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The maize fused leaves1 (fdl1) gene controls organ separation in the embryo and seedling shoot and promotes coleoptile opening

The fdl1-1 mutation, caused by an Enhancer/Suppressor mutator (En/Spm) element insertion located in the third exon of the gene, identifies a novel gene encoding ZmMYB94, a transcription factor of the R2R3-MYB subfamily. The fdl1 gene was isolated through co-segregation analysis, whereas proof of gen...

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Autores principales: La Rocca, Nicoletta, Manzotti, Priscilla S., Cavaiuolo, Marina, Barbante, Alessandra, Dalla Vecchia, Francesca, Gabotti, Damiano, Gendrot, Ghislaine, Horner, David S., Krstajic, Jelena, Persico, Martina, Rascio, Nicoletta, Rogowsky, Peter, Scarafoni, Alessio, Consonni, Gabriella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4566974/
https://www.ncbi.nlm.nih.gov/pubmed/26093144
http://dx.doi.org/10.1093/jxb/erv278
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author La Rocca, Nicoletta
Manzotti, Priscilla S.
Cavaiuolo, Marina
Barbante, Alessandra
Dalla Vecchia, Francesca
Gabotti, Damiano
Gendrot, Ghislaine
Horner, David S.
Krstajic, Jelena
Persico, Martina
Rascio, Nicoletta
Rogowsky, Peter
Scarafoni, Alessio
Consonni, Gabriella
author_facet La Rocca, Nicoletta
Manzotti, Priscilla S.
Cavaiuolo, Marina
Barbante, Alessandra
Dalla Vecchia, Francesca
Gabotti, Damiano
Gendrot, Ghislaine
Horner, David S.
Krstajic, Jelena
Persico, Martina
Rascio, Nicoletta
Rogowsky, Peter
Scarafoni, Alessio
Consonni, Gabriella
author_sort La Rocca, Nicoletta
collection PubMed
description The fdl1-1 mutation, caused by an Enhancer/Suppressor mutator (En/Spm) element insertion located in the third exon of the gene, identifies a novel gene encoding ZmMYB94, a transcription factor of the R2R3-MYB subfamily. The fdl1 gene was isolated through co-segregation analysis, whereas proof of gene identity was obtained using an RNAi strategy that conferred less severe, but clearly recognizable specific mutant traits on seedlings. Fdl1 is involved in the regulation of cuticle deposition in young seedlings as well as in the establishment of a regular pattern of epicuticular wax deposition on the epidermis of young leaves. Lack of Fdl1 action also correlates with developmental defects, such as delayed germination and seedling growth, abnormal coleoptile opening and presence of curly leaves showing areas of fusion between the coleoptile and the first leaf or between the first and the second leaf. The expression profile of ZmMYB94 mRNA—determined by quantitative RT-PCR—overlaps the pattern of mutant phenotypic expression and is confined to a narrow developmental window. High expression was observed in the embryo, in the seedling coleoptile and in the first two leaves, whereas RNA level, as well as phenotypic defects, decreases at the third leaf stage. Interestingly several of the Arabidopsis MYB genes most closely related to ZmMYB94 are also involved in the activation of cuticular wax biosynthesis, suggesting deep conservation of regulatory processes related to cuticular wax deposition between monocots and dicots.
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spelling pubmed-45669742015-09-15 The maize fused leaves1 (fdl1) gene controls organ separation in the embryo and seedling shoot and promotes coleoptile opening La Rocca, Nicoletta Manzotti, Priscilla S. Cavaiuolo, Marina Barbante, Alessandra Dalla Vecchia, Francesca Gabotti, Damiano Gendrot, Ghislaine Horner, David S. Krstajic, Jelena Persico, Martina Rascio, Nicoletta Rogowsky, Peter Scarafoni, Alessio Consonni, Gabriella J Exp Bot Research Paper The fdl1-1 mutation, caused by an Enhancer/Suppressor mutator (En/Spm) element insertion located in the third exon of the gene, identifies a novel gene encoding ZmMYB94, a transcription factor of the R2R3-MYB subfamily. The fdl1 gene was isolated through co-segregation analysis, whereas proof of gene identity was obtained using an RNAi strategy that conferred less severe, but clearly recognizable specific mutant traits on seedlings. Fdl1 is involved in the regulation of cuticle deposition in young seedlings as well as in the establishment of a regular pattern of epicuticular wax deposition on the epidermis of young leaves. Lack of Fdl1 action also correlates with developmental defects, such as delayed germination and seedling growth, abnormal coleoptile opening and presence of curly leaves showing areas of fusion between the coleoptile and the first leaf or between the first and the second leaf. The expression profile of ZmMYB94 mRNA—determined by quantitative RT-PCR—overlaps the pattern of mutant phenotypic expression and is confined to a narrow developmental window. High expression was observed in the embryo, in the seedling coleoptile and in the first two leaves, whereas RNA level, as well as phenotypic defects, decreases at the third leaf stage. Interestingly several of the Arabidopsis MYB genes most closely related to ZmMYB94 are also involved in the activation of cuticular wax biosynthesis, suggesting deep conservation of regulatory processes related to cuticular wax deposition between monocots and dicots. Oxford University Press 2015-09 2015-06-20 /pmc/articles/PMC4566974/ /pubmed/26093144 http://dx.doi.org/10.1093/jxb/erv278 Text en © The Author 2015. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
La Rocca, Nicoletta
Manzotti, Priscilla S.
Cavaiuolo, Marina
Barbante, Alessandra
Dalla Vecchia, Francesca
Gabotti, Damiano
Gendrot, Ghislaine
Horner, David S.
Krstajic, Jelena
Persico, Martina
Rascio, Nicoletta
Rogowsky, Peter
Scarafoni, Alessio
Consonni, Gabriella
The maize fused leaves1 (fdl1) gene controls organ separation in the embryo and seedling shoot and promotes coleoptile opening
title The maize fused leaves1 (fdl1) gene controls organ separation in the embryo and seedling shoot and promotes coleoptile opening
title_full The maize fused leaves1 (fdl1) gene controls organ separation in the embryo and seedling shoot and promotes coleoptile opening
title_fullStr The maize fused leaves1 (fdl1) gene controls organ separation in the embryo and seedling shoot and promotes coleoptile opening
title_full_unstemmed The maize fused leaves1 (fdl1) gene controls organ separation in the embryo and seedling shoot and promotes coleoptile opening
title_short The maize fused leaves1 (fdl1) gene controls organ separation in the embryo and seedling shoot and promotes coleoptile opening
title_sort maize fused leaves1 (fdl1) gene controls organ separation in the embryo and seedling shoot and promotes coleoptile opening
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4566974/
https://www.ncbi.nlm.nih.gov/pubmed/26093144
http://dx.doi.org/10.1093/jxb/erv278
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