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1.
Biosci. j. (Online) ; 30(4): 1231-1240, july/aug. 2014. tab, graf
Article in Portuguese | LILACS | ID: biblio-967559

ABSTRACT

Pyrostegia venusta (Ker-Gawl.) Miers (Bignoniaceae) é uma espécie com expressiva dispersão em quase todo o sul e sudeste do Brasil, muito utilizada na medicina popular e considerada uma planta invasora. O potencial fitotóxico do extrato hidroalcoólico das flores de P. venusta foi testado por meio de bioensaios de germinação (pré e pósemergência) e de ação tóxica sobre o índice mitótico de sementes de Lactuca sativa (Asteraceae) (alface). A triagem fitoquímica foi realizada para averiguação de substâncias presentes no extrato floral. As diferentes concentrações do extrato mostraram alteração nos diferentes índices de germinação, no comprimento radicular e interferência sobre o índice mitótico. A triagem fitoquímica mostrou a presença de substâncias como terpenos, esteroides, flavonoides, taninos condensados e saponinas, compostos que podem estar associados diretamente com os resultados de fitotoxicidade e citotoxicidade observados. P. venusta possui componentes aleloquímicos capazes de prejudicar a germinação e crescimento radicular de alface.


Pyrostegia venusta (Ker-Gawl.) Miers (Bignoniaceae) is a species with a wide distribution in nearly all of Southern and Southeastern Brazil, has long been used in folk medicine and is considered an invasive plant. The phytotoxic potential of a hydroalcoholic extract of the flowers of P. venusta was evaluated by the germination (pre and post-emergence) and the phytotoxicity bioassays (mitotic index) on the test plant Lactuca sativa (Asteraceae) (lettuce). A phytochemical screening was performed to identify the components of the floral extract. Different concentrations of the extract caused changes in the germination parameters, the root length and the mitotic index. The phytochemical screening indicated the presence of substances such as terpenes, sterols, flavonoids, tannins and saponins, which are compounds that may be associated directly with the results of cytotoxicity and phytotoxicity observed. P. venusta has allelochemical components capable of impairing the germination and root growth of lettuce.


Subject(s)
Lettuce , Bignoniaceae , Allelopathy
2.
Bol. latinoam. Caribe plantas med. aromát ; 9(4)jul. 2010. ilus, tab, graf
Article in English | LILACS | ID: lil-613279

ABSTRACT

Diamides are a class of metabolites that occurring in some Meliaceae plants, in Aglaia spp for example, with an ample body of biological activities, being insecticidal and herbicidal two of the most important. In our program of search for botanical pesticides, a series of N,N´-di-(4-R-phenyl)-alkanediamides was evaluated for its herbicidal activity. Many of the analogues tested exhibited moderate to good herbicidal activity both pre-emergence and post-emergence and have been found to inhibit energetic metabolism of pre-emergence weeds. The structure-activity relationships were probed by substitution on the benzene ring. Among the variations investigated, it was found that maximal herbicidal activity was obtained by substitution of –F, -CN and -Br at the aromatic portion and by n=2 of the aliphatic long chain. This last number of carbons (n=2) substitution was the key for the inhibitory activity.


Diamidas son una clase de metabolitos que estan presentes en plantas perteneciente a la familia de la Meliaceas, en Aglaia por ejemplo, poseen un amplio cuerpo de actividades biologicas, siendo la insecticida y la herbicida dos de las mas importantes. En nuestro programa para la busqueda de pesticidas botanicos, una serie de N,N’-di-(4-R-phenyl)-alkanodiamidas se evaluo para su actividad herbicida. Muchos de los analogos exhibieron desde buenas a moderadas actividades, tanto como pre-emergentes como post-emergentes y ademas se encontro que inhiben el metabolismo pre-emergente energetico de malezas. La relacion estructura-actividad fue probada por sustitución sobre al anillo aromatico. Entre las variaciones investigadas, se encontro que la maxima actividad herbicida se obtuvo por sustitución de F, CN y Br en la porcion aromatica y por n=2 del largo de la cadena alifatica. Este ultimo numero de carbonos de sustitución (n=2) fue clave para la actividad inhibitoria.


Subject(s)
Diamide/pharmacology , Meliaceae/chemistry , Plants/growth & development , Plants , Aglaia/chemistry , Herbicides/pharmacology , Lolium/growth & development , Lolium , Solanum lycopersicum/growth & development , Solanum lycopersicum , Plant Roots/growth & development , Plant Roots , Plant Growth Regulators/pharmacology , Seeds/growth & development , Seeds
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