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At least 19 recordsLinked to original sources

Isolation and Properties of Deoxyribonucleic Acid from Protoplasts of Cell Suspension Cultures of Ammi visnaga and Carrot (Daucus carota).

A procedure is described for the isolation of native DNA from protoplasts of ammi (Ammi visnaga) and carrot (Daucus carota) cells. Protoplasts were produced from 40 grams of fresh cells by enzyme hydrolysis and lysed with sodium dodecyl sulfate. The DNA was purified by treatment with pronase and ribonuclease. Final isolation was achieved by sucrose density gradient centrifugation.The melting temperature of ammi and carrot DNA in 0.15 m NaCl and 15 mm trisodium citrate buffer, pH 7.0, was 84.0 C and 84.5 C, respectively. The molecular weight for ammi DNA was 1.43 x 10(8), and for carrot DNA it was 1.56 x 10(8). Ammi DNA exhibited a single band at 1.690 grams per cubic centimeter in CsCl, whereas carrot DNA showed two bands, one at 1.693 grams per cubic centimeter and another at 1.706 grams per cubic centimeter. Ammi DNA consisted of a doublestranded form, since denaturation of the DNA caused a complete upward shift of 0.020 grams per cubic centimeter.

Journal Article↗

Inhibition of oxalate nephrolithiasis with Ammi visnaga (AI-Khillah).

We investigated the effect of Ammi visnaga seeds on experimentally - induced kidney stones - in male Wistar albino rats. Oxalate nephrolithiasis was experimentally induced by 3% glycolic acid (added in their diet) given for the period of four weeks. A highly significant amount of deposits were found in the kidneys, which were analyzed quantitatively. These deposits were mainly of calcium oxalate in composition. Daily oral (gavage) treatment with Ammi visnaga (500 mg/kg) highly reduced the incidence of nephrolithiasis (calcium oxalate deposition in the kidneys). Ammi visnaga seeds extract showed highly potent diuretic activity. The reduction in body weight, increase in kidneys weight, increase in water intake, decrease in urine output found in glycolic acid control group were prevented to various extent on Ammi visnaga treatment; and the values became to insignificant difference with control group. The changes in weights of liver, heart and lungs of the three groups were insignificant. Uraemia and hyperbilirubinaemia observed in glycolic acid control group were found to be ameliorated by Ammi visnaga seed extract treatment.

Ammi↗

Molecular Cloning, Recombinant Expression, and In Silico Structural Analysis of Cu/Zn-Superoxide Dismutase from Trachyspermum ammi.

Superoxide dismutase (SOD) is an essential antioxidant metalloenzyme that is critical for the cellular defense against oxidative damage, as it scavenges superoxide radicals and maintains the redox status. Cytosolic Cu/Zn-SOD is particularly important in the regulation of oxidative stress among different isoforms in higher plants. While Cu/Zn-SODs from several plant species have been characterized, molecular information is limited for Trachyspermum ammi, a medicinally important member of a family Apiaceae with antioxidant potential.In the present study, an integrated molecular and in silico approach has been taken to clone and analyze a Cu/Zn type SOD gene from T. ammi to get insight into its structural and evolutionary characteristics. PCR amplification yielded an open reading frame of 456 bp encoding a protein of 152 amino acids. Sequence analysis showed that plant Cu/Zn-SODs, especially those from Daucus carota, were highly similar to one another (about 90-95%).Multiple sequence alignment confirmed the presence of conserved catalytic motifs and metal-binding histidine residues, both of which are crucial for enzymatic function. Physicochemical analysis predicted the protein to be stable, hydrophilic and compatible with cytosolic localization. The analysis of secondary structure indicated a predominance of β-strands, consistent with the conserved β-barrel architecture of plant Cu/Zn-SODs.The three-dimensional structure was built by homology modeling using a closely related plant Cu/Zn-SOD template with high sequence identity. Structural validation demonstrated an acceptable stereochemical quality with 86.3% residues in the favored region of Ramachandran plot, satisfactory ERRAT and Verify3D scores, and a low RMSD value of 0.104 Å on structural superimposition. Phylogenetic analysis placed the enzyme in the Apiaceae lineage, suggesting evolutionary conservation among related plant species. In conclusion, this study presents the first molecular and structural characterization of Cu/Zn-SOD from T. ammi and confirms the existence of a conserved structural framework typical of plant Cu/Zn-SODs. These results provide a basis for further studies concerning recombinant expression, enzymatic validation and potential relevance in antioxidant and plant stress biology.

Cloning, Molecular↗

Determination of khellin and visnagin in Ammi visnaga fruits by capillary electrophoresis.

A new, simple and rapid capillary electrophoresis method was developed for the identification and quantitative determination of two medically active constituents-khellin and visnagin-in the extracts of Ammi visnaga fruits. Micellar electrochromatographic separation of khellin and visnagin was carried out using 10 mmol/l borate, 50 mmol/l sodium dodecylsulfate, 25% (v/v) acetonitrile at pH 9 as running buffer. Ammi visnaga fruits were extracted with methanol and the extracts were directly injected without any purification and pre-separation processes. Coumarin was used as internal standard for quantitation and the limits of detection for khellin and visnagin were 2.36 and 1.97 microg/ml, respectively using UV detection at 245 nm.

Ammi↗

Functional expression of cinnamate 4-hydroxylase from Ammi majus L.

Total RNA was isolated from dark-grown cell suspension cultures of Ammi majus L. that had been induced with fungal elicitor or treated with water for control and used as template with cytochrome P450-specific primers for DD-RT-PCR amplifications. A cDNA clone was generated from the elicited transcripts and assigned to cinnamate 4-monooxygenase based on sequence alignments and functional expression in yeast cells. Comparison of the translated polypeptide with database accessions of heterologous cytochrome P450 monooxygenases revealed a high degree of similarity (99.6%) with 98.6% identity to cinnamic acid 4-hydroxylase from parsley, documenting the close evolutionary relationship within the Apiaceae family. Maximal activity of the Ammi hydroxylase in yeast microsomes was determined at 25 degrees C and in the pH range of 6.5-7.0 reaching 2.5 pkat/mg on average. An apparent K(m) of 8.9 microM was determined for cinnamate. Preincubations with psoralen or 8-methoxypsoralen added up to 100 microM in the presence or absence of NADPH hardly affected the turnover rate. A. majus cell cultures accumulate sets of O-prenylated umbelliferones and linear furanocoumarins besides lignin-like compounds upon treatment with elicitor, and cinnamic acid 4-hydroxylase catalyzes the initial reaction leading from the general into the various phenylpropanoid branch pathways. Correspondingly, the hydroxylase transcript abundance was induced in the elicited cells.

Amino Acid Sequence↗

Furanocoumarin biosynthesis in Ammi majus L. Cloning of bergaptol O-methyltransferase.

Plants belonging to the Apiaceae or Rutaceae accumulate methoxylated psoralens, such as bergapten or xanthotoxin, as the final products of their furanocoumarin biosynthesis, and the rate of accumulation depends on environmental and other cues. Distinct O-methyltransferase activities had been reported to methylate bergaptol to bergapten and xanthotoxol to xanthotoxin, from induced cell cultures of Ruta graveolens, Petroselinum crispum and Ammi majus. Bergaptol 5-O-methyltransferase (BMT) cDNA was cloned from dark-grown Ammi majus L. cells treated with a crude fungal elicitor. The translated polypeptide of 38.7 kDa, composed of 354 amino acids, revealed considerable sequence similarity to heterologous caffeic acid 3-O-methyltransferases (COMTs). For homologous comparison, COMT was cloned from A. majus plants and shown to share 64% identity and about 79% similarity with the BMT sequence at the polypeptide level. Functional expression of both enzymes in Escherichia coli revealed that the BMT activity in the bacterial extracts was labile and rapidly lost on purification, whereas the COMT activity remained stable. Furthermore, the recombinant AmBMT, which was most active in potassium phosphate buffer of pH 8 at 42 degrees C, showed narrow substrate specificity for bergaptol (Km SAM 6.5 micro m; Km Bergaptol 2.8 micro m) when assayed with a variety of substrates, including xanthotoxol, while the AmCOMT accepted 5-hydroxyferulic acid, esculetin and other substrates. Dark-grown A. majus cells expressed significant BMT activity which nevertheless increased sevenfold within 8 h upon the addition of elicitor and reached a transient maximum at 8-11 h, whereas the COMT activity was rather low and did not respond to the elicitation. Complementary Northern blotting revealed that the BMT transcript abundance increased to a maximum at 7 h, while only a weak constitutive signal was observed for the COMT transcript. The AmBMT sequence thus represents a novel database accession specific for the biosynthesis of psoralens.

5-Methoxypsoralen↗

Biosynthesis of psoralens. Psoralen 5-monooxygenase activity from elicitor-treated Ammi majus cells.

Microsomes prepared from cultured Ammi majus cells that had been challenged for 14 h with an elicitor derived from the cell walls of Phytophthora megasperma f.sp. glycinea (Pmg) converted psoralen to bergaptol (5-hydroxypsoralen) in the presence of NADPH and oxygen. The enzymatic activity was characterized as an inducible cytochrome-P-450-dependent monooxygenase associated with the endoplasmic reticulum. All of the steps involved in bergapten (5-methoxypsoralen) biosynthesis in Ammi majus have now been demonstrated in vitro. The results suggest that bergaptol and not hydroxymarmesin in the precursor of bergapten.

Carbon Monoxide↗

Elicitor-induced biosynthesis of psoralens in Ammi majus L. suspension cultures. Microsomal conversion of demethylsuberosin into (+)marmesin and psoralen.

Suspension cultures of Ammi majus L. cells produce various linear furanocoumarins in response to treatment with elicitor preparations from either Alternaria carthami Chowdhury or Phytophthora megasperma f.sp. glycinea. Microsomes which were isolated from these cells 14 h after addition of the elicitor efficiently catalyzed the conversion of demethyl [3-14C]suberosin into labelled (+)marmesin in the presence of NADPH and oxygen. In contrast to the chemical cyclization of demethylsuberosin by m-chloroperoxybenzoic acid, the reaction catalyzed by the marmesin synthase proceeded rapidly and no intermediate demethylsuberosin epoxide could be recovered. Significant blue-light-reversible inhibition by carbon monoxide and inhibition by various chemicals known to inhibit reactions dependent on cytochrome P450 suggested that the marmesin synthase is a cytochrome-P450-dependent monooxygenase. Upon prolonged incubation, a subsequent major labelled product originated from (+)marmesin, which was identified as psoralen. The psoralen synthase was also characterized as a cytochrome-P450-dependent monooxygenase. Both the marmesin synthase and the psoralen synthase, as well as enzymes catalyzing the formation of demethylsuberosin and O-prenylumbelliferone from umbelliferone and dimethylallyl diphosphate, were associated with the endoplasmic reticulum in Ammi majus cells and their activities were concomitantly induced by elicitor treatment of the cells. We propose that in vivo these enzymes are active in the lumen of the endoplasmic reticulum from where the furanocoumarin phytoalexins are excreted into the cell culture fluid.

Carbon Monoxide↗

Hypoglycemic effect of aqueous extract of Ammi visnaga in normal and streptozotocin-induced diabetic rats.

The effect of the aqueous extract of Ammi visnaga (Apiaceae) on blood glucose levels was investigated in fasting normal and streptozotocin-induced diabetic rats after single and repeated oral administration. The aqueous extract of Ammi visnaga (AV) at a dose of 20 mg/kg significantly reduced blood glucose in normal rats six hours after a single oral administration (P < 0.005) and nine days after repeated oral administration (P < 0.05). This hypoglycemic effect is more pronounced in streptozotocin (STZ) diabetic rats (P < 0.001). Acute toxicity (LD50) and general behavioural effects of an aqueous extract of AV fruits was studied in mice. The LD50 of intraperitoneal (i.p.) and oral administration was 3.6 and 10.1 g/kg, respectively. These findings suggest that the aqueous extract of AV possess significant hypoglycemic effect in both normal and STZ diabetic rats and support, therefore, its claimed clinical use by the Moroccan population.

Journal Article↗

Preliminary studies on the anti-schistosomal effect of Ammi majus L.

AMMI MAJUS L., a plant belonging to the family Umbellifereae was found to possess a certain antischistosomal effect in mice infected with S. mansoni. This was proved by applying two techniques, the worm burden and the Oogram change. Bergapten, a pure furocoumarin naturally present in Ammi majus was found to have certain schistosomicidal effect.

Animals↗

Cations modulate the substrate specificity of bifunctional class I O-methyltransferase from Ammi majus.

Caffeoyl-coenzyme A O-methyltransferase cDNA was cloned from dark-grown Ammi majus L. (Apiaceae) cells treated with a crude fungal elicitor and the open reading frame was expressed in Escherichia coli. The translated polypeptide of 27.1-kDa shared significant identity to other members of this highly conserved class of proteins and was 98.8% identical to the corresponding O-methyltransferase from parsley. For biochemical characterization, the recombinant enzyme could be purified to apparent homogeneity by metal-affinity chromatography, although the recombinant enzyme did not contain any affinity tag. Based on sequence analysis and substrate specificity, the enzyme classifies as a cation-dependent O-methyltransferase with pronounced preference for caffeoyl coenzyme A, when assayed in the presence of Mg2+-ions. Surprisingly, however, the substrate specificity changed dramatically, when Mg2+ was replaced by Mn2+ or Co2+ in the assays. This effect could point to yet unknown functions and substrate specificities in situ and suggests promiscuous roles for the lignin specific cluster of plant O-methyltransferases.

Acyl Coenzyme A↗

The chemical investigations on the ripe fruits of Ammi visnaga (Lam.) Lamarck growing in Turkey.

Two furanochromones and one furanochromone glycoside were isolated from the fruits of Ammi visnaga (L.) Lam. They were identified as khellin, visnagin, and khellol glycoside by interpretation of spectral analyses. Quantitative determination of furanochromones in A. visnaga (L.) ripe fruits from Hatay region (Turkey) was carried out by ultraviolet spectrophotometry and gas chromatography. In addition, photochemical properties of furanochromones and chemical composition of essential oil were determined.

Ammi↗

Susceptibility of Bovans chicks to low dietary levels of Ammi visnaga and Artemisia herba-alba.

Ammi visnaga seeds and Artemisia herba-alba shoots were fed to 7-d-old Bovans chicks at 2% and 10% of diet for 9 w. The 10% A visnaga seed was toxic but not lethal to chicks and caused a consistently reduced body weight gain, inefficient feed utilization, enterohepatonephropathy, anemia, and alterations of serum aspartate transaminase and creatine kinase activities and cholesterol, total lipid and uric acid concentrations. The depression in growth and damage to vital organs of chicks fed 10% A herba-alba shoots 2% A visnaga seed, or 2% A herba-alba shoots were less marked.

Ammi↗