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1.
Artículo en Inglés | MEDLINE | ID: mdl-35652893

RESUMEN

Tetradenia riparia is known for its richness in essential oil which has been widely investigated due to its biological activities such as antimicrobial, insecticidal, trypanocidal, antimalarial and antioxidant. The objective of this work was to chemically analyze and evaluate the antifungal and antimycotoxigenic activity of the essential oil and the crude extract of leaves, flower buds and stems of T. riparia from the northwest region of the state of Paraná. The essential oil was obtained by hydrodistillation using a Clevenger-type apparatus. To obtain the crude extract, the leaves, flower buds and stems were pulverized and subjected to a dynamic maceration process using 70% v v-1 ethyl alcohol. Chemical analysis of the essential oil was performed by GC/MS, and chemical identification of the crude extract by UHPLC-ESI/qTOF. Antifungal activity (Rhizopus oryzae, Aspergillus flavus, Aspergillus ochraceus, Penicillium verrucosum and Fusarium graminearum) was performed by broth microdilution and the antimycotoxigenic assay was performed with A. ochraceus and P. verrucosum. Ochratoxin A was extracted by partition with chloroform and quantified by HPLC-FL. The oil yield was 0.29% for leaves, 0.34% for stems and 0.38% for flower buds, and the major compounds were fenchone, ß-caryophyllene, α-cadinol, 14-hydroxy-9- epi-caryophyllene, 9ß,13ß-epoxy-7-abietene, α-cadinol and 6-7-dehydroroyleanone. The main chemical compounds identified in the crude extract were terpenes, anthocyanins, flavonoids, tannins and phenolic acids. The minimum inhibitory concentration (MIC) of oils from leaves, flower buds and stems for the strains tested ranged from 0.87 mg mL-1 to 33.3 mg mL-1, while the minimum fungicidal concentration (MFC) ranged from 6.94 mg mL-1 and 33.3 mg mL-1. The MIC and MFC for ketoconazole, tebuconazole, sorbate and nitrite ranged from 0.05 to 33.3 mg mL-1. The oil and crude extract of leaves, stems and flower buds showed an inhibition of ochratoxin A production for P. verrucosum of approximately 100%.


Asunto(s)
Lamiaceae , Aceites Volátiles , Antocianinas/análisis , Antifúngicos/análisis , Antifúngicos/farmacología , Lamiaceae/química , Pruebas de Sensibilidad Microbiana , Aceites Volátiles/química , Extractos Vegetales/química , Hojas de la Planta/química
2.
Plant Physiol Biochem ; 146: 238-248, 2020 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-31765955

RESUMEN

Plants respond to low temperature stress during cold acclimation, a complex process involving changes in physiological and biochemical modifications. The rose serves as a good model to investigate low temperature responses in perennial ornamentals. In this study, a heterologous apple microarray is used to investigate genome-wide expression profiles in Rosa hybrida subjected to low temperature dark treatment. Transcriptome profiles are determined in floral buds at 0h, 2h, and 12h of low temperature treatment (4 °C). It is observed that a total of 134 transcripts are up-regulated and 169 transcripts are down-regulated in response to low temperature. Interestingly, a total of eight up-regulated genes, including those coding for two cytochrome P450 proteins, two ankyrin repeat family proteins, two metal ion binding proteins, and two zinc finger protein-related transcription factors, along with a single down-regulated gene, coding for a dynamin-like protein, are detected. Transcript profiles of 12 genes known to be involved in cold stress response are also validated using qRT-PCR. Furthermore, expression patterns of the AP2/ERF gene family of transcription factors are investigated in both floral buds and leaves. Overall, AP2/ERFs genes are more rapidly induced in leaves than in floral buds. Moreover, differential expression of several AP2/ERF genes are detected earlier in vegetative rather than in reproductive tissues. These findings highlight important roles of various low temperature response genes in mediating cold acclimation, thereby allowing roses to adapt to low temperatures, but without adversely affecting flower bud development and subsequent flowering, while vegetative tissues undergo early adaptation to low temperatures.


Asunto(s)
Rosa , Frío , Perfilación de la Expresión Génica , Regulación de la Expresión Génica de las Plantas , Genoma de Planta , Proteínas de Plantas , Temperatura , Transcriptoma
3.
Rev. colomb. ciencias quim. farm ; 47(1): 37-52, ene.-abr. 2018. tab, graf
Artículo en Portugués | LILACS | ID: biblio-959996

RESUMEN

RESUMO Este trabalho avalia as propriedades-físico químicas do óleo essencial dos botões florais seco do cravo-da-índia (Syzygium aromaticum) que são encontradas no Municipio de São Luís, Maranhão. Extraiu-se quantitativamente o óleo essencial por hidrodestilação. Determinaram-se as propriedades físico-químicas do óleo essencial (densidade, índice de refração, solubilidade, cor e aparência) e atividade citotóxica frente às larvas da Artemia salina. Caracterizou-se analiticamente o óleo por cromatografia gasosa acoplada a espectrómetro de massas (CG-EM). Os resul tados mostram que o melhor tempo e o rendimento do óleo foram correspondente mente 4 horas e 4,33 % de massa por volume. A partir disso foi possível identificar 5 componentes, sendo a presença majoritária do eugenol que logo foi confirmada pelas técnicas espectroscópica. Na identificação do componente majoritário e dos demais componentes, bem como suas quantificações, as técnicas foram precisas e os métodos eficientes, proporcionando um bom desempenho analítico nas determinações.


Summary This work evaluates the physical-chemical properties of the essential oil of the dry floral buds of clove (Syzygium aromaticum) that are found in the Municipality of Saint Louis, Maranhão. The essential oil was quantitatively extracted by hydrodistil lation. The physicochemical properties of the essential oil (density, refractive index, solubility, color and appearance) and cytotoxic activity against larvae of Artemia salina were determined. The oil was analytically characterized by gas chromatog raphy coupled to mass spectrometer (GC-MS). The results show that the best time and yield of the oil were correspondingly 4 hours and 4.33% mass per volume. From this, it was possible to identify five components, being the major presence of eugenol that soon was confirmed by the spectroscopic techniques. In the identification of the major component and the other components, as well as their quantifications, the techniques were precise and the methods efficient, providing a good analytical performance in the determinations.

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