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1.
Electron. j. biotechnol ; 34: 76-82, july. 2018. ilus, graf
Artigo em Inglês | LILACS | ID: biblio-1047373

RESUMO

Background: Jatropha curcas L., as an important strategic biofuel resource with considerable economic potential, has attracted worldwide attention. However, J. curcas has yet to be domesticated. Plant height, an important agronomic trait of J. curcas, has not been sufficiently improved, and the genetic regulation of this trait in J. curcas is not fully understood. Zinc finger proteins (ZFPs), a class of transcription factors, have previously been shown to play critical roles in regulating multiple aspects of plant growth and development and may accordingly be implicated in the genetic regulation of plant height in J. curcas. Results: In this study, we cloned JcZFP8, a C2H2 ZFP gene in J. curcas. We found that the JcZFP8 protein was localized in the nucleus and contained a conserved QALGGH motif in its C2H2 structure. Furthermore, ectopic expression of JcZFP8 under the control of the 35S promoter in transgenic tobacco resulted in dwarf plants with malformed leaves. However, when JcZFP8 was knocked out, the transgenic tobacco did not show the dwarf phenotype. After treatment with the gibberellic acid (GA) biosynthesis inhibitor paclobutrazol (PAC), the dwarf phenotype was more severe than plants that did not receive the PAC treatment, whereas application of exogenous gibberellin3 (GA3) reduced the dwarf phenotype in transgenic plants. Conclusions: The results of this study indicate that JcZFP8 may play a role in J. curcas plant phenotype through GA-related pathways. Our findings may help us to understand the genetic regulation of plant development in J. curcas and to accelerate breeding progress through engineering of the GA metabolic pathway in this plant. How to cite: Shi X,Wu Y, Dai T, et al. JcZFP8, a C2H2 zinc-finger protein gene from Jatropha curcas, influences plant development in transgenic tobacco.


Assuntos
Nicotiana/genética , Jatropha , Desenvolvimento Vegetal , Dedos de Zinco CYS2-HIS2/genética , Reguladores de Crescimento de Plantas/genética , Fatores de Transcrição , Triazóis , Plantas Geneticamente Modificadas/crescimento & desenvolvimento , Clonagem Molecular , Regulação da Expressão Gênica de Plantas , Reação em Cadeia da Polimerase em Tempo Real , Giberelinas
2.
Rev. colomb. biotecnol ; 12(1): 57-63, jul. 2010. tab, graf
Artigo em Espanhol | LILACS | ID: lil-590645

RESUMO

La rizobacteria Azospirillum brasilense basa su capacidad promotora del crecimiento vegetal en la producciónde auxinas y otras hormonas, entre ellas el ácido antranílico (AA). En este trabajo se determinó el efectodel AA (0, 500, 1000, 3000 y 5000 ppm) en el crecimiento y la acumulación de biomasa del híbrido de maíz83G66 en condiciones de invernadero. El AA de 500 a 3000 ppm promovió un mayor crecimiento (área foliary altura de planta), y el AA de 1000 y 3000 ppm incrementó significativamente la biomasa seca en maíz encomparación con el testigo. El 90% de la asimilación del AA en las plantas ocurrió durante los primeros 10días después del tratamiento.


The plant growth-promoting ability of rhizo-bacterium Azospirillum brasilense is based on production of auxins and other hormones, among them outstanding antranilic acid (AA). In this work we determined the antranilic acid (0, 500, 1000, 3000, and 5000 ppm) effects on maize growth and dry biomass accumulation under greenhouse conditions using the hybrid 83G66. From 500 to 3000 ppm of AA significantly increased plant growth (leaf area and plant height) while 1000 and 3000 ppm of AA significantly increased dry biomass accumulation in maize compared with control (0 ppm). The 90 % of AA in maize plants was assimilated during the early 10 days after treatment.


Assuntos
Reguladores de Crescimento de Plantas/análise , Reguladores de Crescimento de Plantas/farmacologia , Reguladores de Crescimento de Plantas/genética , Reguladores de Crescimento de Plantas/química , Zea mays/crescimento & desenvolvimento
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