Micropropaga??o e an?lises bioqu?micas e fitoqu?micas de Physalis peruviana L.
| Ano de defesa: | 2018 |
|---|---|
| Autor(a) principal: | |
| Orientador(a): | |
| Banca de defesa: | |
| Tipo de documento: | Dissertação |
| Tipo de acesso: | Acesso aberto |
| Idioma: | por |
| Instituição de defesa: |
Universidade Estadual de Feira de Santana
|
| Programa de Pós-Graduação: |
Mestrado Acad?mico em Recursos Gen?ticos Vegetais
|
| Departamento: |
DEPARTAMENTO DE CI?NCIAS BIOL?GICAS
|
| País: |
Brasil
|
| Palavras-chave em Português: | |
| Palavras-chave em Inglês: | |
| Área do conhecimento CNPq: | |
| Link de acesso: | http://tede2.uefs.br:8080/handle/tede/754 |
Resumo: | Physalis peruviana L. (Solanaceae) is a fruit herbaceous, which has been consolidating in the small fruit market due to its nutritional, medicinal potentialities and relevant concentration of vitamins, minerals and secondary metabolites of interest to the pharmaceutical industry. The barriers to its production are the short reproductive cycle, the involvement of the fruits by pests and the lack of studies for the species. Micropropagation is an alternative for the propagation of medicinal species, since this technique allows the production of a large number of seedlings with phytosanitary quality, besides being a tool for genetic improvement and for phytochemical studies. This study aims to evaluate the in vitro morphogenesis of P. peruviana and to analyze the biochemical and phytochemical profile of the species in different cultures. Cotyledon node, cotyledon, leaf, epicotyl, hypocotyl and root explants were inoculated in half-saline MS culture medium supplemented with BAP (0,00; 2,22; 4,44; 6,66 and 8,88?M), plus 30 gL-1 of sucrose and 7 gL-1 of agar; and the explant cotyledonary node was submitted to (0,00; 2,22; 4,44; 6,66; 8,88; 13,32; 17,76 and 22,20 ?M), plus 30 gL-1 of sucrose and 7 gL-1 of agar. It was verified that the cotyledon node submitted to the concentration of 12,50 ?M BAP is the best source of explant, with regeneration of the shoots via direct organogenesis, and the leaf is the most efficient explant for the indirect organogenesis in concentrations of 4,44 ?M BAP. Histological analysis proved the pathways of regeneration. The shoots from the direct organogenesis were rooted in vitro in MS? medium free of plant regulator, and the microplants acclimatized in vegetal soil, reached 100% survival at 90 days of acclimatization. Biochemical and phytochemical analyzes of stem, root and leaf explants were carried out in vitro and ex vitro. The analysis showed that in vitro cultivation favors the synthesis of proteins and reducer sugars in leaf and root tissues. The metabolite rutin is produced in leaf explants in greenhouse. |
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Brito, Alone Lima5219040456883508309568http://lattes.cnpq.br/7398279864316232Mascarenhas, Lilian Marcia Santana2019-05-07T21:16:49Z2018-06-05MASCARENHAS, Lilian Marcia Santana. Micropropaga??o e an?lises bioqu?micas e fitoqu?micas de Physalis peruviana L. 2018. 75 f. Disserta??o (Mestrado Acad?mico em Recursos Gen?ticos Vegetais) - Universidade Estadual de Feira de Santana, Feira de Santana, 2018.http://tede2.uefs.br:8080/handle/tede/754Physalis peruviana L. (Solanaceae) is a fruit herbaceous, which has been consolidating in the small fruit market due to its nutritional, medicinal potentialities and relevant concentration of vitamins, minerals and secondary metabolites of interest to the pharmaceutical industry. The barriers to its production are the short reproductive cycle, the involvement of the fruits by pests and the lack of studies for the species. Micropropagation is an alternative for the propagation of medicinal species, since this technique allows the production of a large number of seedlings with phytosanitary quality, besides being a tool for genetic improvement and for phytochemical studies. This study aims to evaluate the in vitro morphogenesis of P. peruviana and to analyze the biochemical and phytochemical profile of the species in different cultures. Cotyledon node, cotyledon, leaf, epicotyl, hypocotyl and root explants were inoculated in half-saline MS culture medium supplemented with BAP (0,00; 2,22; 4,44; 6,66 and 8,88?M), plus 30 gL-1 of sucrose and 7 gL-1 of agar; and the explant cotyledonary node was submitted to (0,00; 2,22; 4,44; 6,66; 8,88; 13,32; 17,76 and 22,20 ?M), plus 30 gL-1 of sucrose and 7 gL-1 of agar. It was verified that the cotyledon node submitted to the concentration of 12,50 ?M BAP is the best source of explant, with regeneration of the shoots via direct organogenesis, and the leaf is the most efficient explant for the indirect organogenesis in concentrations of 4,44 ?M BAP. Histological analysis proved the pathways of regeneration. The shoots from the direct organogenesis were rooted in vitro in MS? medium free of plant regulator, and the microplants acclimatized in vegetal soil, reached 100% survival at 90 days of acclimatization. Biochemical and phytochemical analyzes of stem, root and leaf explants were carried out in vitro and ex vitro. The analysis showed that in vitro cultivation favors the synthesis of proteins and reducer sugars in leaf and root tissues. The metabolite rutin is produced in leaf explants in greenhouse.Physalis peruviana L. (Solanaceae) ? uma frut?fera herb?cea, que vem se consolidando no mercado de pequenas frutas em virtude das suas potencialidades nutricionais, medicinais e relevante concentra??o de vitaminas, sais minerais e metab?litos secund?rios de interesse ? ind?stria farmac?utica. As limita??es ? sua produ??o s?o o ciclo reprodutivo curto, o acometimento dos frutos por pragas e a car?ncia de estudos para a esp?cie. A micropropaga??o constitui-se numa alternativa para propaga??o de esp?cies medicinais, visto que esta t?cnica permite a produ??o de um grande n?mero de mudas com qualidade fitossanit?ria, al?m de se constituir uma ferramenta para o melhoramento gen?tico e para estudos fitoqu?micos. Esse estudo se prop?s a avaliar a morfog?nese in vitro de P. peruviana e analisar o perfil bioqu?mico e fitoqu?mico da esp?cie em diferentes cultivos. Explantes de n? cotiledonar, cotil?done, folha, epic?tilo, hipoc?tilo e raiz foram inoculados em meio de cultura MS com metade das concentra??es salinas e suplementado com BAP (0,00; 2,22; 4,44; 6,66 e 8,88?M),acrescido de 30 g.L-1de sacarose e 7 g.L-1 de ?gar; e o explante n? cotiledonar foi submetido ? (0,00; 2,22; 4,44; 6,66; 8,88; 13,32; 17,76 e 22,20 ?M). Verificou-se que o n? cotiledonar submetido ? concentra??o de 12,50 ?M de BAP ? a melhor fonte de explante, com regenera??o dos brotos via organog?nese direta, e a folha ? o explante mais eficiente para a organog?nese indireta em concentra??es de 4,44 ?M de BAP. A an?lise histol?gica comprovou as vias de regenera??o. Os brotos provenientes da organog?nese direta foram enraizados in vitro em meio MS? isento de regulador vegetal,e as microplantas aclimatizadas em terra vegetal, alcan?aram 100% de sobreviv?ncia aos 90 dias da aclimatiza??o. Realizou-se an?lises bioqu?micas e fitoqu?micas dos explantes caule, raiz e folhas in vitro e ex vitro. As an?lises evidenciaram que o cultivo in vitro favorece a s?ntese de prote?nas e a??cares redutores em tecidos de folhas e ra?zes. O metab?lito rutina ? produzido em explantes foliares em casa de vegeta??o.Submitted by Ricardo Cedraz Duque Moliterno (ricardo.moliterno@uefs.br) on 2019-05-07T21:16:49Z No. of bitstreams: 1 30.09 disserta??o final. pdf. gr?fica e CD.pdf: 1424025 bytes, checksum: a96c5b62a0afc9fb5ed6d6966d252e3a (MD5)Made available in DSpace on 2019-05-07T21:16:49Z (GMT). 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| dc.title.por.fl_str_mv |
Micropropaga??o e an?lises bioqu?micas e fitoqu?micas de Physalis peruviana L. |
| title |
Micropropaga??o e an?lises bioqu?micas e fitoqu?micas de Physalis peruviana L. |
| spellingShingle |
Micropropaga??o e an?lises bioqu?micas e fitoqu?micas de Physalis peruviana L. Mascarenhas, Lilian Marcia Santana Cultura de tecidos Organog?nese BAP Metab?litos secund?rios Rutina Tissue culture Organogenesis Secondary metabolites Rutin CIENCIAS BIOLOGICAS::BIOLOGIA GERAL |
| title_short |
Micropropaga??o e an?lises bioqu?micas e fitoqu?micas de Physalis peruviana L. |
| title_full |
Micropropaga??o e an?lises bioqu?micas e fitoqu?micas de Physalis peruviana L. |
| title_fullStr |
Micropropaga??o e an?lises bioqu?micas e fitoqu?micas de Physalis peruviana L. |
| title_full_unstemmed |
Micropropaga??o e an?lises bioqu?micas e fitoqu?micas de Physalis peruviana L. |
| title_sort |
Micropropaga??o e an?lises bioqu?micas e fitoqu?micas de Physalis peruviana L. |
| author |
Mascarenhas, Lilian Marcia Santana |
| author_facet |
Mascarenhas, Lilian Marcia Santana |
| author_role |
author |
| dc.contributor.advisor1.fl_str_mv |
Brito, Alone Lima |
| dc.contributor.advisor1ID.fl_str_mv |
52190404568 |
| dc.contributor.authorID.fl_str_mv |
83508309568 |
| dc.contributor.authorLattes.fl_str_mv |
http://lattes.cnpq.br/7398279864316232 |
| dc.contributor.author.fl_str_mv |
Mascarenhas, Lilian Marcia Santana |
| contributor_str_mv |
Brito, Alone Lima |
| dc.subject.por.fl_str_mv |
Cultura de tecidos Organog?nese BAP Metab?litos secund?rios Rutina |
| topic |
Cultura de tecidos Organog?nese BAP Metab?litos secund?rios Rutina Tissue culture Organogenesis Secondary metabolites Rutin CIENCIAS BIOLOGICAS::BIOLOGIA GERAL |
| dc.subject.eng.fl_str_mv |
Tissue culture Organogenesis Secondary metabolites Rutin |
| dc.subject.cnpq.fl_str_mv |
CIENCIAS BIOLOGICAS::BIOLOGIA GERAL |
| description |
Physalis peruviana L. (Solanaceae) is a fruit herbaceous, which has been consolidating in the small fruit market due to its nutritional, medicinal potentialities and relevant concentration of vitamins, minerals and secondary metabolites of interest to the pharmaceutical industry. The barriers to its production are the short reproductive cycle, the involvement of the fruits by pests and the lack of studies for the species. Micropropagation is an alternative for the propagation of medicinal species, since this technique allows the production of a large number of seedlings with phytosanitary quality, besides being a tool for genetic improvement and for phytochemical studies. This study aims to evaluate the in vitro morphogenesis of P. peruviana and to analyze the biochemical and phytochemical profile of the species in different cultures. Cotyledon node, cotyledon, leaf, epicotyl, hypocotyl and root explants were inoculated in half-saline MS culture medium supplemented with BAP (0,00; 2,22; 4,44; 6,66 and 8,88?M), plus 30 gL-1 of sucrose and 7 gL-1 of agar; and the explant cotyledonary node was submitted to (0,00; 2,22; 4,44; 6,66; 8,88; 13,32; 17,76 and 22,20 ?M), plus 30 gL-1 of sucrose and 7 gL-1 of agar. It was verified that the cotyledon node submitted to the concentration of 12,50 ?M BAP is the best source of explant, with regeneration of the shoots via direct organogenesis, and the leaf is the most efficient explant for the indirect organogenesis in concentrations of 4,44 ?M BAP. Histological analysis proved the pathways of regeneration. The shoots from the direct organogenesis were rooted in vitro in MS? medium free of plant regulator, and the microplants acclimatized in vegetal soil, reached 100% survival at 90 days of acclimatization. Biochemical and phytochemical analyzes of stem, root and leaf explants were carried out in vitro and ex vitro. The analysis showed that in vitro cultivation favors the synthesis of proteins and reducer sugars in leaf and root tissues. The metabolite rutin is produced in leaf explants in greenhouse. |
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2018 |
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2018-06-05 |
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2019-05-07T21:16:49Z |
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info:eu-repo/semantics/masterThesis |
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MASCARENHAS, Lilian Marcia Santana. Micropropaga??o e an?lises bioqu?micas e fitoqu?micas de Physalis peruviana L. 2018. 75 f. Disserta??o (Mestrado Acad?mico em Recursos Gen?ticos Vegetais) - Universidade Estadual de Feira de Santana, Feira de Santana, 2018. |
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http://tede2.uefs.br:8080/handle/tede/754 |
| identifier_str_mv |
MASCARENHAS, Lilian Marcia Santana. Micropropaga??o e an?lises bioqu?micas e fitoqu?micas de Physalis peruviana L. 2018. 75 f. Disserta??o (Mestrado Acad?mico em Recursos Gen?ticos Vegetais) - Universidade Estadual de Feira de Santana, Feira de Santana, 2018. |
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por |
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UEFS |
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Brasil |
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Universidade Estadual de Feira de Santana |
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