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Rhizobium indigoferae sp. nov. and Sinorhizobium kummerowiae sp. nov., respectively isolated from Indigofera spp. and Kummerowia stipulacea.

Forty-eight rhizobial isolates from root nodules of Indigofera and Kummerowia, two genera of annual or perennial wild legumes growing in the Loess Plateau in north-western China, were characterized by a polyphasic approach. Two main groups, cluster 1 and cluster 2, were defined based upon the results of numerical taxonomy, SDS-PAGE of whole-cell proteins and DNA relatedness. All the isolates within cluster 1 were isolated from Indigofera and they were identified as Rhizobium strains by 16S rRNA gene analysis. DNA relatedness of 29.5-48.9% was obtained among the cluster 1 isolates and the reference strains for defined Rhizobium species. Cluster 2 consisted of isolates from Kummerowia stipulacea and was identified as belonging to Sinorhizobium by 16S rRNA gene analyses. DNA relatedness varied from 5.2 to 41.7% among the isolates of cluster 2 and reference strains for Sinorhizobium species. Considering the existence of distinctive features among these two groups and related species within the genera Rhizobium and Sinorhizobium, we propose two novel species, Rhizobium indigoferae sp. nov. for cluster 1, with isolate CCBAU 71714(T) (= AS 1.3046(T)) as the type strain, and Sinorhizobium kummerowiae sp. nov. for cluster 2, with isolate CCBAU 71042(T) (= AS 1.3045(T)) as the type strain.

Base Composition↗

Insulin sensitizing property of Indigofera mysorensis extract.

Indigofera mysorens is a shrub used for its antidiabetic activity in rural India. Here, we elucidate the antidiabetic potential of Indigofera mysorensis extract. Ethanolic extract of the whole shrub of Indigofera (EEI) at 300 mg/kg for 10 days, produced a 63% reduction in plasma glucose, 41% reduction in plasma triglyceride and 77% reduction in plasma insulin levels in insulin resistant db/db mice, which is better than insulin sensitizer, troglitazone (400 mg/kg). EEI unlike sulphonylureas failed to show any acute hypoglycemic effect in normoglycemic Swiss albino mice (SAM). Even in a chronic study (10 days) in SAM, EEI (300 mg/kg) like insulin sensitizers showed no effect on plasma glucose, but an 81% reduction in plasma insulin levels. When challenged with 3 gm/kg sucrose, SAM treated with EEI (300 mg/kg, 7 days) failed to show any effect on the absorption of sugar, whereas standard drug, acarbose (10 mg/kg) showed 52% reduction in the area under the plasma glucose curve. EEI failed to show any significant transactivation of PPARgamma, a proposed target of synthetic insulin sensitizers. Taken together, our data indicate that the antidiabetic effect of the ethanolic extract of Indigofera is due to its insulin sensitizing property and is clearly different from that of sulfonylurea or acarbose.

Animals↗

Systematic study of the genus Vogesella gen. nov. and its type species, Vogesella indigofera comb. nov.

A blue-pigmented colony that had a metallic copper-colored sheen was isolated in 1973 from a standard spread plate count preparation of oxidation pond sediment. Over the next 11 years, an additional 12 strains of blue-pigmented bacteria were isolated from freshwater samples and compared to several reference strains of bacteria. Morphological and biochemical tests revealed that these 13 isolates were very similar to [Pseudomonas] indigofera ATCC 19706T (T = type strain) and ATCC 14036. A numerical analysis (in which simple matching similarity coefficients were clustered by the unweighted pair group mathematical averaging method) of morphological and biochemical characteristics revealed 90.0% relatedness between the 13 isolates and [P.] indigofera ATCC 19706T and ATCC 14036 and 73.6% relatedness between the 13 isolates and a cluster containing Burkholderia cepacia ATCC 25416T, Janthinobacterium lividum ATCC 12473T, and the Pseudomonas species tested. A phylogenetic analysis, in which both 5S rRNA and 16S rRNA were used, also revealed that the 13 isolates were closely related to each other and to strains ATCC 19706T and ATCC 14036. In addition, both 5S rRNA and 16S rRNA analyses demonstrated that the isolates and strains ATCC 19706T and ATCC 14036 were members of the beta subdivision of the Proteobacteria and were closely related to Chromobacterium violaceum ATCC 12742T but sufficiently distinct to warrant placement in a new genus. Accordingly, we propose that the 13 isolates and strains ATCC 19706T and ATCC 14306 be placed in the genus Vogesella gen. nov., which is named in honor of Otto Voges, who first isolated and described this blue-pigmented eubacterium in 1893. We also propose that [P.] indigofera be renamed Vogesella indigofera comb. nov. and designated the type species of the genus; strain ATCC 19706 is the type strain of this species.

Bacteriological Techniques↗

Studies on the underexploited legumes, Indigofera linifolia and Sesbania bispinosa: nutrient composition and antinutritional factors.

The nutrient composition and antinutritional factors of two Indian tribal pulses, Indigofera linifolia (L.f)Retz. and Sesbania bispinosa (Jacq.) W.F. Wight, were determined. The mature seeds contained 296.6-321.2 g kg-1 crude protein, 47.2-64.2 g kg-1 crude lipid, 56.7-72 g kg-1 crude fiber, 27.6-31.9 g kg-1 ash and 531.3-550.6 g kg-1 carbohydrates. The seeds of Indigofera linifolia were rich in K, Ca, Mn and Cu, whereas Sesbania bispinosa were rich in P and Zn. While albumins and globulins constituted the major proportion of seed proteins in Indigofera linifolia, globulins and glutelins formed the major bulk of seed proteins in Sesbania bispinosa. Seed lipids of both legumes contained a large proportion of unsaturated fatty acids with linoleic acid as the predominant one. These two pulses contained adequate levels of all the essential amino acids except sulpho-amino acids in total seed proteins and globulin fraction of Sesbania bispinosa. The in vitro protein digestibility of the raw seeds of Indigofera linifolia and Sesbania bispinosa were found to be 74.15% and 66.71% and cooked seeds 81.4% and 76.8%, respectively. Antinutritional factors such as total free phenolics, tannins, phytic acid, hydrogen cyanide, trypsin inhibitor and phytohaemagglutinating activities were also analysed.

Amino Acids↗

Isocitrate lyase and malate synthase in Pseudomonas indigofera. I. Suppression and stimulation during growth.

Howes, William V. (Washington State University, Pullman) and Bruce A. McFadden. Isocitrate lyase and malate synthase in Pseudomonas indigofera. I. Suppression and stimulation during growth. J. Bacteriol. 84:1216-1221. 1962.-Specific activities of isocitrate lyase and malate synthase from Pseudomonas indigofera were studied as a function of growth. Each activity maximized in the mid to late exponential phase. Effects upon levels of isocitrate lyase and malate synthase of each of several compounds supplied with ethanol to P. indigofera were next investigated. Compounds tested were glucose, glyoxylate, malate, and yeast extract. Each was added at various concentrations to ethanol. At higher concentrations, glucose, malate, and yeast extract suppressed both enzymatic activities. Malate synthase was more sensitive to suppression. Glyoxylate, at higher concentrations, suppressed isocitrate lyase but substantially stimulated malate synthase. There was no evidence for diauxic growth. Each substrate furnished with ethanol stimulated growth. The possibility that in vivo control of isocitrate lyase activity was partially exerted through feedback inhibition by succinate was examined. Succinate at 5.2 x 10(-3)m inhibited the enzyme in "soluble" preparations. Intracellular succinate concentrations did not vary significantly at each of three growth phases when exogenous succinate was supplied. Thus, regulation of isocitrate lyase activity through feedback inhibition by succinate seems unlikely.

Acetates↗

[A study on taxonomy of rhizobia isolated from Kummerwia sp. and Indigofera sp].

The rhizobial strains isolated from Kummerowia and Indigofera and the known reference strains were classified by performing numerical taxonomy. New isolated strains were divided into two new clusters at 83% similarity level. Based on the numerical taxonomy, additional isolates in each cluster were studied by using SDS-PAGE of whole-cell protein. Twenty-four strains isolated from Kummerowia fell into cluster 1. Twenty strains isolated from Indigofera fell into cluster 2. The results of G + C mol% and DNA homology analysis showed that the DNA homologies between the central strain SH713 and SHL042 and the 13 type strains were less than 61%. Thus, the rhizobial strains from Kummerowia and Indigofera were two new individual species of Rhizobium.

Bacterial Proteins↗

Itaconate, an isocitrate lyase-directed inhibitor in Pseudomonas indigofera.

Enzymes catalyzing steps from ethanol to acetyl-coenzyme A, from malate to pyruvate, and from pyruvate to glucose 6-phosphate were identified in ethanol-grown Pseudomonas indigofera. Enzymes catalyzing the catabolism of glucose to pyruvate via the Entner-Doudoroff pathway were identified in glucose-grown cells. Phosphofructokinase could not be detected in Pseudomonas indigofera. Itaconate, a potent inhibitor of isocitrate lyase, abolished growth of P. indigofera on ethanol at concentrations that had little effect upon growth on glucose. The date obtained through enzyme analyses and studies of itaconate inhibition with both extracts and toluene-treated cells suggest that itaconate selectively inhibits and reduces the specific activity of isocitrate lyase.

Acetate-CoA Ligase↗

Isocitrate lyase and malate synthase in Pseudomonas indigofera. II. Enzyme changes during the phase of adjustment and the early exponential phase.

Howes, William V. (Washington State University, Pullman) and Bruce A. McFadden. Isocitrate lyase and malate synthase in Pseudomonas indigofera. II. Enzyme changes during the phase of adjustment and the early exponential phase. J. Bacteriol.84:1222-1227. 1962.-The differential rates of synthesis (DRS) of malate synthase and isocitrate lyase were investigated at 30 C during the phase of adjustment (lag) and the early exponential phase in Pseudomonas indigofera. Cells grown on ethanol-acetate-yeast extract or succinate-yeast extract were added to a medium containing ethanol or succinate, and the DRS of each enzyme was followed. A reproducible decline in both enzymatic activities occurred after inoculation when a lag in growth was observed. To define the DRS occurring after this decline, a new parameter, epsilon, was defined and calculated for linear segments of a DRS plot. Certain variations of epsilon during DRS suggested that a balance between induction (or derepression) and repression controls, in part at least, malate synthase and isocitrate lyase levels. Effects of chloramphenicol upon enzyme synthesis after the period of expected decline were studied. No degradation or synthesis of malate synthase occurred in the presence of chloramphenicol, although, after degradation, slight synthesis of isocitrate lyase occurred. Acetate, butyrate, ethanol, glyoxylate, and isocitrate did not stimulate production of either enzyme in nongrowing cultures of high cell density. In fact, some degradation of each enzyme occurred.

Acetates↗

Chemoprevention of N-nitrosodiethylamine induced phenobarbitol promoted liver tumors in rat by extract of Indigofera aspalathoides.

The chemopreventive effect of ethanol extract of Indigofera aspalathoides (EIA) on N-nitrosodiethylamine (DEN, 200 mg/kg)-induced experimental liver tumor was investigated in male Wistar rats. Oral administration of ethanol extract of Indigofera aspalathoides (250 mg/kg) effectively suppressed liver tumor induced with DEN as revealed by decrease in the levels of extend of serum glutamate pyruvate transaminase (SGPT), serum glutamate oxaloacetate transaminase (SGOT), alkaline phosphatase (ALP), total bilirubin, gamma glutamate transpeptidase (GGTP), lipid peroxidase (LPO), glutathione peroxidase (Gpx) and glutathione S-transferase (GST) with a concomitant increase in enzymatic antioxidant (superoxide dismutase and catalase) levels when compared to those in liver tumor bearing rats. The histopathological changes of liver sample were compared with respective control. Our results show a significant chemopreventive effect of EIA against DEN induced liver tumor.

Animals↗

OXIDATIVE METABOLISM AND THE GLYOXYLATE CYCLE IN PSEUDOMONAS INDIGOFERA.

McFadden, Bruce A. (Washington State University, Pullman, Wash.) and William V. Howes. Oxidative metabolism and the glyoxylate cycle in Pseudomonas indigofera. J. Bacteriol. 84:72-76. 1962.-Oxidative patterns of Pseudomonas indigofera have been investigated. Intact cells oxidize acetate, ethanol, fumarate, glyoxylate, alpha-ketoglutarate, malate, oxaloacetate, pyruvate, and succinate to greater than 35% of completion. Isocitrate is oxidized to 21% of completion. Citrate is not oxidized by whole cells but is oxidized by cell-free preparations, as are fumarate, isocitrate, malate, and succinate. These patterns are suggestive of the operation of the tricarboxylic acid cycle. Investigations of levels of isocitrate lyase and malate synthase as functions of growth substrate have been conducted. Assays for these enzymes in "soluble" preparations were performed under ostensibly optimal conditions for catalysis. Growth substrates used at 0.3% were: (i) ethanol, (ii) glucose, (iii) succinic acid, and (iv) yeast extract. Specific activities of isocitrate lyase were: for (i) 3.80, (ii) 0.61, (iii) 1.47, and (iv) 1.33; activities of malate synthase were: for (i) 0.18, (ii) 0.032, (iii) 0.021, and (iv) 0.029. Additionally, the isocitrate lyase level from butyrate-grown cells was similar to that for ethanol-grown cells; the specific activity of malate synthase was about 60% as high. Specific activities of these enzymes were reproducible when conditions of sonic disruption were standardized. Longer durations of disruption decreased both activities.

Journal Article↗

Cell-free amino acid-incorporating system from Pseudomonas indigofera.

Shiio, Tsuru (Washington State University, Pullman), and Bruce A. McFadden. Cell-free amino acid-incorporating system from Pseudomonas indigofera. J. Bacteriol. 90:978-983. 1965.-A cell-free preparation from Pseudomonas indigofera incorporated C(14)-phenylalanine and C(14)-leucine into a product which was insoluble in hot trichloroacetic acid. The phenylalanine incorporation process, which had a temperature optimum of 30 C and a pH optimum of 7.6, had many characteristics of protein synthesis. The process depended upon both "ribosomes" and supernatant fraction from centrifugation at 105,000 x g. Incorporation required adenosine triphosphate, apparently depended upon guanosine triphosphate, and was inhibited by chloramphenicol, puromycin, actinomycin, ribonuclease, and deoxyribonuclease. Leucine incorporation was also studied and had many similar characteristics. C(14)-phenylalanine uptake was stimulated by sRNA or polyuridylic acid, and together these substances had a synergistic effect upon stimulation. The incorporation of C(14)-phenylalanine into a product which was precipitated by antiserum to crystalline isocitrate lyase was also observed.

Bacterial Proteins↗

Identification of okra mosaic virus from Indigofera spicata in Nigeria.

Okra mosaic virus (OMV, tymovirus group) was isolated from Indigofera spicata plants growing at the International Institute of Tropical Agriculture (IITA) in Ibadan, Nigeria. Its identity was established on the basis of particle morphology, analysis of viral coat protein and nucleic acid and serology. In reciprocal agar gel diffusion tests, the virus isolate from I. spicata and an OMV isolate from okra in Ibadan (OMV-Ibadan isolate) were found to be serologically identical. However, because the isolates differ in symptom induction in various host plants, the name OMV-Indigofera isolate is suggested. This is the first report on the occurence of OMV in I. spicata.

Animals↗

Smooth muscle contraction induced by Indigofera dendroides leaf extracts may involve calcium mobilization via potential sensitive channels.

The contractile effects of the aqueous extract of the leaves of Indigofera dendroides (ID) were studied on the gastrointestinal motility in mice and isolated smooth muscle preparations obtained from rats and guinea pigs. The contractile effects of 10(-6) M acetylcholine, 80 mM KCl and 1.6 mg/ml ID were measured on the rat ileal smooth muscle exposed to calcium-free buffer or physiological solution, to determine the calcium pools mobilized by extract for activation of contraction. Acute toxicity test (LD(50)) was also carried out in mice. The result showed that ID (0.05-3.2 mg/ml) produced a concentration-dependent contraction of the guinea pig and rat ileum. These responses were not blocked by mepyramine (2.49 x 10(-9) M), verapamil (8.14 x 10(-9) M), or pirenzepine (4.7 x 10(-7) M), but were blocked completely by atropine (2.92 x 10(-9) M). A significant increase in propulsion of gastrointestinal motility was observed. Acetylcholine, KCl and ID produced contractions in Ca(2+) free media. The phasic components of the contractile responses to Ach as well as the tonic component of K(+) and ID-induced contractions were relatively resistant to short periods of calcium-free exposure. Ach, K(+) and ID still caused contractions in the presence of verapamil. The data revealed that ID-induced contractions were not mediated by histaminergic receptors, calcium channels, M1 muscarinic receptors. It also suggests that Ach mobilize Ca from some tightly bound or intracellular pool, whereas high K(+) and ID may mobilize Ca from some superficial or loosely-bound pool.

Acetylcholine↗

Isolation, structure elucidation and in vivo hepatoprotective potential of trans-tetracos-15-enoic acid from Indigofera tinctoria Linn.

The bioassay guided fractionation of the dried aerial part of Indigofera tinctoria Linn. led to the identification of an active fraction labelled as indigotin. On further chemical analysis, a compound isolated from indigotin was identified and characterized as trans-tetracos-15-enoic acid (TCA). The chemical structure of this compound was established on the basis of physical properties and spectral data, including NMR. It afforded significant hepatoprotection against carbon tetrachloride and paracetamol induced hepatotoxicity in experimental models. Silymarin, a well known plant based hepatoprotective agent, and N-acetylcysteine, which has proven efficacy as a replenisher of sulfhydryls, were used for relative efficacy. TCA was found to reverse the altered hepatic parameters in experimental liver damage. In the safety evaluation study the oral LD50 was found to be more than 2000 mg/kg, with no signs of abnormalities or any mortality for the 15 day period of observation after administration of a single dose of drug in mice. The studies revealed significant and concentration dependent hepatoprotective potential of TCA as it reversed the majority of the altered hepatic parameters in experimental liver damage in rats and mice and may be useful in the management of liver disorders.

Acetaminophen↗

Lipoxygenase inhibitory constituents from Indigofera oblongifolia.

Indigin, alkylated xanthene (1) and indigoferic acid (2) have been isolated from the chloroform soluble fraction of Indigofera oblongifolia, along with beta-sitosterol (3) and 3-hydroxybenzoic acid (4), which are reported for the first time from this species. Their structures were determined through spectroscopic techniques. Both the new compounds 1 and 2 showed significant activity against enzyme lipoxygenase, while 2 further showed moderate inhibition against BChE.

Cholinesterase Inhibitors↗

Antidyslipidemic activity of furano-flavonoids isolated from Indigofera tinctoria.

Flavonoids appear to play a major role in reducing the risk of cardiovascular diseases by decreasing the blood lipid levels. In continuation of our drug discovery program on antidyslipidemic agents we have isolated three furano-flavones 1-3 and a rare flavonol glycoside 4 from the aerial parts of Indigofera tinctoria. Our results disclose that the treatment with diastereomeric flavonoid mixture 1 and 2 (80:20) significantly decreased the plasma triglycerides (TG) by 60%, total cholesterol (TC) 19%, glycerol (Gly) 13%, and free fatty acid (FFA) 25% accompanied with increase in high density lipoproteins-cholesterol (HDL-C) by 8% and HDL-C/TC ratio 36% in high fat diet (HFD) fed dyslipidemic hamsters at the dose of 50 mg/kg body weight. The flavonoid 3 has exhibited moderate antidyslipidemic activity.

Administration, Oral↗

New aliphatic nitro-compounds from Indigofera carlesii.

An investigation of aliphatic nitro-compounds in Indigofera carlesii resulted in the identification of two blended novel compounds: 2-O-acryl-3,6-di-O-(3-nitropropanoyl)-alpha-d-glucopyranose and 6-O-acryl-2,3-di-O-(3-nitropropanoyl)-alpha-d-glucopyranose. The structures of the new compounds were elucidated on basis of spectral analysis.

Indigofera↗

Embryotoxicity in vitro with extract of Indigofera suffruticosa leaves.

Aqueous extract of leaves of Indigofera suffruticosa (AELIs) were studied for adverse effects in preimplantation mouse embryos. Two-cell mouse embryos were cultured for 94 h in human tubal fluid medium (HTF), and AELIs at a concentration of 5 or 10 mg/ml. On Day 4 of culture, morulae and blastocysts were collected for morphological analysis of blastomeres. We found that embryos exposed to the higher concentration of AELIs (10 mg/ml) did not develop and all embryos persisted at the two-cell stage. Those embryos exposed to the lower concentration (5 mg/ml) showed development until morula, blastocyst and hatched blastocyst stages that were similar to the controls. These results suggest that use of AELIs may be hazardous to humans who make use of it in folk medicine.

Animals↗