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Registro Completo |
Biblioteca(s): |
Embrapa Amazônia Oriental. |
Data corrente: |
19/12/2000 |
Data da última atualização: |
15/09/2010 |
Autoria: |
DONALISIO, M. G. R.; DUARTE, F. R.; ZULLO, M. A. T.; ANGELUCCI, E.; OLIVEIRA, M. M. |
Título: |
Programa integrado de pesquisa: plantas aromáticas e medicinais. |
Ano de publicação: |
1985 |
Fonte/Imprenta: |
São Paulo: Secretaria de Agricultura e Abastecimento-Coordenadoria da Pesquisa Agropecuária, 1985. |
Páginas: |
9 p. |
Idioma: |
Português |
Palavras-Chave: |
Brasil; Drug plants; Plant aromatica; Sao Paulo. |
Thesagro: |
Planta Medicinal; Programa de Pesquisa. |
Thesaurus Nal: |
essential oil crops; research projects. |
Categoria do assunto: |
-- |
Marc: |
LEADER 00750nam a2200253 a 4500 001 1382262 005 2010-09-15 008 1985 bl uuuu u0uu1 u #d 100 1 $aDONALISIO, M. G. R. 245 $aPrograma integrado de pesquisa$bplantas aromáticas e medicinais. 260 $aSão Paulo: Secretaria de Agricultura e Abastecimento-Coordenadoria da Pesquisa Agropecuária$c1985 300 $a9 p. 650 $aessential oil crops 650 $aresearch projects 650 $aPlanta Medicinal 650 $aPrograma de Pesquisa 653 $aBrasil 653 $aDrug plants 653 $aPlant aromatica 653 $aSao Paulo 700 1 $aDUARTE, F. R. 700 1 $aZULLO, M. A. T. 700 1 $aANGELUCCI, E. 700 1 $aOLIVEIRA, M. M.
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Embrapa Amazônia Oriental (CPATU) |
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Registro Completo
Biblioteca(s): |
Embrapa Florestas. |
Data corrente: |
10/06/2022 |
Data da última atualização: |
11/07/2022 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 2 |
Autoria: |
ZANELLA, L. B.; DEGENHARDT, J.; STEINER, N.; TOMASI, J.; KESTRING, D. R.; QUOIRIN, M. |
Afiliação: |
LAUDIANE BRUNA ZANELLA, Federal University of Parana; JULIANA DEGENHARDT GOLDBACH, CNPF; NEUSA STEINER, Federal University of Santa Catarina; JÉSSICA TOMASI, Federal University of Parana; DAIANE RIGONI, CNPF; MARGUERITE QUOIRIN, Federal University of Parana. |
Título: |
Initiation of somatic embryogenesis in Pinus caribaea var. hondurensis using mature female gametophytes as explants. |
Ano de publicação: |
2022 |
Fonte/Imprenta: |
South African Journal of Botany, v. 149, p. 124-133, 2022. |
DOI: |
https://doi.org/10.1016/j.sajb.2022.05.053 |
Idioma: |
Português |
Conteúdo: |
ABSTRACT: Due to the difficulties of harvesting immature cones in genetic breeding orchards, such as high costs and the considerable time required, this study aimed to evaluate the somatic embryogenesis (SE) initiation of Pinus caribaea var. hondurensis using the mature female gametophyte as the initial explant. The basic medium for embryogenesis initiation was composed of QL (Quoirin and Lepoivre, 1977) nutrients, sucrose, myo-inositol, glutamine, casein hydrolisate, thiamine, 2,4-D, BAP and agar. This medium was compared with DCR (Gupta and Durzan, 1985) and WV5 (Coke, 1996) media, supplemented or not with 0.1 g L?1 folic acid (FA). Afterwards, three concentrations of 2,4-D (10, 20 and 30 ?M) combined or not with BAP (2, 4 and 8 ?M) were tested. After 90 days the percentages of explants with embryogenic tissue (ET), embryo-like structures and oxidation were evaluated. We observed somatic tissue initiation` on mature female gametophytes. On QL medium supplemented with FA, the initiation was observed on up to 42% of female gametophytes. The combination of 10 ?M 2,4-D and 4 ?M BAP resulted in the highest initiation rate. The formation of ET was confirmed in all treatments by a histochemical test. Embryo-like structures developed on QL medium supplemented with FA, were first transferred to basic medium supplemented with 1.5 g L?1 AC for 30 days and finally to the same medium supplemented with 10% polyethylene glycol 3350 and 120 µM abscisic acid. The expression of SERK-1 and GER-1 genes was analyzed. SERK-1 was expressed only in the ET, while GER-1 was expressed in both the embryogenic and non-embryogenic tissues (non-ET). However, the somatic embryos studied through morphological and histochemical tests proved to be abnormal and did not develop further. MenosABSTRACT: Due to the difficulties of harvesting immature cones in genetic breeding orchards, such as high costs and the considerable time required, this study aimed to evaluate the somatic embryogenesis (SE) initiation of Pinus caribaea var. hondurensis using the mature female gametophyte as the initial explant. The basic medium for embryogenesis initiation was composed of QL (Quoirin and Lepoivre, 1977) nutrients, sucrose, myo-inositol, glutamine, casein hydrolisate, thiamine, 2,4-D, BAP and agar. This medium was compared with DCR (Gupta and Durzan, 1985) and WV5 (Coke, 1996) media, supplemented or not with 0.1 g L?1 folic acid (FA). Afterwards, three concentrations of 2,4-D (10, 20 and 30 ?M) combined or not with BAP (2, 4 and 8 ?M) were tested. After 90 days the percentages of explants with embryogenic tissue (ET), embryo-like structures and oxidation were evaluated. We observed somatic tissue initiation` on mature female gametophytes. On QL medium supplemented with FA, the initiation was observed on up to 42% of female gametophytes. The combination of 10 ?M 2,4-D and 4 ?M BAP resulted in the highest initiation rate. The formation of ET was confirmed in all treatments by a histochemical test. Embryo-like structures developed on QL medium supplemented with FA, were first transferred to basic medium supplemented with 1.5 g L?1 AC for 30 days and finally to the same medium supplemented with 10% polyethylene glycol 3350 and 120 µM abscisic acid. The expression of SERK-1 and G... Mostrar Tudo |
Palavras-Chave: |
Embryogenic tissues; GER-1; QL medium; SERK-1; Tecidos embriogênicos. |
Thesagro: |
Ácido Fólico. |
Thesaurus NAL: |
Folic acid; Pinus caribaea var. hondurensis. |
Categoria do assunto: |
K Ciência Florestal e Produtos de Origem Vegetal |
Marc: |
LEADER 02667naa a2200289 a 4500 001 2143947 005 2022-07-11 008 2022 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.1016/j.sajb.2022.05.053$2DOI 100 1 $aZANELLA, L. B. 245 $aInitiation of somatic embryogenesis in Pinus caribaea var. hondurensis using mature female gametophytes as explants.$h[electronic resource] 260 $c2022 520 $aABSTRACT: Due to the difficulties of harvesting immature cones in genetic breeding orchards, such as high costs and the considerable time required, this study aimed to evaluate the somatic embryogenesis (SE) initiation of Pinus caribaea var. hondurensis using the mature female gametophyte as the initial explant. The basic medium for embryogenesis initiation was composed of QL (Quoirin and Lepoivre, 1977) nutrients, sucrose, myo-inositol, glutamine, casein hydrolisate, thiamine, 2,4-D, BAP and agar. This medium was compared with DCR (Gupta and Durzan, 1985) and WV5 (Coke, 1996) media, supplemented or not with 0.1 g L?1 folic acid (FA). Afterwards, three concentrations of 2,4-D (10, 20 and 30 ?M) combined or not with BAP (2, 4 and 8 ?M) were tested. After 90 days the percentages of explants with embryogenic tissue (ET), embryo-like structures and oxidation were evaluated. We observed somatic tissue initiation` on mature female gametophytes. On QL medium supplemented with FA, the initiation was observed on up to 42% of female gametophytes. The combination of 10 ?M 2,4-D and 4 ?M BAP resulted in the highest initiation rate. The formation of ET was confirmed in all treatments by a histochemical test. Embryo-like structures developed on QL medium supplemented with FA, were first transferred to basic medium supplemented with 1.5 g L?1 AC for 30 days and finally to the same medium supplemented with 10% polyethylene glycol 3350 and 120 µM abscisic acid. The expression of SERK-1 and GER-1 genes was analyzed. SERK-1 was expressed only in the ET, while GER-1 was expressed in both the embryogenic and non-embryogenic tissues (non-ET). However, the somatic embryos studied through morphological and histochemical tests proved to be abnormal and did not develop further. 650 $aFolic acid 650 $aPinus caribaea var. hondurensis 650 $aÁcido Fólico 653 $aEmbryogenic tissues 653 $aGER-1 653 $aQL medium 653 $aSERK-1 653 $aTecidos embriogênicos 700 1 $aDEGENHARDT, J. 700 1 $aSTEINER, N. 700 1 $aTOMASI, J. 700 1 $aKESTRING, D. R. 700 1 $aQUOIRIN, M. 773 $tSouth African Journal of Botany$gv. 149, p. 124-133, 2022.
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