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At least 127 records · Page 7Linked to original sources

Pollinating bees (Hymenoptera: Apiformes) of U.S. alfalfa compared for rates of pod and seed set.

Alfalfa (=lucerne) flowers require visiting bees to trip the sexual column, thereby providing pollination and subsequent pod and seed set. Previous studies have compared the pollination values of different bee species solely by the speed with which they handle flowers and the proportion of visited flowers tripped. In this greenhouse study, five species of bees, including the three commercially managed U.S alfalfa pollinators, are likewise compared for their floral tripping frequencies. These bee species are also compared for the pod set and mature seed that results from their single visits to virgin flowers. Regardless of the identity of the pollinating bee, tripped flowers had the same probabilities of pod set and seed set. Thus, differences in the single-visit pollination efficiencies of the various bee species are entirely attributable to the proportion of visited flowers that they trip. Females of the alkali bee, Nomia melanderi Cockerell, and the alfalfa leafcutting bee, Megachile rotundata F, tripped 81 and 78% of visited flowers, respectively. Males of these species are significantly less effective (61 and 51%, respectively), but still significantly superior to the honey bee, Apis mellifera L. (22% of visited flowers tripped). These relationships are supported by field data for tripping frequencies. One candidate pollinator, Osmia sanrafaelae Parker, shows promise (44% tripped), but not the congeneric O. aglaia Sandhouse (13% tripped).

Animals↗

Neuronal vacuolation of the trigeminal nuclei in goats caused by ingestion of Prosopis juliflora pods (mesquite beans).

Three groups of 6 goats each were fed a ration containing 30, 60, or 90%, on a dry matter base, of Prosopis juliflora pods. A control group of 4 goats ingested only the basic ration. Two hundred and ten days after the start of the experiment 3 goats that ingested 60% pods in and 4 that ingested 90% had mandibular tremors, mainly during chewing. All animals were killed after 270 d of ingestion. No gross lesions were observed. Histologic lesions were characterized by fine vacuolation of the pericaryon of neurons from the trigeminal nuclei. Occasionally neurons of the oculomotor nuclei were also affected. Wallerian degeneration was occasionally observed in the mandibular and trigeminal nerves. Denervation atrophy of the masseter, temporal, hypoglossus, genioglossus, styloglossus, medial pterygoid and lateral pterygoid muscles was seen. The clinical signs from feeding the P juliflora pods were caused by a selective toxicity to neurons of some cranial nerve nuclei.

Animals↗

Growth, pod, and seed yield, and gas exchange of hydroponically grown peanut in response to CO2 enrichment.

The effects of elevated CO2 on growth, pod, and seed yield, and gas exchange of 'Georgia Red' peanut (Arachis hypogaea L.) were evaluated under controlled environmental conditions. Plants were exposed to concentrations of 400 (ambient), 800, and 1200 micromoles mol-1 CO2 in reach-in growth chambers. Foliage fresh and dry weights increased with increased CO2 up to 800 micromoles mol-1, but declined at 1200 micromoles mol-1. The number and the fresh and dry weights of pods also increased with increasing CO2 concentration. However, the yield of immature pods was not significantly influenced by increased CO2. Total seed yield increased 33% from ambient to 800 micromoles mol-1 CO2, and 4% from 800 to 1200 micromoles mol-1 CO2. Harvest index increased with increasing CO2. Branch length increased while specific leaf area decreased linearly as CO2 increased from ambient to 1200 micromoles mol-1. Net photosynthetic rate was highest among plants grown at 800 micromoles mol-1. Stomatal conductance decreased with increased CO2. Carboxylation efficiency was similar among plants grown at 400 and 800 micromoles mol-1 and decreased at 1200 micromoles mol-1 CO2. These results suggest that CO2 enrichment from 400 to 800 micromoles mol-1 had positive effects on peanut growth and yield, but above 800 micromoles mol-1 enrichment seed yield increased only marginally.

Arachis↗

[Effect of 1-MCP on senescence and quality in cold-stored edible podded pea].

The effects of 1-MCP (1-methylcyclo-propene) at 0.5, 1 and 2 muL/L on senescence and quality attributes in edible podded pea (Pisum sativum L.var.Saccharatum) during cold storage at 1 degrees C were investigated. The results indicated that treatments with 1 and 2 microL/L 1-MCP significantly inhibited respiratory rate, ethylene production and superoxide production, maintained higher levels of SOD, AsA-POD activities and chlorophyll and AsA contents, reduced the increases in MDA and fiber contents and decay index, thereby delayed the senescence process and quality deterioration. Treatment with 0.5 microL/L 1-MCP showed no significant effects on senescence and quality changes in harvested edible podded pea.

Cold Temperature↗

[Response of POD and CAT during seeds of rice, wheat and rape germination on acid rain stress].

The effects of simulated acid rain (pH 2.5 - 5.0) on the activities of POD and CAT were investigated during germination of rice (O. sativa), wheat (T. aestivum) and rape (B. chinensis var. oleifera) seeds. Compared with the control (CK), the amplitude of the change in the activity of CAT and POD is that rice (28.8%, 31.7%) < wheat (34.7%, 48.3%) < rape (79.3%, 50.0%), respectively. The pH significantly different (p < 0.05) from CK follows the order: rice (3.5) > wheat (4.0) > rape (5.0). All of these revealed that the ability of resisting acid rain stress is that rice is stronger than wheat and rape is the worst. Under the same condition, the amplitude of the change in the activity of CAT is more sensitivity toward acid rain stress than that of POD. The difference in free radicals removed by these 3 species is one of the reasons why the germinating indexes behaved differently.

Acid Rain↗

[Conjugation and isolation of POD labelled antibodies [author's transl)].

1. The POD content of the antibody/POD conjugate was measured by means of a method according to Møller and Ottolenghi (1966). Following the incubation of H2O2-benzidine solution the intensity of the yellow-green staining was registered at 410 nm. This method can be applied in the enzyme immunoassay too. 2. For every new test system the optimal antibody/POD ratio of the conjugate has to find out. Conjugates with a IgG/POD ratio in the range of 1 : 0.432--1.114 proved valid in cytological studies. 3. Precipitation, centrifugation, washing, and dialysis did not lead to a reduction of the enzyme activity. 4. In order to decrease nonspecific reactions by conjugate was separated from free POD by means of NH4SO4 precipitation or Sephadex G 200 chromatography. Additionally, nonconjugated antibodies and free POD were separated chromatographically by means of Biogel A 0.5.

Antibodies↗

Changes in structure and function of photosynthetic apparatus of Brassica pods during seed maturation.

Rate of photosynthesis; primary photochemical reactions, viz. whole chain electron transport, PSI and PSII activities; polypeptide profiles and lipid composition of thylakoid membranes were determined at different stages of Brassica pod development. Net CO2 exchange rate increased till 20 days after anthesis (DAA), remained constant till 30 DAA and decreased thereafter. While stomatal conductance followed a similar pattern, transpiration rate and internal CO2 concentration were least affected by age. Chlorophyll content decreased from 10 DAA till maturity, However, Chl a:b ratio increased during the period of active photosynthesis and was maximum at 30 DAA. Among the photochemical activities, PSII activity was reduced to 30% in mature pods. Qualitatively, the polypeptide composition of PSI, PSII and their light harvesting complexes were not affected adversely by aging. Total lipids, phospholipids, glycolipids and total free fatty acids decreased with maturity. However, the decrease in glycolipid content was more severe particularly during maturity phase. It seems that decrease in glycolipid content of thylakoids and chlorophyll content of chloroplasts are responsible for the decrease in photochemical activity and hence a reduction in CO2 assimilation at later stages of pod development.

Brassica↗

cAMP signalling is decisive for recovery of nuclear bodies (PODs) during maturation of RA-resistant t(15;17) promyelocytic leukemia NB4 cells expressing PML-RAR alpha.

We analysed the expression of retinoid receptors and PML in relation to the morphology of PML-containing nuclear bodies (PODs) in maturation sensitive (NB4) and resistant subclones (NB4-R1 and R2) of the promyelocytic NB4 cell line. The basal level of RARalpha, RXRalpha and PML mRNA and protein were roughly the same in the three cell lines. While NB4 and NB4-R1 cells express comparable amounts of PM-RARalpha mRNA and 120 kDa protein, NB4-R2 cells despite normal mRNA levels the 120 kDa protein was not detectable. In NB4-R2 cells however, two novel PML-related entities of 65 kDa and 85 kDA were detected with a anti-PML antibody, in addition to the two PML isoforms of 78 and 97 kDa found in any NB4 cells. Despite the 120 kDa PML-RARalpha defect, NB4-R2 cells show micropunctuated nuclear bodies typical of APL cells. Contrasting with NB4 cells, neither NB4-R1 cells which express PML-RARalpha, nor NB4-R2 cells lacking the 120 kDa PML-RARalpha reorganised nuclear bodies (PODs) in response to RA. Importantly, in RA-primed NB4-R1 cells, a secondary event triggered by cAMP restored PODs, concomitant to maturation. This indicates that the recovery of nuclear bodies in APL is dissociated from the early action of RA in cell maturation. Finally, the key finding of this work is that cAMP signalling ultimately determines the recovery of nuclear bodies associated to cell maturation.

Cell Cycle↗

Variation of favism-inducing factors (vicine, convicine and L-DOPA) during pod development in Vicia faba L.

Changes in the concentrations of vicine, convicine and L-DOPA in two cultivars of Vicia faba L. seeds in different stages of pod development were determined by high performance liquid chromatography (HPLC). The vicine and convicine content was highest in fresh green cotyledons (moisture content about 80%) and gradually declined until a constant level was reached when seed dry matter percentage was around 40%. A similar pattern of variation in glucoside concentration was observed for the seed coat. The pods contained neither vicine nor convicine but they were particularly rich in L-DOPA. These compounds were not homogeneously distributed in the seeds.

Chromatography, High Pressure Liquid↗

Dry Acacia sieberiana pods as a supplement to a low quality forage diet for growing lambs in northern Nigeria.

Twenty yearling lambs of mixed breed were grouped according to initial liveweight (20 +/- 2.7 kg), and each group was offered one of 5 concentrate rations as a supplement to a low quality, dry season Andropogon gayanus hay. Voluntary food intake and liveweight change were monitored over a 56 day growth period, after which 5 of the lambs were transferred to metabolism crates, in which digestibility and nitrogen balance studies were carried out. Ground Acacia sieberiana pods were substituted for maize offal in the experimental diets A, B, C, D and E at 0%, 15%, 30%, 45% and 60% respectively. Mean group intakes and growth rates were (913, 964, 1020, 1128 and 1004 g conc. DM/day) and (111, 120, 149, 165 and 119 g liveweight gain/day) respectively. A decline in both intake and growth rate were recorded as the level of A. sieberiana was increased beyond 45% of the supplement. This corresponded to a daily dry matter intake of Acacia pods in excess of 500 g, or 43 g/kg W0.75. This decline may have been due to the toxic effects of the phenolic compounds present in Acacia. It appears that up to a certain critical level of intake, A. sieberiana is able to support growth rates equal to or better than those obtained when feeding maize offal to lambs. This makes A. sieberiana an attractive low cost alternative, supplementary feed during the dry season.

Acacia↗

Carob pod: a new substrate for citric acid production by Aspergillus niger.

The production of citric acid from carob pod extract by A. niger in surface fermentation was investigated. A maximum citric acid concentration (85.5 g/L), citric acid productivity (4.07 g/L/d), specific citric acid production rate (0.18 g/g/d), and specific sugar uptake rate (0.358 g/g/d) was achieved at an initial sugar concentration of 200 g/L, pH of 6.5, and a temperature of 30 degrees C. Other kinetic parameters, namely, citric acid yield, biomass yield, specific biomass production rate, and fermentation efficiency were maximum at pH 6.5, temperature 30 degrees C, and initial sugar concentration 100 g/L. The external addition of methanol into the carob pod extract at a concentration up to 4% (v/v) improved the production of citric acid.

Aspergillus niger↗

Kinetics of ethanol production from carob pods extract by immobilized Saccharomyces cerevisiae cells.

Kinetics of ethanol production from carob pods extract by immobilized S. cerevisiae cells in static and shake flask fermentation have been investigated. Shake flask fermentation proved to be a better fermentation system for the production of ethanol than static fermentation. The optimum values of ethanol concentration, ethanol productivity, ethanol yield, and fermentation efficiency were obtained at pH range 3.5-6.5 and temperature between 30-35 degrees C. A maximum ethanol concentration (65 g/L), ethanol productivity (8.3 g/Lh), ethanol yield (0.44 g/g), and fermentation efficiency (95%) was achieved at an initial sugar concentration of 200, 150, 100, and 200 g/L, respectively. The highest values of specific ethanol production rate and specific sugar uptake rate were obtained at pH 6.5, temperature 40 degrees C, and initial sugar concentration of 100 g/L. Other kinetic parameters, biomass concentration, biomass yield, and specific biomass production rate were maximum at pH 5.5, temperature 30 degrees C, and initial sugar concentration 150 g/L. Under the same fermentation conditions non-sterilized carob pod extract gave higher ethanol concentration than sterilized medium. In repeated batch fermentations, the immobilized S. cerevisiae cells in Ca-alginate beads retained their ability to produce ethanol for 5 d.

Culture Media↗

Sorption potential of Moringa oleifera pods for the removal of organic pollutants from aqueous solutions.

Moringa oleifera pods Lamarck (Drumstick or Horseradish) is a multipurpose medium or small size tree from sub-Himalayan regions of north-west India and indigenous to many parts of Asia, Africa, South America, and in the Pacific and Caribbean Islands. Its pods (MOP) have been employed as an inexpensive and effective sorbent for the removal of organics, i.e., benzene, toluene, ethylbenzene and cumene (BTEC) from aqueous solutions using HPLC method. Effect of different parameters, i.e., sorbent dose 0.05-0.8g, 25cm(-3) agitation time 5-120min, pH 1-10, temperature 283-308K and concentration of sorbate (1.3-13)x10(-3), (1.1-11)x10(-3), (0.9-9)x10(-3), (0.8-8)x10(-3)moldm(-3), on the sorption potential of MOP for BTEC have been investigated. The pore area and average pore diameter of the MOP by BET method using nitrogen as a standard are calculated to be 28.06+/-0.8m(2)g(-1) and 86.2+/-1.3nm respectively. Freundlich, Langumir and Dubinin-Radushkevich (D-R) sorption isotherms were employed to evaluate the sorption capacity of MOP. Sorption capacities of BTEC onto MOP have been found to be 46+/-10, 84+/-9, 101+/-4, 106+/-32mmolg(-1) by Freundlich, 8+/-0.1, 9+/-0.1, 10+/-0.3, 9+/-0.1mmolg(-1) by Langumir and 15+/-1, 21+/-1, 23+/-2, 22+/-3mmolg(-1) by D-R isotherms respectively, from BTEC solutions at 303K. While the mean energy of sorption process 9.6+/-0.3, 9.2+/-0.2, 9.3+/-0.3, 9.5+/-0.4kJmol(-1) for BTEC is calculated by D-R isotherm only. Rate constant of BTEC onto MOP 0.033+/-0.003, 0.030+/-0.002, 0.029+/-0.002, 0.027+/-0.002min(-1) at solution concentration of 1.3x10(-3), 1.1x10(-3), 0.9x10(-3) and 0.8x10(-3)moldm(-3) and at 303K have been calculated by employing Lagergren equation. Thermodynamic parameters DeltaH -8+/-0.4, -10+/-0.6, -11+/-0.7, -11+/-0.7kJmol(-1), DeltaS -22+/-2, -26+/-2, -27+/-2, -29+/-3Jmol(-1)K(-1) and DeltaG(303K) -0.9+/-0.2, -1.9+/-0.2, -2.3+/-0.1 and -2.6+/-0.2kJmol(-1) were also estimated for BTEC respectively at temperatures 283-308K. The negative values of DeltaH, DeltaS and DeltaG suggest exothermic, stable (with no structural changes at solid-liquid interface) and spontaneous nature of sorption process under optimized conditions. MOP has been used extensively to accrue and then to preconcentrate benzene, toluene and ethylbenzene in wastewater sample.

Adsorption↗

Treatment of pea pods with Bruchin B results in up-regulation of a gene similar to MtN19.

Differential display was used to examine changes in gene expression that resulted from treatment of pea (Pisum sativum L.) with Bruchin B. This lipid-derived regulator, one of several closely related compounds collectively referred to as bruchins, is an insect elicitor that causes localized cell division and callus formation when applied to pods of pea and certain other legumes. A DNA fragment that was prominently displayed after bruchin treatment was cloned and sequenced, and a full-length cDNA was obtained. This cDNA exhibited a high degree of sequence similarity to a gene, MtN19, expressed in root nodules of Medicago truncatula Gaertn. MtN19 codes for a putative protein of unknown function that is similar in sequence to predicted proteins from a number of other plant species, both leguminous and non-leguminous. Quantitative real-time PCR showed that the expression of this MtN19-like gene was significantly up-regulated within 1.5 h of bruchin treatment, and increased more than 100-fold within 6 h of treatment. Given the rapid and strong up-regulation after exposure of pods to a bruchin, it is likely that this gene plays an important role in the response of pea to these insect elicitors.

Amino Acid Sequence↗

Identification of flavone aglycones and glycosides in soybean pods by liquid chromatography-tandem mass spectrometry.

High-performance liquid chromatography-atmospheric pressure chemical ionization mass spectrometry was used to identify flavone aglycones and glycosides in soybean pods. Tandem mass spectrometry (MS-MS and MS-MS-MS) and photodiode array detection were also utilized in flavone characterization. A total of seven flavone aglycones and glycosides were identified. Among them three flavone aglycones--apigenin, 7,4'-dihydroxyflavone, and luteolin--and two flavone glycosides--apigenin-7-O-beta-D-glucoside, and luteolin-7-O-beta-D-glucoside--were unambiguously identified based on their abundant (M+H)+ ions, UV spectra, retention time, and tandem mass spectrometric analysis compared with authentic standards. The tentative identification of two flavone glycosides as 7,4'-dihydroxyflavone-7-O-beta-D-glucoside and apigenin-7-O-beta-D-glucoside-6"-O-malonate was based on UV spectra, (M+H)+ ions, and tandem mass spectrometry. This is the first report identifying flavone aglycones and glycosides in soybean pods.

Apigenin↗

Drosophila pod-1 crosslinks both actin and microtubules and controls the targeting of axons.

Actin and microtubules (MTs) are tightly coordinated during neuronal growth cone navigation and are dynamically regulated in response to guidance cues; however, little is known about the underlying molecular mechanisms. Here, we characterize Drosophila pod-1 (dpod1) and show that purified Dpod1 can crosslink both actin and MTs. In cultured S2 cells, Dpod1 colocalizes with lamellar actin and MTs, and overexpression remodels the cytoskeleton to promote dynamic neurite-like actin-dependent projections. Consistent with these observations, Dpod1 localizes to the tips of growing axons, regions where actin and MTs interact, and is especially abundant at navigational choice points. In either the absence or overabundance of Dpod1, growth cone targeting but not outgrowth is disrupted. Taken together, these results reveal novel activities for pod-1 and show that proper levels of Dpod1, an actin/MT crosslinker, must be maintained in the growth cone for correct axon guidance.

Actins↗

Enzymatic extraction and transformation of glucovanillin to vanillin from vanilla green pods.

Glucovanillin was extracted from green pods and simultaneously transformed to vanillin by a combination of enzyme activities involving cell wall degradation and glucovanillin hydrolysis. The reaction is best carried out with 47.5% v/v aqueous ethanol solution during 8 h at 70 degrees C, in a two-step enzymatic reaction using Viscozyme followed by Celluclast, two commercial enzymatic products containing mainly pectinase and cellulase activities, respectively. The extractive reaction proceeded with high efficiency with an amount of extracted vanillin 3.13 times higher than the one obtained with the Soxhlet method. The classical curing/extraction process results in 1.1-1.8 g of vanillin/100 g of dry pods. It is concluded that the enzymatic reaction may substitute the microbial process involved in tissue fermentation previous to vanillin extraction with the simultaneous hydrolysis of glucovanillin.

Benzaldehydes↗

New sugar-mimic alkaloids from the pods of Angylocalyx pynaertii.

Chromatographic separation of the pod extract of Angylocalyx pynaertii resulted in the isolation of 13 sugar-mimic alkaloids (1-13). The structures of the new alkaloids were elucidated by spectroscopic methods as the 6-O-beta-D-glucoside (10) and N-hydroxyethyl derivative (11) of 1,4-dideoxy-1,4-imino-D-arabinitol (DAB) (1), 1,6-dideoxynojirimycin (12), and 1,3,4-trideoxynojirimycin (13). 2,5-Imino-1,2,5-trideoxy-L-glucitol (7), 2,5-dideoxy-2,5-imino-D-fucitol (8), and beta-homofuconojirimycin (9), isolated from the pods as well as the bark, were very specific inhibitors of alpha-L-fucosidase with no significant inhibitory activity toward other glycosidases. In this work, 1,4-dideoxy-1,4-imino-D-ribitol (6) was found to be a better inhibitor of lysosomal beta-mannosidase than 2,5-imino-1,2,5-trideoxy-D-mannitol (2). N-Hydroxyethyl-1-deoxynojirimycin (miglitol), which is commercially available for the treatment of diabetes, retained its inhibitory potential toward rat intestinal maltase and sucrase, whereas 11 and the synthetic N-hydroxyethyl derivative of 2,5-dideoxy-2,5-imino-D-mannitol markedly lowered or abolished their inhibition toward all enzymes tested.

Alkaloids↗