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At least 19 recordsLinked to original sources

TLC-spectrophotometric assay of the main glycosides of red squill, a specific rodenticide.

Red squill bulbs, with reported specific rodenticidal properties, have been assayed for their content of the two main glycosides, scilliroside and scillaren A, by a method depending on the separation of the glycosides from purified plant extracts by tlc followed by spectrophotometric (uv and visible) determination of the individual glycosides in the eluates. The method was found convenient for assessment of the potency of red squill bulbs.

Bufanolides↗

Urginea maritima (squill) toxicity.

A 55 year-old female ingested two bulbs of Urginea maritime (squill) plant as a folk remedy for her arthritic pains. Her past history was significant for Hashimoto thyroiditis and she was hypothyroid upon presentation. Subsequent effects resembling those seen with cardiac glycoside intoxication included nausea, vomiting, seizures, hyperkalemia, atrioventricular block and ventricular arrhythmias resembling digitalis toxicity. A serum digoxin level by an enzyme immunoassay method was 1.59 ng/mL. Despite supportive treatment and pacing, the patient expired from ventricular arrhythmias 30 h after ingestion. Squill has been recognized since antiquity for the clinical toxicity of its cardiac glycosides, but this appears to be the first report of a fatality since 1966.

Digoxin↗

Micropropagation of squill (Charybdis numidica) through nodule culture.

A micropropagation protocol for squill (Charybdis numidica, Hyacinthaceae) was developed using nodule culture. Nodule formation on leaf sections was induced in liquid Murashige and Skoog (MS) medium supplemented with 20 microM N6-benzylaminopurine (BA) under dark conditions. Nodules were cultured on semi-solid MS medium with factorial combinations of BA (0-40 microM) and alpha-naphthaleneacetic acid (NAA) (0-10 microM) under continuous light. Shoot regeneration from nodules occurred at varying degrees on all media. The highest number of shoots was formed on medium containing 2.5 microM NAA and 20 microM BA, while the maximum number of regenerated bulblets per gram nodule was induced on culture medium supplemented with 2.5 microM NAA alone. Regenerated shoots were successfully rooted at approximately 92% on semi-solid MS medium supplemented with 10 microM indole-3-acetic acid (IAA). Plantlets could be hardened and grew well after transfer to the greenhouse. Chemical analyses showed consistent bufadienolide patterns from cloned plantlets and the mother plant.

Liliaceae↗

Major antifungal activity from the bulbs of Indian squill Urginea indica is a chitinase.

We have identified a chitinase with antifungal activity in the bulbs of the plant Urginea indica(Indian squill) and purified it about 26-fold. The purified preparation contained a Mr 29 kDa protein that was an active growth inhibitor of the fungal pathogens Fusarium oxysporum and Rhizoctonia solani in an in vitro assay. Amino acid sequence analysis of the Mr 29 kDa protein revealed it to be highly homologous to the family 19 glycoside hydrolases, which are known to possess chitinase activity. The U. indica chitinase lacked a cysteine-rich N-terminal domain (characteristic of class I chitinases) and contained a conserved motif indicative of the signature 1 of family 19 glycoside hydrolases. It shared a approximately 70% sequence identity with the 26 kDa endochitinase of Hordeum vulgare, a typical class II chitinase of family 19. The five cysteines in the partial sequence of the Mr 29 kDa chitinase were found to be identical in location to five of the seven cysteines present in the catalytic domain of the H. vulgare enzyme. The molecular weight, the lack of an N-terminal cysteine-rich sequence, and the striking identity to the H. vulgare endochitinase suggest that the Mr 29 kDa U. indica protein is a putative class II chitinase. The antifungal activity is presumably mediated through the chitinolytic activity of the Mr 29 kDa protein.

Amino Acid Sequence↗