Development of new varietal types based on rejuvenation by somatic embryogenesis and propagation by conventional budding or microcuttings in Hevea brasiliensis

Hevea brasiliensis has been the only commercial source of natural rubber for a century. This plant species, which is planted on more than 10 million hectares, is of major importance for the economies of producing countries in Southeast Asia and West Africa. Cloning by budding on rootstocks derived from illegitimate seedlings made it possible to select the best individuals and obtain substantial genetic gain in the 1940s compared to seedling plantations. From the 1970s to date, the development of micropropagation techniques has not led to any commercial application for the multiplication of self-rooted clones. However, some serious leads have been advanced for achieving large-scale multiplication of improved material in the medium term, using biotechnologies. Although their multiplication rate is low, microcuttings and primary somatic embryogenesis techniques produce better quality planting material than budded clones. Conversely, maintained somatic embryogenesis gives a higher multiplication rate, but several developmental parameters of the in vitro plantlets are affected. A combination of embryogenlc callus cryopreservation and indirect secondary somatic embryogenesis has made it possible to reduce the length of time calli are exposed to hormones and the number of proliferation cycles. Although the quality of the in vitro plantlets has been improved, the maintained embryogenesls pathway Involving callus multiplication remains problematic. Combining primary somatic embryogenesis to rejuvenate the planting material and multiplication by budding or microcuttings seems to be an alternative for improving the planting material. Rejuvenated budded clones have been planted On 80 hectares by CIRAD and Michelin. These trials reveal better budding and growth success for four clones compared to conventional budded clones confirming previous results from small-scale trials on eleven clones. At the same time, a team at CATAS has demonstrated the merits of microcuttings from emblings. Besides, a highly efficient transgenesis technique has been developed for Hevea using maintained embryogenic friable callus. Although the quality of the planting material is affected by the regeneration of plants using maintained somatic embryogenesis, this technique remains an essential tool for functional genomics. Functional analyses have been launched for several genes such as transcription factors, an ethylene receptor and genes Involved in the detoxification of activated oxygen species. These three decades of work on rubber tree micropropagation have resulted In primary somatic embryogenesis being considered as an efficient and true-type rejuvenation technique. The rejuvenation of 11 rubber tree clones has led to the establishment of rejuvenated budwood gardens on an agronomy trial scale. This has also resulted in an awareness of the role played by juvenility in planting material vigour and the need to maintain it in the budwood gardens of new selected clones. Maintained somatic embryogenesis entails a risk of somaclonal variation. Based on the results obtained for other woody species recalcitrant to micropropagatlon, an alternative using direct secondary somatic embryogenesis might alleviate the problem. Lastly, cloning own-rooted plants offers major prospects for the selection and multiplication of rootstocks, which will have a substantial future impact in a context of adaptation to climate change.

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Main Authors: Montoro, Pascal, Carron, Marc-Philippe, Granet, Françoise, Lardet, Ludovic, Leclercq, Julie, Dessailly, Florence, Martin, Florence, Uche, E., Rio, Maryannick, Oliver, Gérald
Format: conference_item biblioteca
Language:eng
Published: s.n.
Subjects:F02 - Multiplication végétative des plantes, F30 - Génétique et amélioration des plantes, Hevea brasiliensis, micropropagation, multiplication végétative, régénération in vitro, Embryogénèse somatique, bouturage, http://aims.fao.org/aos/agrovoc/c_3589, http://aims.fao.org/aos/agrovoc/c_24136, http://aims.fao.org/aos/agrovoc/c_8177, http://aims.fao.org/aos/agrovoc/c_34114, http://aims.fao.org/aos/agrovoc/c_36911, http://aims.fao.org/aos/agrovoc/c_25293,
Online Access:http://agritrop.cirad.fr/562814/
http://agritrop.cirad.fr/562814/1/ID562814.pdf
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id dig-cirad-fr-562814
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institution CIRAD FR
collection DSpace
country Francia
countrycode FR
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access En linea
databasecode dig-cirad-fr
tag biblioteca
region Europa del Oeste
libraryname Biblioteca del CIRAD Francia
language eng
topic F02 - Multiplication végétative des plantes
F30 - Génétique et amélioration des plantes
Hevea brasiliensis
micropropagation
multiplication végétative
régénération in vitro
Embryogénèse somatique
bouturage
http://aims.fao.org/aos/agrovoc/c_3589
http://aims.fao.org/aos/agrovoc/c_24136
http://aims.fao.org/aos/agrovoc/c_8177
http://aims.fao.org/aos/agrovoc/c_34114
http://aims.fao.org/aos/agrovoc/c_36911
http://aims.fao.org/aos/agrovoc/c_25293
F02 - Multiplication végétative des plantes
F30 - Génétique et amélioration des plantes
Hevea brasiliensis
micropropagation
multiplication végétative
régénération in vitro
Embryogénèse somatique
bouturage
http://aims.fao.org/aos/agrovoc/c_3589
http://aims.fao.org/aos/agrovoc/c_24136
http://aims.fao.org/aos/agrovoc/c_8177
http://aims.fao.org/aos/agrovoc/c_34114
http://aims.fao.org/aos/agrovoc/c_36911
http://aims.fao.org/aos/agrovoc/c_25293
spellingShingle F02 - Multiplication végétative des plantes
F30 - Génétique et amélioration des plantes
Hevea brasiliensis
micropropagation
multiplication végétative
régénération in vitro
Embryogénèse somatique
bouturage
http://aims.fao.org/aos/agrovoc/c_3589
http://aims.fao.org/aos/agrovoc/c_24136
http://aims.fao.org/aos/agrovoc/c_8177
http://aims.fao.org/aos/agrovoc/c_34114
http://aims.fao.org/aos/agrovoc/c_36911
http://aims.fao.org/aos/agrovoc/c_25293
F02 - Multiplication végétative des plantes
F30 - Génétique et amélioration des plantes
Hevea brasiliensis
micropropagation
multiplication végétative
régénération in vitro
Embryogénèse somatique
bouturage
http://aims.fao.org/aos/agrovoc/c_3589
http://aims.fao.org/aos/agrovoc/c_24136
http://aims.fao.org/aos/agrovoc/c_8177
http://aims.fao.org/aos/agrovoc/c_34114
http://aims.fao.org/aos/agrovoc/c_36911
http://aims.fao.org/aos/agrovoc/c_25293
Montoro, Pascal
Carron, Marc-Philippe
Granet, Françoise
Lardet, Ludovic
Leclercq, Julie
Dessailly, Florence
Martin, Florence
Uche, E.
Rio, Maryannick
Oliver, Gérald
Development of new varietal types based on rejuvenation by somatic embryogenesis and propagation by conventional budding or microcuttings in Hevea brasiliensis
description Hevea brasiliensis has been the only commercial source of natural rubber for a century. This plant species, which is planted on more than 10 million hectares, is of major importance for the economies of producing countries in Southeast Asia and West Africa. Cloning by budding on rootstocks derived from illegitimate seedlings made it possible to select the best individuals and obtain substantial genetic gain in the 1940s compared to seedling plantations. From the 1970s to date, the development of micropropagation techniques has not led to any commercial application for the multiplication of self-rooted clones. However, some serious leads have been advanced for achieving large-scale multiplication of improved material in the medium term, using biotechnologies. Although their multiplication rate is low, microcuttings and primary somatic embryogenesis techniques produce better quality planting material than budded clones. Conversely, maintained somatic embryogenesis gives a higher multiplication rate, but several developmental parameters of the in vitro plantlets are affected. A combination of embryogenlc callus cryopreservation and indirect secondary somatic embryogenesis has made it possible to reduce the length of time calli are exposed to hormones and the number of proliferation cycles. Although the quality of the in vitro plantlets has been improved, the maintained embryogenesls pathway Involving callus multiplication remains problematic. Combining primary somatic embryogenesis to rejuvenate the planting material and multiplication by budding or microcuttings seems to be an alternative for improving the planting material. Rejuvenated budded clones have been planted On 80 hectares by CIRAD and Michelin. These trials reveal better budding and growth success for four clones compared to conventional budded clones confirming previous results from small-scale trials on eleven clones. At the same time, a team at CATAS has demonstrated the merits of microcuttings from emblings. Besides, a highly efficient transgenesis technique has been developed for Hevea using maintained embryogenic friable callus. Although the quality of the planting material is affected by the regeneration of plants using maintained somatic embryogenesis, this technique remains an essential tool for functional genomics. Functional analyses have been launched for several genes such as transcription factors, an ethylene receptor and genes Involved in the detoxification of activated oxygen species. These three decades of work on rubber tree micropropagation have resulted In primary somatic embryogenesis being considered as an efficient and true-type rejuvenation technique. The rejuvenation of 11 rubber tree clones has led to the establishment of rejuvenated budwood gardens on an agronomy trial scale. This has also resulted in an awareness of the role played by juvenility in planting material vigour and the need to maintain it in the budwood gardens of new selected clones. Maintained somatic embryogenesis entails a risk of somaclonal variation. Based on the results obtained for other woody species recalcitrant to micropropagatlon, an alternative using direct secondary somatic embryogenesis might alleviate the problem. Lastly, cloning own-rooted plants offers major prospects for the selection and multiplication of rootstocks, which will have a substantial future impact in a context of adaptation to climate change.
format conference_item
topic_facet F02 - Multiplication végétative des plantes
F30 - Génétique et amélioration des plantes
Hevea brasiliensis
micropropagation
multiplication végétative
régénération in vitro
Embryogénèse somatique
bouturage
http://aims.fao.org/aos/agrovoc/c_3589
http://aims.fao.org/aos/agrovoc/c_24136
http://aims.fao.org/aos/agrovoc/c_8177
http://aims.fao.org/aos/agrovoc/c_34114
http://aims.fao.org/aos/agrovoc/c_36911
http://aims.fao.org/aos/agrovoc/c_25293
author Montoro, Pascal
Carron, Marc-Philippe
Granet, Françoise
Lardet, Ludovic
Leclercq, Julie
Dessailly, Florence
Martin, Florence
Uche, E.
Rio, Maryannick
Oliver, Gérald
author_facet Montoro, Pascal
Carron, Marc-Philippe
Granet, Françoise
Lardet, Ludovic
Leclercq, Julie
Dessailly, Florence
Martin, Florence
Uche, E.
Rio, Maryannick
Oliver, Gérald
author_sort Montoro, Pascal
title Development of new varietal types based on rejuvenation by somatic embryogenesis and propagation by conventional budding or microcuttings in Hevea brasiliensis
title_short Development of new varietal types based on rejuvenation by somatic embryogenesis and propagation by conventional budding or microcuttings in Hevea brasiliensis
title_full Development of new varietal types based on rejuvenation by somatic embryogenesis and propagation by conventional budding or microcuttings in Hevea brasiliensis
title_fullStr Development of new varietal types based on rejuvenation by somatic embryogenesis and propagation by conventional budding or microcuttings in Hevea brasiliensis
title_full_unstemmed Development of new varietal types based on rejuvenation by somatic embryogenesis and propagation by conventional budding or microcuttings in Hevea brasiliensis
title_sort development of new varietal types based on rejuvenation by somatic embryogenesis and propagation by conventional budding or microcuttings in hevea brasiliensis
publisher s.n.
url http://agritrop.cirad.fr/562814/
http://agritrop.cirad.fr/562814/1/ID562814.pdf
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spelling dig-cirad-fr-5628142024-01-28T19:58:36Z http://agritrop.cirad.fr/562814/ http://agritrop.cirad.fr/562814/ Development of new varietal types based on rejuvenation by somatic embryogenesis and propagation by conventional budding or microcuttings in Hevea brasiliensis. Montoro Pascal, Carron Marc-Philippe, Granet Françoise, Lardet Ludovic, Leclercq Julie, Dessailly Florence, Martin Florence, Uche E., Rio Maryannick, Oliver Gérald. 2011. In : 7th International Symposium on In Vitro Culture and Horticultural Breeding Biotechnological advances in In Vitro Horticultural Breeding IVCHB 2011, Program, Book of abstracts, Participants, September 18-22, 2011, Ghent, Belgium. s.l. : s.n., Résumé, 58. International Symposium on In Vitro Culture and Horticultural Breeding. 7, Gand, Belgique, 18 Septembre 2011/22 Septembre 2011. Development of new varietal types based on rejuvenation by somatic embryogenesis and propagation by conventional budding or microcuttings in Hevea brasiliensis Montoro, Pascal Carron, Marc-Philippe Granet, Françoise Lardet, Ludovic Leclercq, Julie Dessailly, Florence Martin, Florence Uche, E. Rio, Maryannick Oliver, Gérald eng 2011 s.n. 7th International Symposium on In Vitro Culture and Horticultural Breeding Biotechnological advances in In Vitro Horticultural Breeding IVCHB 2011, Program, Book of abstracts, Participants, September 18-22, 2011, Ghent, Belgium F02 - Multiplication végétative des plantes F30 - Génétique et amélioration des plantes Hevea brasiliensis micropropagation multiplication végétative régénération in vitro Embryogénèse somatique bouturage http://aims.fao.org/aos/agrovoc/c_3589 http://aims.fao.org/aos/agrovoc/c_24136 http://aims.fao.org/aos/agrovoc/c_8177 http://aims.fao.org/aos/agrovoc/c_34114 http://aims.fao.org/aos/agrovoc/c_36911 http://aims.fao.org/aos/agrovoc/c_25293 Hevea brasiliensis has been the only commercial source of natural rubber for a century. This plant species, which is planted on more than 10 million hectares, is of major importance for the economies of producing countries in Southeast Asia and West Africa. Cloning by budding on rootstocks derived from illegitimate seedlings made it possible to select the best individuals and obtain substantial genetic gain in the 1940s compared to seedling plantations. From the 1970s to date, the development of micropropagation techniques has not led to any commercial application for the multiplication of self-rooted clones. However, some serious leads have been advanced for achieving large-scale multiplication of improved material in the medium term, using biotechnologies. Although their multiplication rate is low, microcuttings and primary somatic embryogenesis techniques produce better quality planting material than budded clones. Conversely, maintained somatic embryogenesis gives a higher multiplication rate, but several developmental parameters of the in vitro plantlets are affected. A combination of embryogenlc callus cryopreservation and indirect secondary somatic embryogenesis has made it possible to reduce the length of time calli are exposed to hormones and the number of proliferation cycles. Although the quality of the in vitro plantlets has been improved, the maintained embryogenesls pathway Involving callus multiplication remains problematic. Combining primary somatic embryogenesis to rejuvenate the planting material and multiplication by budding or microcuttings seems to be an alternative for improving the planting material. Rejuvenated budded clones have been planted On 80 hectares by CIRAD and Michelin. These trials reveal better budding and growth success for four clones compared to conventional budded clones confirming previous results from small-scale trials on eleven clones. At the same time, a team at CATAS has demonstrated the merits of microcuttings from emblings. Besides, a highly efficient transgenesis technique has been developed for Hevea using maintained embryogenic friable callus. Although the quality of the planting material is affected by the regeneration of plants using maintained somatic embryogenesis, this technique remains an essential tool for functional genomics. Functional analyses have been launched for several genes such as transcription factors, an ethylene receptor and genes Involved in the detoxification of activated oxygen species. These three decades of work on rubber tree micropropagation have resulted In primary somatic embryogenesis being considered as an efficient and true-type rejuvenation technique. The rejuvenation of 11 rubber tree clones has led to the establishment of rejuvenated budwood gardens on an agronomy trial scale. This has also resulted in an awareness of the role played by juvenility in planting material vigour and the need to maintain it in the budwood gardens of new selected clones. Maintained somatic embryogenesis entails a risk of somaclonal variation. Based on the results obtained for other woody species recalcitrant to micropropagatlon, an alternative using direct secondary somatic embryogenesis might alleviate the problem. Lastly, cloning own-rooted plants offers major prospects for the selection and multiplication of rootstocks, which will have a substantial future impact in a context of adaptation to climate change. conference_item info:eu-repo/semantics/conferenceObject Conference info:eu-repo/semantics/publishedVersion http://agritrop.cirad.fr/562814/1/ID562814.pdf text Cirad license info:eu-repo/semantics/openAccess https://agritrop.cirad.fr/mention_legale.html