Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Plant Structures”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 451 records · Page 25Linked to original sources

Phytotoxicity of the tetramic acid metabolite trichosetin.

Trichosetin, a tetramic acid-containing metabolite produced in the dual culture of Trichoderma harzianum and Catharanthus roseus (L.) G. Don callus, was subjected to phytotoxicity assays. In seedling growth assays, trichosetin inhibited root and shoot growth of all five plant species tested by damaging the cell membrane, as evidenced by the dose-dependent increase in electrolyte leakage and lipid peroxidation. Vital staining of trichosetin-treated Nicotiana tabacum BY-2 cells, with rhodamine 123, showed a weaker green fluorescence compared to controls indicating damaging effects on mitochondria. FDA-PI staining, to determine cell viability, indicated that cells of the trichosetin-treated roots were mostly dead.

Cell Survival↗

Volatile constituents of Aristolochia argentina.

The essential oils from leaves, aerial stems and underground organs of Aristolochia argentina Gris., a medicinal plant popularly known as "charrúa", were obtained by hydrodistillation and analyzed by GC and GC/MS. Forty-three components were identified in the oils. All parts of the plant afforded volatile oils characterized by high levels of argentilactone (57-89%) and the presence of undecatriene isomers (0.3-4.0%), these latter compounds providing the essential oils and extracts with an intense particular odor. Terpenes account for the remaining portion of the essential oils (5-29%). Bicyclogermacrene predominates in the aerial parts of the plant, whereas ishwarane is the main terpene of the subterranean organs. Argentilactone, a suspected carcinogenic compound, was also identified in a medicinal commercial tincture of A. argentina.

Alkenes↗

Isolation of DNA from plants with large amounts of secondary metabolites.

Many plant species have high contents of polysaccharides, polyphenols, or other secondary metabolites that can interfere with DNA extraction and purification. These contaminating compounds can lead to poor DNA yield and prevent access by modifying enzymes, such as restriction endonucleases and Taq polymerase. A number of factors, including choice of plant tissue, tissue preparation, and modifications of the extraction buffer, can help in DNA extraction for difficult plant species. This chapter presents some of the DNA extraction protocols developed for various plants.

DNA, Plant↗

A molecular link between stem cell regulation and floral patterning in Arabidopsis.

The homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cell proliferation in Arabidopsis flowers. We show that the floral identity protein LEAFY (LFY), a transcription factor expressed throughout the flower, cooperates with the homeodomain protein WUSCHEL (WUS) to activate AG in the center of flowers. WUS was previously identified because of its role in maintaining stem cell populations in both shoot and floral meristems. The unsuspected additional role of WUS in regulating floral homeotic gene expression supports the hypothesis that floral patterning uses a general meristem patterning system that was present before flowers evolved. We also show that AG represses WUS at later stages of floral development, thus creating a negative feedback loop that is required for the determinate growth of floral meristems.

AGAMOUS Protein, Arabidopsis↗

Ethnoveterinary medical practice for ruminants in the subhumid zone of northern Nigeria.

Ethnoveterinary medical practice is widespread among herdsmen and village livestock producers in northern Nigeria where livestock in the country are concentrated. For most of these livestock owners, modern veterinary inputs and services are not readily available and are relatively expensive. Traditional remedies are locally available and cheaper. Our questioning of 50 herdsmen and village livestock producers revealed that the ingredients used in these indigenous practices include plant extracts, seeds, leaves, barks of trees, tubers and roots of various plants. These are processed in various ways and administered to animals for a variety of disease conditions. More recently used ingredients include kerosene and spent engine oil. Considering the combination of ingredients used by the traditional animal-health practitioners, it is likely that additive, synergistic and nutritional effects might be involved in alleviating the problem of ill-health in animals. Herdsmen and livestock owners readily identify signs of disease (although some common infectious diseases have several signs and may affect various parts of the animal body). Aspects of indigenous health care practices are contrasted with modern veterinary health care.

Animal Diseases↗

Antibacterial and molluscicidal activities of the essential oil of Chrysanthemum viscidehirtum.

The volatile fraction of Chrysanthemum viscidehirtum aerial parts, consisting mainly of limonene, beta-farnesene and many oxygenated sesquiterpenes, was screened for activity against 21 microbial strains. This essential oil exhibited activity against all germs tested, in particular Salmonella typhi and Proteus mirabilis. It also showed molluscicidal activity against Bulinus truncatus.

Animals↗

Hancokinol from Vincetoxicum officinale.

Hancokinol (1), a member of migrated lupane triterpenoids, was isolated from the aerial parts of Vincetoxicum officinale, along with known plant sterols and long chain alkanols.

Humans↗

Major dicaffeoylquinic acids from Artemisia vulgaris.

The two major caffeoylquinic acids, 3,5-di-O-caffeoylquinic acid and 1,5-di-O-caffeoylquinic acid, were new-isolated from the flowering tops of Artemisia vulgaris (yield 2.0% and 0.3% on dry weight, respectively) and characterized by spectroscopic analysis.

Asteraceae↗

Condensed tannins from Myrica gale.

From the aerial parts of the Myrica gale catechin, epicatechin, gallocatechin, epigallocatechin, epigallocatechin-3-O-gallate, gallocatechin-(4 alpha-8)-epicatechin, gallocatechin-(4 alpha-8)-epigallocatechin, and gallocatechin-(4 alpha-8)-gallocatechin-(4 alpha-8)-gallocatechin (1), were isolated. The 1H- and 13C-NMR data of the peracetate derivative of the trimer are reported.

Humans↗

Antibacterial activity of Picrasma javanica.

The methanol extracts of Picrasma javanica, leaves, seeds, stem and root barks were partitioned (petrol, dichloromethane, ethyl acetate, butanol). All obtained extracts and fractions showed a broad spectrum of antibacterial activity, while none was active against the tested moulds.

Anti-Bacterial Agents↗

Antimicrobial activity of Horsfieldia helwigii and Melia azedarach.

The methanol extracts of leaves, root and stem barks of Horsfieldia helwigii and Melia azedarach showed a broad spectrum of antibacterial activity. The activity was increased on fractionation (petrol, dichloromethane, ethyl acetate), particularly in the petrol fraction of the leaves of H. helwigii and dichlorometane fraction of the stem bark of M. azedarach. No activity was shown against tested moulds.

Anti-Bacterial Agents↗