptible citrus rootstock Poncirus trifoliata (L.) Raf. have been examined. The genes identified are putatively involved in cell wall modification, in determining photosynthesis rate and chlorophyll content, and reducing oxidative stress. Additional studies on cell wall morphology, photosynthesis, and chlorophyll content, as well as peroxidase and catalase activities, support their possible functions in the response to iron deficiency in a susceptible genotype, and the results are discussed.
format Artículo
id ReDivia5212
institution Instituto Valenciano de Investigaciones Agrarias (IVIA)
language Inglés
publishDate 2017
publishDateRange 2017
publishDateSort 2017
record_format dspace
spelling ReDivia52122025-04-25T14:45:40Z Differential gene expression analysis provides new insights into the molecular basis of iron deficiency stress response in the citrus rootstock Poncirus trifoliata (L.) Raf. Forner-Giner, María A. Llosa, María José Carrasco, José L. Pérez-Amador, Miguel A. Navarro, Luis Ancillo, Gema Iron chlorosis is one of the major abiotic stresses affecting fruit trees and other crops in calcareous soils and leads to a reduction in growth and yield. Usual remediation strategies consist of amending iron to soil, which is an expensive practice, or using tolerant cultivars, which are difficult to develop when not available. To understand the mechanisms underlying the associated physiopathy better, and thus develop new strategies to overcome the problems resulting from iron deficiency, the differential gene expression induced by iron deficiency in the susceptible citrus rootstock Poncirus trifoliata (L.) Raf. have been examined. The genes identified are putatively involved in cell wall modification, in determining photosynthesis rate and chlorophyll content, and reducing oxidative stress. Additional studies on cell wall morphology, photosynthesis, and chlorophyll content, as well as peroxidase and catalase activities, support their possible functions in the response to iron deficiency in a susceptible genotype, and the results are discussed. 2017-06-01T10:11:54Z 2017-06-01T10:11:54Z 2010 JAN article publishedVersion Forner-Giner, M.A., Llosa, M.J., Carrasco, J.L., Perez-Amador, M.A., Navarro, L., Ancillo, G. (2010). Differential gene expression analysis provides new insights into the molecular basis of iron deficiency stress response in the citrus rootstock Poncirus trifoliata (L.), Raf.. Journal of experimental botany, 61(2), 483-490. 0022-0957 http://hdl.handle.net/20.500.11939/5212 10.1093/jxb/erp328 en openAccess Impreso
spellingShingle Forner-Giner, María A.
Llosa, María José
Carrasco, José L.
Pérez-Amador, Miguel A.
Navarro, Luis
Ancillo, Gema
Differential gene expression analysis provides new insights into the molecular basis of iron deficiency stress response in the citrus rootstock Poncirus trifoliata (L.) Raf.
title Differential gene expression analysis provides new insights into the molecular basis of iron deficiency stress response in the citrus rootstock Poncirus trifoliata (L.) Raf.
title_full Differential gene expression analysis provides new insights into the molecular basis of iron deficiency stress response in the citrus rootstock Poncirus trifoliata (L.) Raf.
title_fullStr Differential gene expression analysis provides new insights into the molecular basis of iron deficiency stress response in the citrus rootstock Poncirus trifoliata (L.) Raf.
title_full_unstemmed Differential gene expression analysis provides new insights into the molecular basis of iron deficiency stress response in the citrus rootstock Poncirus trifoliata (L.) Raf.
title_short Differential gene expression analysis provides new insights into the molecular basis of iron deficiency stress response in the citrus rootstock Poncirus trifoliata (L.) Raf.
title_sort differential gene expression analysis provides new insights into the molecular basis of iron deficiency stress response in the citrus rootstock poncirus trifoliata l raf
url http://hdl.handle.net/20.500.11939/5212
work_keys_str_mv AT fornerginermariaa differentialgeneexpressionanalysisprovidesnewinsightsintothemolecularbasisofirondeficiencystressresponseinthecitrusrootstockponcirustrifoliatalraf
AT llosamariajose differentialgeneexpressionanalysisprovidesnewinsightsintothemolecularbasisofirondeficiencystressresponseinthecitrusrootstockponcirustrifoliatalraf
AT carrascojosel differentialgeneexpressionanalysisprovidesnewinsightsintothemolecularbasisofirondeficiencystressresponseinthecitrusrootstockponcirustrifoliatalraf
AT perezamadormiguela differentialgeneexpressionanalysisprovidesnewinsightsintothemolecularbasisofirondeficiencystressresponseinthecitrusrootstockponcirustrifoliatalraf
AT navarroluis differentialgeneexpressionanalysisprovidesnewinsightsintothemolecularbasisofirondeficiencystressresponseinthecitrusrootstockponcirustrifoliatalraf
AT ancillogema differentialgeneexpressionanalysisprovidesnewinsightsintothemolecularbasisofirondeficiencystressresponseinthecitrusrootstockponcirustrifoliatalraf