Analysis of CcDREB1D promoter region from drought-tolerant and susceptible clones of Coffea canephora by homologous genetic transformation of Coffea arabica

In several plant species, the DREB genes play a key role in responses to abiotic stress. Since the development of molecular markers is one of the major goals for accelerating breeding programs, a study was done to evaluate the sequence variability of the DREBID gene in several Coffee genotypes. The promoter and coding regions of DREBID gene were cloned and sequenced from 16 coffee plants (10 from C. arabica and 4 from C. canephora), most of them characterized by different phenotypes (tolerance vs. susceptibility) regarding to drought. This showed a high conservation of DREB1 D proteins among the homologous sequences due to the low level of diversity and the high number of synonymous mutations and neutral changes which represents the majority of sequence variations. However, several nucleic polymorphisms ("single nucleotide polymorphism" and insertion/deletion [InDels]) were found in the coffee DREBID promoters. A comparison of predicted cis-acting elements for all the promoter sequences signaled the loss of some regulatory DNA elements. The sequence variation and the loss of some regulatory DNA elements could explain the differences of DREBID gene expression previously observed in leaves of drought tolerant (clone 14) and susceptible (clone 22) clones of C. canephora. In fact, both clones 14 and 22, have one same CcDREBID allelic sequence (hp15), and diverge at a second allele. Thus, the CcDREBID allele in the tolerant 14 (hp16) was considered to be the favorable/tolerant allele and the allele in 22 (hp17) was inferior/sensitive. The capacity of CcDREBID promoter to control the expression of the uidA reporter gene is under evaluation in transgenic plants of Coffee arabica cv. caturra stably transformed by Agrobacterium tumefaciens mediated gene transfer procedure. Caturra transgenic embryos were placed on a clean bench and subjected to dehydration tests. Preliminary results of bioassays checking GUS (/3-glucuronidase) activities indicate that the observed sequence variations have a direct role in the regulation of CcDREBID expression. The proximal promoter of CcDREBID for the three alleles tested (hp15, hp16 and hp17) equally induced the uidA gene expression, however, expression of uidA under control of the complete CcDREBID promoter was significantly induced in the tolerant allele (hp16) in response to the osmotic stress, whereas, it was not significantly upregulated for the common (hp15) and sensitive alleles (hp17). These results also evidence that the sequence variation present at the first -700 by of CcDREBID promoter do not interfere the regulation activity of the promoter, probably due to the non-overlapping of SNPs and cis-regulatory elements. Though, the higher sequence variation and co-occurrence of SNPs and cis-regulatory elements observed between -700 and -1500 by seems to affect the regulation of CcDREBID promoter in response to drought stress.Support: CAPES COFECUB, INCT-Café, CNPq and ConsOrcio Pesquisa Café. (Texte intégral)

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Main Authors: Alves, Gabriel Sergio Costa, Dechamp, Eveline, Freire, Luciana Pereira, Paiva, L.V., This, Dominique, Andrade, Alan Carvalho, Etienne, Hervé, Marraccini, Pierre
Format: conference_item biblioteca
Language:eng
Published: s.n.
Subjects:F30 - Génétique et amélioration des plantes, H50 - Troubles divers des plantes, F60 - Physiologie et biochimie végétale,
Online Access:http://agritrop.cirad.fr/574941/
http://agritrop.cirad.fr/574941/1/document_574941.pdf
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topic F30 - Génétique et amélioration des plantes
H50 - Troubles divers des plantes
F60 - Physiologie et biochimie végétale
F30 - Génétique et amélioration des plantes
H50 - Troubles divers des plantes
F60 - Physiologie et biochimie végétale
spellingShingle F30 - Génétique et amélioration des plantes
H50 - Troubles divers des plantes
F60 - Physiologie et biochimie végétale
F30 - Génétique et amélioration des plantes
H50 - Troubles divers des plantes
F60 - Physiologie et biochimie végétale
Alves, Gabriel Sergio Costa
Dechamp, Eveline
Freire, Luciana Pereira
Paiva, L.V.
This, Dominique
Andrade, Alan Carvalho
Etienne, Hervé
Marraccini, Pierre
Analysis of CcDREB1D promoter region from drought-tolerant and susceptible clones of Coffea canephora by homologous genetic transformation of Coffea arabica
description In several plant species, the DREB genes play a key role in responses to abiotic stress. Since the development of molecular markers is one of the major goals for accelerating breeding programs, a study was done to evaluate the sequence variability of the DREBID gene in several Coffee genotypes. The promoter and coding regions of DREBID gene were cloned and sequenced from 16 coffee plants (10 from C. arabica and 4 from C. canephora), most of them characterized by different phenotypes (tolerance vs. susceptibility) regarding to drought. This showed a high conservation of DREB1 D proteins among the homologous sequences due to the low level of diversity and the high number of synonymous mutations and neutral changes which represents the majority of sequence variations. However, several nucleic polymorphisms ("single nucleotide polymorphism" and insertion/deletion [InDels]) were found in the coffee DREBID promoters. A comparison of predicted cis-acting elements for all the promoter sequences signaled the loss of some regulatory DNA elements. The sequence variation and the loss of some regulatory DNA elements could explain the differences of DREBID gene expression previously observed in leaves of drought tolerant (clone 14) and susceptible (clone 22) clones of C. canephora. In fact, both clones 14 and 22, have one same CcDREBID allelic sequence (hp15), and diverge at a second allele. Thus, the CcDREBID allele in the tolerant 14 (hp16) was considered to be the favorable/tolerant allele and the allele in 22 (hp17) was inferior/sensitive. The capacity of CcDREBID promoter to control the expression of the uidA reporter gene is under evaluation in transgenic plants of Coffee arabica cv. caturra stably transformed by Agrobacterium tumefaciens mediated gene transfer procedure. Caturra transgenic embryos were placed on a clean bench and subjected to dehydration tests. Preliminary results of bioassays checking GUS (/3-glucuronidase) activities indicate that the observed sequence variations have a direct role in the regulation of CcDREBID expression. The proximal promoter of CcDREBID for the three alleles tested (hp15, hp16 and hp17) equally induced the uidA gene expression, however, expression of uidA under control of the complete CcDREBID promoter was significantly induced in the tolerant allele (hp16) in response to the osmotic stress, whereas, it was not significantly upregulated for the common (hp15) and sensitive alleles (hp17). These results also evidence that the sequence variation present at the first -700 by of CcDREBID promoter do not interfere the regulation activity of the promoter, probably due to the non-overlapping of SNPs and cis-regulatory elements. Though, the higher sequence variation and co-occurrence of SNPs and cis-regulatory elements observed between -700 and -1500 by seems to affect the regulation of CcDREBID promoter in response to drought stress.Support: CAPES COFECUB, INCT-Café, CNPq and ConsOrcio Pesquisa Café. (Texte intégral)
format conference_item
topic_facet F30 - Génétique et amélioration des plantes
H50 - Troubles divers des plantes
F60 - Physiologie et biochimie végétale
author Alves, Gabriel Sergio Costa
Dechamp, Eveline
Freire, Luciana Pereira
Paiva, L.V.
This, Dominique
Andrade, Alan Carvalho
Etienne, Hervé
Marraccini, Pierre
author_facet Alves, Gabriel Sergio Costa
Dechamp, Eveline
Freire, Luciana Pereira
Paiva, L.V.
This, Dominique
Andrade, Alan Carvalho
Etienne, Hervé
Marraccini, Pierre
author_sort Alves, Gabriel Sergio Costa
title Analysis of CcDREB1D promoter region from drought-tolerant and susceptible clones of Coffea canephora by homologous genetic transformation of Coffea arabica
title_short Analysis of CcDREB1D promoter region from drought-tolerant and susceptible clones of Coffea canephora by homologous genetic transformation of Coffea arabica
title_full Analysis of CcDREB1D promoter region from drought-tolerant and susceptible clones of Coffea canephora by homologous genetic transformation of Coffea arabica
title_fullStr Analysis of CcDREB1D promoter region from drought-tolerant and susceptible clones of Coffea canephora by homologous genetic transformation of Coffea arabica
title_full_unstemmed Analysis of CcDREB1D promoter region from drought-tolerant and susceptible clones of Coffea canephora by homologous genetic transformation of Coffea arabica
title_sort analysis of ccdreb1d promoter region from drought-tolerant and susceptible clones of coffea canephora by homologous genetic transformation of coffea arabica
publisher s.n.
url http://agritrop.cirad.fr/574941/
http://agritrop.cirad.fr/574941/1/document_574941.pdf
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spelling dig-cirad-fr-5749412022-03-16T17:04:06Z http://agritrop.cirad.fr/574941/ http://agritrop.cirad.fr/574941/ Analysis of CcDREB1D promoter region from drought-tolerant and susceptible clones of Coffea canephora by homologous genetic transformation of Coffea arabica. Alves Gabriel Sergio Costa, Dechamp Eveline, Freire Luciana Pereira, Paiva L.V., This Dominique, Andrade Alan Carvalho, Etienne Hervé, Marraccini Pierre. 2014. In : 11th Solanaceae Conference: book of abstracts, Porto Seguro, Brazil, November 2-6, 2014. Embrapa, UESC, UFLA, Ciba. s.l. : s.n., Résumé, 167. Solanaceae Conference. 11, Porto Seguro, Brésil, 2 Novembre 2014/6 Novembre 2014. Researchers Analysis of CcDREB1D promoter region from drought-tolerant and susceptible clones of Coffea canephora by homologous genetic transformation of Coffea arabica Alves, Gabriel Sergio Costa Dechamp, Eveline Freire, Luciana Pereira Paiva, L.V. This, Dominique Andrade, Alan Carvalho Etienne, Hervé Marraccini, Pierre eng 2014 s.n. 11th Solanaceae Conference: book of abstracts, Porto Seguro, Brazil, November 2-6, 2014 F30 - Génétique et amélioration des plantes H50 - Troubles divers des plantes F60 - Physiologie et biochimie végétale In several plant species, the DREB genes play a key role in responses to abiotic stress. Since the development of molecular markers is one of the major goals for accelerating breeding programs, a study was done to evaluate the sequence variability of the DREBID gene in several Coffee genotypes. The promoter and coding regions of DREBID gene were cloned and sequenced from 16 coffee plants (10 from C. arabica and 4 from C. canephora), most of them characterized by different phenotypes (tolerance vs. susceptibility) regarding to drought. This showed a high conservation of DREB1 D proteins among the homologous sequences due to the low level of diversity and the high number of synonymous mutations and neutral changes which represents the majority of sequence variations. However, several nucleic polymorphisms ("single nucleotide polymorphism" and insertion/deletion [InDels]) were found in the coffee DREBID promoters. A comparison of predicted cis-acting elements for all the promoter sequences signaled the loss of some regulatory DNA elements. The sequence variation and the loss of some regulatory DNA elements could explain the differences of DREBID gene expression previously observed in leaves of drought tolerant (clone 14) and susceptible (clone 22) clones of C. canephora. In fact, both clones 14 and 22, have one same CcDREBID allelic sequence (hp15), and diverge at a second allele. Thus, the CcDREBID allele in the tolerant 14 (hp16) was considered to be the favorable/tolerant allele and the allele in 22 (hp17) was inferior/sensitive. The capacity of CcDREBID promoter to control the expression of the uidA reporter gene is under evaluation in transgenic plants of Coffee arabica cv. caturra stably transformed by Agrobacterium tumefaciens mediated gene transfer procedure. Caturra transgenic embryos were placed on a clean bench and subjected to dehydration tests. Preliminary results of bioassays checking GUS (/3-glucuronidase) activities indicate that the observed sequence variations have a direct role in the regulation of CcDREBID expression. The proximal promoter of CcDREBID for the three alleles tested (hp15, hp16 and hp17) equally induced the uidA gene expression, however, expression of uidA under control of the complete CcDREBID promoter was significantly induced in the tolerant allele (hp16) in response to the osmotic stress, whereas, it was not significantly upregulated for the common (hp15) and sensitive alleles (hp17). These results also evidence that the sequence variation present at the first -700 by of CcDREBID promoter do not interfere the regulation activity of the promoter, probably due to the non-overlapping of SNPs and cis-regulatory elements. Though, the higher sequence variation and co-occurrence of SNPs and cis-regulatory elements observed between -700 and -1500 by seems to affect the regulation of CcDREBID promoter in response to drought stress.Support: CAPES COFECUB, INCT-Café, CNPq and ConsOrcio Pesquisa Café. (Texte intégral) conference_item info:eu-repo/semantics/conferenceObject Conference info:eu-repo/semantics/publishedVersion http://agritrop.cirad.fr/574941/1/document_574941.pdf application/pdf Cirad license info:eu-repo/semantics/openAccess https://agritrop.cirad.fr/mention_legale.html