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[Studies on chemical constituents in roots of Rumex dentatus].

OBJECTIVE: To investigate the active constituents from Rumex dentatus. METHOD: Compounds were isolated by silica gel, Sephadex LH -20 and ODS column chromatography and identified by chemical and spectroscopic methods. RESULT: Ten compounds were obtained and identified as helonioside A (1), gallic acid (2), isovanillic acid (3), p-hydroxycinnamic acid (4), succinic acid (5), n-butyl-beta-D-fructopyranoside (6), quercetin (7), hexadecanoic acid 2, 3-dihydroxy propyl ester (8), beta-sitosterol (9) and daucosterol (10). CONCLUSION: Compounds 1, 3-6 and 8 were isolated from the genus of Rumex for the first time.

Fructose↗

Ethylene Sensitivity and Response Sensor Expression in Petioles of Rumex Species at Low O2 and High CO2 Concentrations.

Rumex palustris, a flooding-tolerant plant, elongates its petioles in response to complete submergence. This response can be partly mimicked by enhanced ethylene levels and low O2 concentrations. High levels of CO2 do not markedly affect petiole elongation in R. palustris. Experiments with ethylene synthesis and action inhibitors demonstrate that treatment with low O2 concentrations enhances petiole extension by shifting sensitivity to ethylene without changing the rate of ethylene production. The expression level of the R. palustris gene coding for the putative ethylene receptor (RP-ERS1) is up-regulated by 3% O2 and increases after 20 min of exposure to a low concentration of O2, thus preceding the first significant increase in elongation observable after 40 to 50 min. In the flooding-sensitive species Rumex acetosa, submergence results in a different response pattern: petiole growth of the submerged plants is the same as for control plants. Exposure of R. acetosa to enhanced ethylene levels strongly inhibits petiole growth. This inhibitory effect of ethylene on R. acetosa can be reduced by both low levels of O2 and/or high concentrations of CO2.

Journal Article↗

A kinetic analysis of the effects of gibberellic Acid, zeatin, and abscisic Acid on leaf tissue senescence in rumex.

Hormones which inhibit senescence in Rumex leaf tissue in the dark include gibberellic acid and the cytokinin zeatin. Abscisic acid accelerates senescence in this tissue. Other workers have proposed that cytokinins, but not gibberellins, interact with abscisic acid in senescing Rumex leaf tissue. The present study reinvestigates the question of interaction using measurements of chlorophyll degradation kinetics as parameters of senescence rate and draws the conclusion that neither zeatin nor gibberellic acid interact with abscisic acid in this system. In support of this conclusion are these results. Zeatin clearly cannot overcome the effects of abscisic acid when hormone solutions are replaced every other day. The kinetics of chlorophyll breakdown for tissue treated with unreplaced saturating zeatin solutions is different from that of tissue exposed to saturating zeatin plus abscisic acid. The observed rates of chlorophyll breakdown for tissue treated with abscisic acid and zeatin agree closely with predicted rates using a multiplicative model for independent action of the two hormones.Zeatin solutions, when replaced every other day, show up to a 550-fold increase in effective concentration in the retardation of senescence. Less than a 10-fold increase could be accounted for by the addition of more zeatin molecules to the tissue. A nonbiological inactivation of zeatin or the production of an inhibitor of zeatin action by the tissue could not be demonstrated. It seems that zeatin is metabolically inactivated or sequestered in this tissue. The possible physiological significance of the inactivation of cytokinins in leaf tissue is discussed.

Journal Article↗

Gastroprotective and antiulcerogenic effects of Rumex patientia L. extract.

Gastroprotective and antiulcerogenic effects of the aqueous extract of Rumex patientia L. roots (D-1) were investigated in rats and compared to non-steroidal antiinflammatory drugs (NSAIDs). Whereas oral administration of high doses of NSAIDs caused stomach damage, D-1 (aqueous extract of Rumex patientia roots, 150 and 500 mg/kg) and nimesulid (100 and 300 mg/kg) did not cause any damage. In rats, the number of stress ulcers induced by the administration of 150 mg/kg of D-1 were identical to that of the control group. However, compared to the control group, the number of stress ulcers decreased 1.9 times and the size of ulceration areas decreased 1.1 times in the group treated with 500 mg/kg of D-1.

Animals↗

Acute oxalate poisoning attributable to ingestion of curly dock (Rumex crispus) in sheep.

Ten of 100 mature ewes were afflicted with acute oxalate toxicosis within 40 hours after being temporarily penned in a lot that contained considerable growing Rumex crispus (curly dock). Clinical signs of toxicosis included excess salivation, tremors, ataxia, and recumbency. Affected ewes were markedly hypocalcemic and azotemic. Oxalate crystals were not observed in urine. Gross postmortem lesions were minimal and nondiagnostic in 2 ewes that died peracutely, but perirenal edema and renal tubular degeneration were clearly observable in ewes euthanatized on the third day of toxicosis. Diagnosis of oxalate toxicosis was confirmed by histopathologic findings. Samples of Rumex spp contained 6.6 to 11.1% oxalic acid on a dry-weight basis, a concentration comparable with that in other oxalate-containing plants that have caused acute oxalate toxicosis.

Acute Kidney Injury↗

Effect of Rumex nepalensis extracts on histamine, acetylcholine, carbachol, bradykinin, and PGs evoked skin reactions in rabbits.

The antihistaminic, anticholinergic, antibradykinin, and/or antiprostaglandin activity of aqueous and the alcoholic leaf extracts of the plant Rumex nepalensis were tested on the prepared site on the back of rabbits, using a control and a test site. Aqueous extract was found to reduce the mean size of the wheal produced by histamine, acetylcholine, carbachol, and bradykinin. The alcoholic extract reduced the size of the wheal produced by histamine, acetylcholine and carbachol. The results indicate that Rumex nepalensis may have antihistaminic, anticholinergic, and/or antibradykinin activity.

Acetylcholine↗

Screening extracts of Achyranthes japonica and Rumex crispus for activity against various plant pathogenic fungi and control of powdery mildew.

Methanol extracts of fresh materials of 183 plants were screened for in vivo antifungal activity against Magnaporthe grisea, Corticium sasaki, Botrytis cinerea, Phytophthora infestans, Puccinia recondita and Erysiphe graminis f sp hordei. Among them, 33 plant extracts showed disease-control efficacy of more than 90% against at least one of six plant diseases. The methanol extracts of Achyranthes japonica (whole plant) and Rumex crispus (roots) at concentrations greater than 11 g fresh weight of plant tissue per litre of aqueous Tween 20 solution effectively controlled the development of barley powdery mildew caused by E graminis f sp hordei in an in vivo assay using plant seedlings. At a concentration of 300 g fresh weight of plant tissue per litre of Tween 20 solution, the two extracts were as efficient as the fungicide fenarimol (30 mg litre(-1)) and more active than the fungicide polyoxin B (100 and 33 mg litre(-1)) against Sphaerotheca fuliginea on cucumber plants in glasshouse trials.

Achyranthes↗

Antibacterial efficacy of Rumex nepalensis Spreng. roots.

The antibacterial property of Rumex nepalensis Spreng. was evaluated against some strains of bacteria. The methanol extract of the roots (tested at 200-1000 micro g/disc) showed significant concentration-dependent antibacterial activity.

Anti-Bacterial Agents↗

Reduced rates of sequence evolution of Y-linked satellite DNA in Rumex (Polygonaceae).

One characteristic of sex chromosomes is the accumulation of a set of different types of repetitive DNA sequences in the Y chromosomes. However, little is known about how this occurs or about how the absence of recombination affects the subsequent evolutionary fate of the repetitive sequences in the Y chromosome. Here we compare the evolutionary pathways leading to the appearance of three different families of satellite-DNA sequences within the genomes of Rumex acetosa and R. papillaris, two dioecious plant species with a complex XX/XY(1)Y(2) sex-chromosome system. We have found that two of these families, one autosomic (the RAE730 family) and one Y-linked (the RAYSI family), arose independently from the ancestral duplication of the same 120-bp repeat unit. Conversely, a comparative analysis of the three satellite-DNA families reveals no evolutionary relationships between these two and the third, RAE180, also located in the Y chromosomes. However, we have demonstrated that, regardless of the mechanisms that gave rise to these families, satellite-DNA sequences have different evolutionary fates according to their location in different types of chromosomes. Specifically, those in the Y chromosomes have evolved at half the rate of those in the autosomes, our results supporting the hypothesis that satellite DNAs in nonrecombining Y chromosomes undergo lower rates of sequence evolution and homogenization than do satellite DNAs in autosomes.

Base Sequence↗

Expression of alpha-expansin genes during root acclimations to O2 deficiency in Rumex palustris.

Thirteen alpha-expansin genes were isolated from Rumex palustris , adding to the six already documented for this species. Five alpha-expansin genes were selected for expression studies in various organs/tissues of R. palustris , with a focus on roots exposed to aerated or O2)-deficient conditions, using real-time RT-PCR. Several cases of differential expression of alpha-expansin genes in the various root types of R. palustris were documented, and the identity of the dominant transcript differed between root types (i.e., tap root vs. lateral roots vs. adventitious roots). Several genes were expressed differentially in response to low O2. In situ hybridizations showed expansin mRNA expression in the oldest region of the tap root was localized to cells near the vascular cambium; this being the first report of expansin expression associated with secondary growth in roots. In situ hybridization also showed abundant expression of expansin mRNA in the most apical 1 mm of adventitious roots. Such early expression of expansin mRNA in cells soon after being produced by the root apex presumably enables cell wall loosening in the elongation zone of roots. In addition, expression of some expansin mRNAs increased in 'mature zones' of roots; these expansins might be involved in root hair formation or in formation of lateral root primordia. The present findings support the notion that large gene families of alpha-expansins enable flexibility in expression for various organs and tissues as a normal part of plant development, as well as in response to abiotic stress.

Acclimatization↗

Spatial variation in Bacillus thuringiensis/cereus populations within the phyllosphere of broad-leaved dock (Rumex obtusifolius) and surrounding habitats.

The aim of this study was to determine the prevalence and toxin gene diversity of Bacillus thuringiensis/B. cereus in the phyllosphere of broad-leaved dock (Rumex obtusifolius) at a small spatial scale. B. thuringiensis/cereus populations were isolated from the phyllosphere of dock and neighbouring grass and in neighbouring soil using commercially available selective media which avoided the disadvantageous heat-shock selection procedure. The maximum density of B. thuringiensis/cereus in the dock phyllosphere was 1.9 x 10(4) CFU g(-1) but the between-leaf variation in numbers was found to follow a lognormal distribution. B. thuringiensis/cereus was also found at significant densities in soil and the phyllosphere of grass adjacent to the dock plants. PCR screening indicated that genes encoding cry1 toxin were present in the plasmids of 36.9% of B. thuringiensis/cereus isolates tested, 11.9% contained cry2, and none of the dock leaf isolates tested contained cry3, cry4, cry7 or cry8 genes. The diversity of cry genes is similar to that found from other studies focused on other parts of the world. This work is the first concerning the prevalence of B. thuringiensis/cereus on leaves in the UK, finding population sizes of previously unrecorded levels and a greater relative proportion of B. thuringiensis. We have also illustrated that before any ecological function can be investigated, suitable sampling scales need to be considered -- here we have shown that the minimum sampling unit should be individual leaves, to account for the log-normal distribution.

Bacillus cereus↗

Phytochemical screening and pharmacological evaluations for the antifertility effect of the methanolic root extract of Rumex steudelii.

The practice of traditional medicine for the control of fertility in most parts of Ethiopia is based on the uses of plant medicines for many years. The fact that herbal medicines have been employed for such a long time does not guarantee their efficacy and safety. The aim of the present study was, therefore, to carry out phytochemical screening, efficacy and safety studies on one of the traditionally used antifertility plants: Rumex steudelii. The secondary metabolites of the root of this plant were determined. The methanolic extract of the roots of this plant were investigated for their antifertility activity in female rats and oral LD50 was determined in mice. The identification of the secondary metabolites showed that the roots of the plant contained phytosterols and polyphenols. It was found that the extract reduced significantly (p<0.01) the number of litters. It also produced antifertility effect in a dose dependent manner and the contraceptive effect was manifested for a definite period of time. Furthermore, the extract prolonged significantly the estrus cycle (p<0.05) and the diestrous phase (p<0.01) of the rats. The wet weights of the ovaries and uterus were shown to be reduced significantly (p<0.01) and (p<0.05), respectively. The oral LD50 of the extract was found to be 5 g/kg in mice. All these observations suggest that the extract has antifertility effect and is safe at the effective antifertility doses employed in this study.

Animals↗

3 beta,13-dihydroxylated C20 gibberellins from inflorescences of Rumex acetosa L.

Using full scan GC-MS a wide range of gibberellins (GAs) was identified in the young inflorescences of the dioecious species Rumex acetosa L., consistent with the ubiquitous early 13-hydroxylation pathway in both male and female plants. In addition, R. acetosa is the first species in which all three 3beta,13-dihydroxylated C(20)-GAs-GA(18), GA(38) and GA(23)-have been identified in the same organism, suggesting an early 3beta,13-dihydroxylation biosynthesis pathway in this species. Authentic GA(18), GA(38) and GA(23) were synthesized and their effects and that of GA(1), a GA common to both pathways, on the time to inflorescence emergence was investigated. GA(1) accelerated the emergence of inflorescences in both male and female plants. In addition some evidence for biological activity per se of the C(20)-GA(38) was obtained.

Flowers↗

Evaluation of antidiarrhoeal activity Rumex maritimus root.

The partitioned n-hexane, ethylacetate and residual methanol extracts of the root of Rumex maritimus were evaluated for antidiarrhoeal activity in mice using castor oil and serotonin induced diarrhoea and also charcoal motility test at 50, 100 and 200 mg/kg body weight dose. Among these, the methanol extract most significantly prolonged the time for induction of diarrhoea, reduced the frequency of diarrhoeal episodes and also decreased the propulsion of charcoal meal through the gastrointestinal tract.

Animals↗

Resveratrol and two monomethylated stilbenes from Israeli Rumex bucephalophorus and their antioxidant potential.

The roots of Rumex bucephalophorus were analyzed for resveratrol and analogues. Two stilbene-O-methyl derivatives were identified, in addition to resveratrol (3,5,4'-trihydroxystilbene). The stilbene-O-methyl derivatives were shown to be 5,4'-dihydroxy-3-methoxystilbene and 3,5-dihydroxy-4'-methoxystilbene. The antioxidant capacities of all these stilbenes were determined.

Antioxidants↗

A genetic method to resolve gender complements investigations on sex ratios in Rumex acetosa.

The perennial dioecious weed, Rumex acetosa, possesses sex chromosomes (XX in females, XY1Y2 in males). Yet, the operational sex ratios are female-biased. Until now, sex ratio studies in R. acetosa, as in most plants, have relied on data obtained at sexual maturity. To resolve gender among the seeds and nonflowering plants of R. acetosa, a genetic method involving a DNA marker located on both Y chromosomes has now been developed and applied. The results suggest that the sex ratios are about 1 : 1 in the whole seed pool, but that a significant female bias develops by the time of flowering. Since the age of sexually mature plants is two years or more, the time frame during which the female bias present at sexual maturity develops can be several years. It appears that male seeds germinate at a lower rate and males suffer from a greater mortality during the years-long lifespan of R. acetosa. However, there are no considerable sex-related differences in vegetative vigour.

Chromosomes, Plant↗

Studies on the psychopharmacological activities of Rumex nepalensis Spreng. root extract in rats and mice.

The methanol extract of Rumex nepalensis Spreng. (Family - Polygonaceae) was assessed for different psychopharmacological activities in rats and mice by evaluation of general behaviour, exploratory behaviour, muscle relaxant activity and phenobarbitone sodium-induced sleeping time. The extract at doses 200 mg/kg and above exhibited a reduction in spontaneous activity (general behavioural profile), a decrease in exploratory behavioural pattern in the Y-maze and Head-dip tests, a reduction in muscle relaxant activity in rotarod, 30 degrees inclined screen and traction tests, and also potentiated phenobarbitone sodium-induced sleeping time.

Animals↗