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Somatic Embryogenesis and Plantlet Regeneration in the Carica papaya L. cv. Eksotika

A highly efficient protocol for regeneration of Carica papaya L. cv. Eksotika somatic embryos from immature zygotic embryos was developed. This study was designed to overcome the obstacles in regeneration of somatic embryos from immature zygotic embryos of “Eksotika”, especially problems associated...

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Autores principales: Al-Shara, Baker, Taha, Rosna Mat, Mohamad, Jamaludin, Elias, Hashimah, Khan, Asif
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7154855/
https://www.ncbi.nlm.nih.gov/pubmed/32178429
http://dx.doi.org/10.3390/plants9030360
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author Al-Shara, Baker
Taha, Rosna Mat
Mohamad, Jamaludin
Elias, Hashimah
Khan, Asif
author_facet Al-Shara, Baker
Taha, Rosna Mat
Mohamad, Jamaludin
Elias, Hashimah
Khan, Asif
author_sort Al-Shara, Baker
collection PubMed
description A highly efficient protocol for regeneration of Carica papaya L. cv. Eksotika somatic embryos from immature zygotic embryos was developed. This study was designed to overcome the obstacles in regeneration of somatic embryos from immature zygotic embryos of “Eksotika”, especially problems associated with formation of better root quality and callus formation at the base of somatic embryos. Somatic embryos were generated by incubation of immature zygotic embryos in half-strength salt Murashige and Skoog (MS) medium with full-strength vitamins supplemented with 7.5 mg L(−1) 2,4-D, 100 mg L(−1) L-glutamine, 50 mg L(−1) myo-inositol, 45 mg L(−1) adenine sulphate, 0.33% gelrite, and 6% sucrose, followed by transfer to maturation medium consisting of ½ MS medium supplemented with 5 mg L(−1) phloroglucinol, 100 mg L(−1) L-glutamine, 100 mg L(−1) myo-inositol, 68 mg L(−1) adenine sulphate, 0.38% gelrite, and 3% sucrose. After that, well-formed somatic embryos were transferred to MS medium containing 3% sucrose and 0.8% agar for shoot production. The embryos were elongated in MS medium supplemented with 1 mg L(−1) gibberellic acid, 0.5 mg L(−1) indole-3-butyric acid, 100 mg L(−1) myo-inositol, and 3.76 mg L(−1) riboflavin. Root regeneration was achieved on MS medium containing 7.9 mg L(−1) phloroglucinol and supported with vermiculite after 4 days of cultivation on ½ MS medium with 2 mg L(−1) indole-3-butyric acid. After the rooting phase, in vitro plantlets were acclimatized in peat moss soil.
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spelling pubmed-71548552020-04-21 Somatic Embryogenesis and Plantlet Regeneration in the Carica papaya L. cv. Eksotika Al-Shara, Baker Taha, Rosna Mat Mohamad, Jamaludin Elias, Hashimah Khan, Asif Plants (Basel) Article A highly efficient protocol for regeneration of Carica papaya L. cv. Eksotika somatic embryos from immature zygotic embryos was developed. This study was designed to overcome the obstacles in regeneration of somatic embryos from immature zygotic embryos of “Eksotika”, especially problems associated with formation of better root quality and callus formation at the base of somatic embryos. Somatic embryos were generated by incubation of immature zygotic embryos in half-strength salt Murashige and Skoog (MS) medium with full-strength vitamins supplemented with 7.5 mg L(−1) 2,4-D, 100 mg L(−1) L-glutamine, 50 mg L(−1) myo-inositol, 45 mg L(−1) adenine sulphate, 0.33% gelrite, and 6% sucrose, followed by transfer to maturation medium consisting of ½ MS medium supplemented with 5 mg L(−1) phloroglucinol, 100 mg L(−1) L-glutamine, 100 mg L(−1) myo-inositol, 68 mg L(−1) adenine sulphate, 0.38% gelrite, and 3% sucrose. After that, well-formed somatic embryos were transferred to MS medium containing 3% sucrose and 0.8% agar for shoot production. The embryos were elongated in MS medium supplemented with 1 mg L(−1) gibberellic acid, 0.5 mg L(−1) indole-3-butyric acid, 100 mg L(−1) myo-inositol, and 3.76 mg L(−1) riboflavin. Root regeneration was achieved on MS medium containing 7.9 mg L(−1) phloroglucinol and supported with vermiculite after 4 days of cultivation on ½ MS medium with 2 mg L(−1) indole-3-butyric acid. After the rooting phase, in vitro plantlets were acclimatized in peat moss soil. MDPI 2020-03-12 /pmc/articles/PMC7154855/ /pubmed/32178429 http://dx.doi.org/10.3390/plants9030360 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Al-Shara, Baker
Taha, Rosna Mat
Mohamad, Jamaludin
Elias, Hashimah
Khan, Asif
Somatic Embryogenesis and Plantlet Regeneration in the Carica papaya L. cv. Eksotika
title Somatic Embryogenesis and Plantlet Regeneration in the Carica papaya L. cv. Eksotika
title_full Somatic Embryogenesis and Plantlet Regeneration in the Carica papaya L. cv. Eksotika
title_fullStr Somatic Embryogenesis and Plantlet Regeneration in the Carica papaya L. cv. Eksotika
title_full_unstemmed Somatic Embryogenesis and Plantlet Regeneration in the Carica papaya L. cv. Eksotika
title_short Somatic Embryogenesis and Plantlet Regeneration in the Carica papaya L. cv. Eksotika
title_sort somatic embryogenesis and plantlet regeneration in the carica papaya l. cv. eksotika
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7154855/
https://www.ncbi.nlm.nih.gov/pubmed/32178429
http://dx.doi.org/10.3390/plants9030360
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