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Response to Long-Term NaHCO(3)-Derived Alkalinity in Model Lotus japonicus Ecotypes Gifu B-129 and Miyakojima MG-20: Transcriptomic Profiling and Physiological Characterization

The current knowledge regarding transcriptomic changes induced by alkalinity on plants is scarce and limited to studies where plants were subjected to the alkaline salt for periods not longer than 48 h, so there is no information available regarding the regulation of genes involved in the generation...

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Autores principales: Babuin, María Florencia, Campestre, María Paula, Rocco, Rubén, Bordenave, Cesar D., Escaray, Francisco J., Antonelli, Cristian, Calzadilla, Pablo, Gárriz, Andrés, Serna, Eva, Carrasco, Pedro, Ruiz, Oscar A., Menendez, Ana B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4024010/
https://www.ncbi.nlm.nih.gov/pubmed/24835559
http://dx.doi.org/10.1371/journal.pone.0097106
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author Babuin, María Florencia
Campestre, María Paula
Rocco, Rubén
Bordenave, Cesar D.
Escaray, Francisco J.
Antonelli, Cristian
Calzadilla, Pablo
Gárriz, Andrés
Serna, Eva
Carrasco, Pedro
Ruiz, Oscar A.
Menendez, Ana B.
author_facet Babuin, María Florencia
Campestre, María Paula
Rocco, Rubén
Bordenave, Cesar D.
Escaray, Francisco J.
Antonelli, Cristian
Calzadilla, Pablo
Gárriz, Andrés
Serna, Eva
Carrasco, Pedro
Ruiz, Oscar A.
Menendez, Ana B.
author_sort Babuin, María Florencia
collection PubMed
description The current knowledge regarding transcriptomic changes induced by alkalinity on plants is scarce and limited to studies where plants were subjected to the alkaline salt for periods not longer than 48 h, so there is no information available regarding the regulation of genes involved in the generation of a new homeostatic cellular condition after long-term alkaline stress. Lotus japonicus is a model legume broadly used to study many important physiological processes including biotic interactions and biotic and abiotic stresses. In the present study, we characterized phenotipically the response to alkaline stress of the most widely used L. japonicus ecotypes, Gifu B-129 and MG-20, and analyzed global transcriptome of plants subjected to 10 mM NaHCO(3) during 21 days, by using the Affymetrix Lotus japonicus GeneChip®. Plant growth assessment, gas exchange parameters, chlorophyll a fluorescence transient (OJIP) analysis and metal accumulation supported the notion that MG-20 plants displayed a higher tolerance level to alkaline stress than Gifu B-129. Overall, 407 and 459 probe sets were regulated in MG-20 and Gifu B-129, respectively. The number of probe sets differentially expressed in roots was higher than that of shoots, regardless the ecotype. Gifu B-129 and MG-20 also differed in their regulation of genes that could play important roles in the generation of a new Fe/Zn homeostatic cellular condition, synthesis of plant compounds involved in stress response, protein-degradation, damage repair and root senescence, as well as in glycolysis, gluconeogenesis and TCA. In addition, there were differences between both ecotypes in the expression patterns of putative transcription factors that could determine distinct arrangements of flavonoid and isoflavonoid compounds. Our results provided a set of selected, differentially expressed genes deserving further investigation and suggested that the L. japonicus ecotypes could constitute a useful model to search for common and distinct tolerance mechanisms to long-term alkaline stress response in plants.
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spelling pubmed-40240102014-05-21 Response to Long-Term NaHCO(3)-Derived Alkalinity in Model Lotus japonicus Ecotypes Gifu B-129 and Miyakojima MG-20: Transcriptomic Profiling and Physiological Characterization Babuin, María Florencia Campestre, María Paula Rocco, Rubén Bordenave, Cesar D. Escaray, Francisco J. Antonelli, Cristian Calzadilla, Pablo Gárriz, Andrés Serna, Eva Carrasco, Pedro Ruiz, Oscar A. Menendez, Ana B. PLoS One Research Article The current knowledge regarding transcriptomic changes induced by alkalinity on plants is scarce and limited to studies where plants were subjected to the alkaline salt for periods not longer than 48 h, so there is no information available regarding the regulation of genes involved in the generation of a new homeostatic cellular condition after long-term alkaline stress. Lotus japonicus is a model legume broadly used to study many important physiological processes including biotic interactions and biotic and abiotic stresses. In the present study, we characterized phenotipically the response to alkaline stress of the most widely used L. japonicus ecotypes, Gifu B-129 and MG-20, and analyzed global transcriptome of plants subjected to 10 mM NaHCO(3) during 21 days, by using the Affymetrix Lotus japonicus GeneChip®. Plant growth assessment, gas exchange parameters, chlorophyll a fluorescence transient (OJIP) analysis and metal accumulation supported the notion that MG-20 plants displayed a higher tolerance level to alkaline stress than Gifu B-129. Overall, 407 and 459 probe sets were regulated in MG-20 and Gifu B-129, respectively. The number of probe sets differentially expressed in roots was higher than that of shoots, regardless the ecotype. Gifu B-129 and MG-20 also differed in their regulation of genes that could play important roles in the generation of a new Fe/Zn homeostatic cellular condition, synthesis of plant compounds involved in stress response, protein-degradation, damage repair and root senescence, as well as in glycolysis, gluconeogenesis and TCA. In addition, there were differences between both ecotypes in the expression patterns of putative transcription factors that could determine distinct arrangements of flavonoid and isoflavonoid compounds. Our results provided a set of selected, differentially expressed genes deserving further investigation and suggested that the L. japonicus ecotypes could constitute a useful model to search for common and distinct tolerance mechanisms to long-term alkaline stress response in plants. Public Library of Science 2014-05-16 /pmc/articles/PMC4024010/ /pubmed/24835559 http://dx.doi.org/10.1371/journal.pone.0097106 Text en © 2014 Babuin et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Babuin, María Florencia
Campestre, María Paula
Rocco, Rubén
Bordenave, Cesar D.
Escaray, Francisco J.
Antonelli, Cristian
Calzadilla, Pablo
Gárriz, Andrés
Serna, Eva
Carrasco, Pedro
Ruiz, Oscar A.
Menendez, Ana B.
Response to Long-Term NaHCO(3)-Derived Alkalinity in Model Lotus japonicus Ecotypes Gifu B-129 and Miyakojima MG-20: Transcriptomic Profiling and Physiological Characterization
title Response to Long-Term NaHCO(3)-Derived Alkalinity in Model Lotus japonicus Ecotypes Gifu B-129 and Miyakojima MG-20: Transcriptomic Profiling and Physiological Characterization
title_full Response to Long-Term NaHCO(3)-Derived Alkalinity in Model Lotus japonicus Ecotypes Gifu B-129 and Miyakojima MG-20: Transcriptomic Profiling and Physiological Characterization
title_fullStr Response to Long-Term NaHCO(3)-Derived Alkalinity in Model Lotus japonicus Ecotypes Gifu B-129 and Miyakojima MG-20: Transcriptomic Profiling and Physiological Characterization
title_full_unstemmed Response to Long-Term NaHCO(3)-Derived Alkalinity in Model Lotus japonicus Ecotypes Gifu B-129 and Miyakojima MG-20: Transcriptomic Profiling and Physiological Characterization
title_short Response to Long-Term NaHCO(3)-Derived Alkalinity in Model Lotus japonicus Ecotypes Gifu B-129 and Miyakojima MG-20: Transcriptomic Profiling and Physiological Characterization
title_sort response to long-term nahco(3)-derived alkalinity in model lotus japonicus ecotypes gifu b-129 and miyakojima mg-20: transcriptomic profiling and physiological characterization
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4024010/
https://www.ncbi.nlm.nih.gov/pubmed/24835559
http://dx.doi.org/10.1371/journal.pone.0097106
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