Analysis of the CcUNK8 orphan gene from Coffea canephora in Genetic Transformation of Setaria viridis

Like in many higher plants, bioinformatics analyses of coffee ESTs and gene sequences showed that around 30% of them are novel in the sense that their corresponding sequences (nucleic or putative translated protein) do not exhibit similarity with those already deposited in public databases. Recent concepts called such sequences as "no hits" or "orphan" genes, and postulate that they resulted of plant specific and adaptive responses regarding stresses and adverse environmental conditions that occurred during the evolution of species. Our work is focused on the identification and functional characterization of coffee orphan genes which may have a high potential for innovation and biotechnological applications either for coffee itself but also for other higher plants. In the frame of identifying candidate genes for drought-tolerance in coffee, several orphan genes (herein called Unk for Unknown) were previously identified. For example, this was the case of CcUNK8 gene that showed higher over-expression under drought in leaves of drought-tolerant clones of C. canephora than in those of the drought-susceptible clone. Aiming to identify the functions of CcUNK8 protein, this gene was cloned in an expression vector used to transformed embryogenic callus of Setaria viridis by Agrobacterium tumefaciens. Thirteen T0 transformed plants of S. viridis were selected and the presence of TDNA was confirmed by conventional PCR. For these plants, leaf CcUNK8 gene expression was analyzed by RT-qPCR and ranged from 1 to 20. In order to see if CcUNK8 over-expression enhances drought tolerance in S. viridis, physiological and phenological analyses of T2 plants grown under irrigated and non-irrigated conditions were carried out. For all transformed events of S. viridis grown under drought stress, we observed that accumulation of fresh biomass in roots and shoot was higher than in WT (untransformed) plants. These preliminary results, suggesting that CcUNK8 could play in protecting plant against drought, should be confirmed in homozygous T3 of S. viridis that are currently being analyzed. (Texte intégral)

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Main Authors: Duarte, Karoline Estefani, Vieira, Natalia Gomes, Rego, Erica C.S., Martins, Polyana Kelly, Ribeiro, Ana Paula, Cunha, Barbara A.B.D., Molinari, Hugo Bruno Correa, Kobayashi, Adilson Kenji, de Sousa, Carlos A.F., Marraccini, Pierre, Andrade, Alan Carvalho
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Subjects:F30 - Génétique et amélioration des plantes, H50 - Troubles divers des plantes, F60 - Physiologie et biochimie végétale,
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spelling dig-cirad-fr-5749782018-10-12T21:48:06Z http://agritrop.cirad.fr/574978/ http://agritrop.cirad.fr/574978/ Analysis of the CcUNK8 orphan gene from Coffea canephora in Genetic Transformation of Setaria viridis. Duarte Karoline Estefani, Vieira Natalia Gomes, Rego Erica C.S., Martins Polyana Kelly, Ribeiro Ana Paula, Cunha Barbara A.B.D., Molinari Hugo Bruno Correa, Kobayashi Adilson Kenji, de Sousa Carlos A.F., Marraccini Pierre, Andrade Alan Carvalho. 2014. In : 11th Solanaceae Conference: book of abstracts, Porto Seguro, Brazil, November 2-6, 2014. Embrapa, UESC, UFLA, Ciba. s.l. : s.n., Résumé, 171. Solanaceae Conference. 11, Porto Seguro, Brésil, 2 Novembre 2014/6 Novembre 2014. Researchers Analysis of the CcUNK8 orphan gene from Coffea canephora in Genetic Transformation of Setaria viridis Duarte, Karoline Estefani Vieira, Natalia Gomes Rego, Erica C.S. Martins, Polyana Kelly Ribeiro, Ana Paula Cunha, Barbara A.B.D. Molinari, Hugo Bruno Correa Kobayashi, Adilson Kenji de Sousa, Carlos A.F. Marraccini, Pierre Andrade, Alan Carvalho 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 Like in many higher plants, bioinformatics analyses of coffee ESTs and gene sequences showed that around 30% of them are novel in the sense that their corresponding sequences (nucleic or putative translated protein) do not exhibit similarity with those already deposited in public databases. Recent concepts called such sequences as "no hits" or "orphan" genes, and postulate that they resulted of plant specific and adaptive responses regarding stresses and adverse environmental conditions that occurred during the evolution of species. Our work is focused on the identification and functional characterization of coffee orphan genes which may have a high potential for innovation and biotechnological applications either for coffee itself but also for other higher plants. In the frame of identifying candidate genes for drought-tolerance in coffee, several orphan genes (herein called Unk for Unknown) were previously identified. For example, this was the case of CcUNK8 gene that showed higher over-expression under drought in leaves of drought-tolerant clones of C. canephora than in those of the drought-susceptible clone. Aiming to identify the functions of CcUNK8 protein, this gene was cloned in an expression vector used to transformed embryogenic callus of Setaria viridis by Agrobacterium tumefaciens. Thirteen T0 transformed plants of S. viridis were selected and the presence of TDNA was confirmed by conventional PCR. For these plants, leaf CcUNK8 gene expression was analyzed by RT-qPCR and ranged from 1 to 20. In order to see if CcUNK8 over-expression enhances drought tolerance in S. viridis, physiological and phenological analyses of T2 plants grown under irrigated and non-irrigated conditions were carried out. For all transformed events of S. viridis grown under drought stress, we observed that accumulation of fresh biomass in roots and shoot was higher than in WT (untransformed) plants. These preliminary results, suggesting that CcUNK8 could play in protecting plant against drought, should be confirmed in homozygous T3 of S. viridis that are currently being analyzed. (Texte intégral) conference_item info:eu-repo/semantics/conferenceObject Conference info:eu-repo/semantics/publishedVersion http://agritrop.cirad.fr/574978/1/document_574978.pdf application/pdf Cirad license info:eu-repo/semantics/openAccess https://agritrop.cirad.fr/mention_legale.html
institution CIRAD FR
collection DSpace
country Francia
countrycode FR
component Bibliográfico
access En linea
databasecode dig-cirad-fr
tag biblioteca
region Europa del Oeste
libraryname Biblioteca del CIRAD Francia
language eng
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
Duarte, Karoline Estefani
Vieira, Natalia Gomes
Rego, Erica C.S.
Martins, Polyana Kelly
Ribeiro, Ana Paula
Cunha, Barbara A.B.D.
Molinari, Hugo Bruno Correa
Kobayashi, Adilson Kenji
de Sousa, Carlos A.F.
Marraccini, Pierre
Andrade, Alan Carvalho
Analysis of the CcUNK8 orphan gene from Coffea canephora in Genetic Transformation of Setaria viridis
description Like in many higher plants, bioinformatics analyses of coffee ESTs and gene sequences showed that around 30% of them are novel in the sense that their corresponding sequences (nucleic or putative translated protein) do not exhibit similarity with those already deposited in public databases. Recent concepts called such sequences as "no hits" or "orphan" genes, and postulate that they resulted of plant specific and adaptive responses regarding stresses and adverse environmental conditions that occurred during the evolution of species. Our work is focused on the identification and functional characterization of coffee orphan genes which may have a high potential for innovation and biotechnological applications either for coffee itself but also for other higher plants. In the frame of identifying candidate genes for drought-tolerance in coffee, several orphan genes (herein called Unk for Unknown) were previously identified. For example, this was the case of CcUNK8 gene that showed higher over-expression under drought in leaves of drought-tolerant clones of C. canephora than in those of the drought-susceptible clone. Aiming to identify the functions of CcUNK8 protein, this gene was cloned in an expression vector used to transformed embryogenic callus of Setaria viridis by Agrobacterium tumefaciens. Thirteen T0 transformed plants of S. viridis were selected and the presence of TDNA was confirmed by conventional PCR. For these plants, leaf CcUNK8 gene expression was analyzed by RT-qPCR and ranged from 1 to 20. In order to see if CcUNK8 over-expression enhances drought tolerance in S. viridis, physiological and phenological analyses of T2 plants grown under irrigated and non-irrigated conditions were carried out. For all transformed events of S. viridis grown under drought stress, we observed that accumulation of fresh biomass in roots and shoot was higher than in WT (untransformed) plants. These preliminary results, suggesting that CcUNK8 could play in protecting plant against drought, should be confirmed in homozygous T3 of S. viridis that are currently being analyzed. (Texte intégral)
format conference_item
topic_facet F30 - Génétique et amélioration des plantes
H50 - Troubles divers des plantes
F60 - Physiologie et biochimie végétale
author Duarte, Karoline Estefani
Vieira, Natalia Gomes
Rego, Erica C.S.
Martins, Polyana Kelly
Ribeiro, Ana Paula
Cunha, Barbara A.B.D.
Molinari, Hugo Bruno Correa
Kobayashi, Adilson Kenji
de Sousa, Carlos A.F.
Marraccini, Pierre
Andrade, Alan Carvalho
author_facet Duarte, Karoline Estefani
Vieira, Natalia Gomes
Rego, Erica C.S.
Martins, Polyana Kelly
Ribeiro, Ana Paula
Cunha, Barbara A.B.D.
Molinari, Hugo Bruno Correa
Kobayashi, Adilson Kenji
de Sousa, Carlos A.F.
Marraccini, Pierre
Andrade, Alan Carvalho
author_sort Duarte, Karoline Estefani
title Analysis of the CcUNK8 orphan gene from Coffea canephora in Genetic Transformation of Setaria viridis
title_short Analysis of the CcUNK8 orphan gene from Coffea canephora in Genetic Transformation of Setaria viridis
title_full Analysis of the CcUNK8 orphan gene from Coffea canephora in Genetic Transformation of Setaria viridis
title_fullStr Analysis of the CcUNK8 orphan gene from Coffea canephora in Genetic Transformation of Setaria viridis
title_full_unstemmed Analysis of the CcUNK8 orphan gene from Coffea canephora in Genetic Transformation of Setaria viridis
title_sort analysis of the ccunk8 orphan gene from coffea canephora in genetic transformation of setaria viridis
publisher s.n.
url http://agritrop.cirad.fr/574978/
http://agritrop.cirad.fr/574978/1/document_574978.pdf
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