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[Chromophoric dissolved organic matter absorption characteristics with relation to fluorescence in typical macrophyte, algae lake zones of Lake Taihu].

Chromophoric dissolved organic matter (CDOM) represents one of the primary light-absorbing species in natural waters and plays a critical in determining the aquatic light field. CDOM shows a featureless absorption spectrum that increases exponentially with decreasing wavelength, which limits the penetration of biologically damaging UV-B radiation (wavelength from 280 to 320 nm) in the water column, thus shielding aquatic organisms. CDOM absorption measurements and their relationship with dissolved organic carbon (DOC), and fluorescence are presented in typical macrophyte and algae lake zone of Lake Taihu based on a field investigation in April in 2004 and lab analysis. Absorption spectral of CDOM was measured from 240 to 800 nm using a Shimadzu UV-2401PC UV-Vis recording spectrophotometer. Fluorescence with an excitation wavelength of 355 nm, an emission wavelength of 450 nm is measured using a Shimadzu 5301 spectrofluorometer. Concentrations of DOC ranged from 6.3 to 17.2 mg/L with an average of 9.08 +/- 2.66 mg/L. CDOM absorption coefficients at 280 nm and 355 nm were in the range of 11.2 - 32.6 m(-1) (average 17.46m(-1) +/- 5.75 m(-1) and 2.4 - 8.3 m(-1) (average 4.17m(-1) +/- 1.47 m(-l)), respectively. The values of the DOC-specific absorption coefficient at 355 nm ranged from 0.31 to 0.64 L x (mg x m)-1. Fluorescence emission at 450 nm, excited at 355 nm, had a mean value of 1.32nm(-1) +/- 0.84 nm(-1). A significant lake zone difference is found in DOC concentration, CDOM absorption coefficient and fluorescence, but not in DOC-specific absorption coefficient and spectral slope coefficient. This regional distribution pattern is in agreement with the location of sources of yellow substance: highest concentrations close to river mouth under the influence of river inflow, lower values in East Lake Taihu. The values of algae lake zone are obvious larger than those of macrophyte lake zone. In Meiliang Bay, CDOM absorption, DOC concentration and fluorescence tend to decreasing from inside to mouth of the Bay. The results show a good correlation between CDOM absorption and DOC coefficients during 280 - 500 nm short wavelength intervals. The R-square coefficient between CDOM absorption and DOC concentration decreases with the increase of wavelength from 280 to 500 nm. The significant linear regression correlations between fluorescence, DOC concentration and absorption coefficients were found at 355 nm. The exponential slope coefficients ranged from 13.0 to 16.4 microm(-1) with a mean value 14.37microm(-1) +/- 0.73microm(-1), 17.3microm(-1) - 20.3microm(-1) with a mean value 19.17microm(-1) +/- 0.84microm(-1) and 12.0microm(-1) - 15.8microm(-1) with a mean value 13.38microm(-1) +/- 0.82microm(-1) over the 280 - 500 nm, 280 - 360 nm and 360 - 440 nm intervals.

Absorption↗

Sterol and Fatty Acid compositions of a marine alga bryopsis pennata (bryopsidophyceae, chlorophyta).

The green alga Bryopsis pennata Lamouroux, collected from the coast of Karachi, has been investigated for its sterol and fatty acid compositions. Four sterols and 19 fatty acids have been isolated from methanolic extract of this alga and identified by (1)H-NMR, El- & GC-MS techniques. The sterol having cholesta skeleton was found as major constituent (78.12%), while other three with ergosta skeleton occurred in traces (5-9%). Seven saturated fatty acids were present in greater quantity (72.58%) than 12 unsaturated ones (27.41%). The latter included 7 monoenoic, 2 dicnoic, 2 trienoic and 1 pentaenoic adds. Tricosanoic acid was found in the highest amount (30.24%), cyclopentenyl undecanoic and heneicosapentaenoic acids were the unique and rare fatty acids detected.

Journal Article↗

Hydrogen production by photosynthetic green algae.

Oxygenic photosynthetic organisms such as cyanobacteria, green algae and diatoms are capable of absorbing light and storing up to 10-13% of its energy into the H-H bond of hydrogen gas. This process, which takes advantage of the photosynthetic apparatus of these organisms to convert sunlight into chemical energy, could conceivably be harnessed for production of significant amounts of energy from a renewable resource, water. The harnessed energy could then be coupled to a fuel cell for electricity generation and recycling of water molecules. In this review, current biochemical understanding of this reaction in green algae, and some of the major challenges facing the development of future commercial algal photobiological systems for H2 production have been discussed.

Catalysis↗

Isolation and partial characterization of the photoreceptive organelle for phototaxis of a flagellate green alga.

We report on the isolation and purification of structurally intact eyespot apparatuses from the naked, biflagellate green alga Spermatozopsis similis. Two eyespot-enriched fractions, separated by sucrose gradient centrifugation, retained the typical reflective properties of eyespots in situ as demonstrated by reflection confocal laser scanning microscopy. Ultrastructurally, both fractions contained eyespot plates consisting of a single layer of lipid globules. Structurally intact eyespot apparatuses, including patches of plasma membrane and chloroplast envelope overlying the eyespot plate and a single thylakoid subtending the eyespot plate, were particularly enriched in one of the two fractions (fraction 2a). Measurement of several marker enzymes and chlorophyll content (less than 0.001% of total) established the absence of most other cell organelles from the eyespot fractions. The absorption spectra of the two fractions were dominated by carotenoids with an additional shoulder at 540 nm. Following extraction with organic solvents and sodium dodecyl sulfate polyacrylamide gel electrophoresis, several proteins were found to be considerably enriched in the two fractions. In addition to several proteins in the high Mr range, at least 4 polypeptides of 35, 29, 23, and 20 kDa are selectively enriched in fraction 2a with the 29 and 20 kDa proteins being the most prominent. The presence of glycoproteins in fraction 2a was demonstrated by binding of the mannose-specific lectin Galanthus nivalis agglutinin to several high molecular weight polypeptides. In addition, a hydrophobic component with abnormal electrophoretic mobility that reacts strongly with periodic acid-Schiff and thymol/sulfuric acid was prominent in both fractions. Mass isolation and purification of the intact phototactic apparatus of a flagellate green alga now greatly facilitates the biochemical and molecular characterization of the signal transduction chain involved in green algal phototaxis.

Blotting, Western↗

Reflection confocal laser scanning microscopy of eyespots in flagellated green algae.

The reflection properties of different types of eyespots in three unicellular, flagellated green algae (Tetraselmis chui, Chlamydomonas eugametos, Hafniomonas reticulata) were investigated using confocal laser scanning microscopy in the epireflection mode. The eyespots differed with respect to the number of eyespot lipid globule layers and surface appearance (concave/convex). A strong reflection signal was observed in all eyespots, and a detailed quantitative analysis by optical xy (horizontal) and xz (vertical) sectioning was performed. By applying both sectioning capabilities, multi- and single/double-layered eyespots as well as concave and convex eyespot surfaces could be distinguished using living, immobilized cells. Focusing of the reflected light was only observed in eyespots with concave surfaces. In xz series of multi-layered eyespots at reduced laser intensities (0.01%), the intensity profiles of the reflection revealed a series of alternating maxima and minima with increasing reflection intensities toward the cell surface. At very low laser intensities (0.001%), multi-layered eyespots exhibited about twice the reflection intensity at the presumptive photoreceptor site compared to single/double-layered eyespots. Our results provide the first experimental evidence to support the proposal that multi-layered eyespots act as interference reflectors in photoaxis of green algae.

Chlorophyta↗

Blue-green algae (Anabaena spiroides) toxicosis in pigs.

Toxicosis caused by Anabaena spiroides was diagnosed in 7 of 26 finishing hogs in a farrow-to-finish operation in Kentucky. Several sick pigs in the herd had the following clinical signs: vomiting, dull appearance, lethargy, anorexia, muscle tremors, frothing at the mouth, coughing, sneezing, dyspnea, and bloody diarrhea. Of the 7 dead pigs, 2 were necropsied. Tissue speciments and stomach contents were obtained for microscopic, microbiologic, and toxicologic evaluations. In addition, vomitus from sick pigs and pond water samples were collected for laboratory analysis. Direct microscopic examination of pond water, vomitus, and stomach contents revealed nearly pure A spiroides, a toxic blue-green algae. The possible involvement of bacterial toxins in these pigs was not established; however, the laboratory and field data suggested that the clinical signs and death losses were attributable to the consumption of pond water mixed with the bloom of the alga, A spiroides.

Animals↗

The brown alga Ascophyllum nodosum contains two different vanadium bromoperoxidases.

Haloperoxidases have been detected in a variety of organisms, including bacteria, fungi, algae, and mammals. Mammalian haloperoxidases are known to be directly involved in the oxidative destruction of microorganisms. The algal bromoperoxidases are probably involved in the biosynthesis of bromometabolites, most of which show considerable bactericidal activity. From the brown seaweed Ascophyllum nodosum (order, Fucales) two different bromoperoxidases have been isolated, which both contain vanadium as an essential element for enzymic activity. The location of these two enzymes, determined by activity staining of cross-sections of algal parts, was different. Bromoperoxidase I (which has been described before) was located inside the thallus, particularly around the conceptacles, whereas bromoperoxidase II was present at the thallus surface of the alga. The molecular masses of these bromoperoxidases as judged from sodium dodecyl sulfate-gel electrophoresis were 97 and 106 kDa, respectively. Some of the enzymatic properties (pH optimum and Km for bromide) of the two enzymes were slightly different, whereas the amino acid compositions were more or less equal. The isoelectric point of the two proteins was the same, namely 5.0. On sodium dodecyl sulfate-polyacrylamide gels both enzymes could be stained with periodic acid Schiff's reagent, so both are glycoproteins. Since only bromoperoxidase II could be bound to a concanavalin A-Sepharose column, these enzymes contain different carbohydrates. Both enzymes display a considerable thermostability. However, the chemical stability of the two bromoperoxidases differed. Bromoperoxidase II could also be inactivated by dialysis at low pH and reactivation was only possible with the transition metal vanadium and not with other metal ions. The presence of vanadium in this enzyme could be established with atomic absorption spectrophotometry and electron paramagnetic resonance. The EPR signals of both bromoperoxidases, which were observed after reduction with sodium dithionite, were similar: only minor differences were observed in the hyperfine coupling. In immunoblotting experiments these two bromoperoxidases were found to cross-react, so they have common antigenic determinants.

Amino Acids↗

[Glutamate dehydrogenases of unicellular green algae: effects of nitrate and ammonium in vivo].

The constitution and control by the inorganic nitrogen source of glutamate dehydrogenases of some unicellular green algae have been studied. The Ankistrodesmus braunii and Scenedesmus obliquus cells contain two different glutamate dehydrogenases, one of which is NADP-specific, the other is active with both NAD and NADP. Their synthesis does not depend on the nitrogen source. The activity of NADP-specific glutamate dehydrogenase increases sharply during nitrogen starvation. In Chlorella pyrenoidosa 82 and Ch. ellipsoidea only one constitutive double specific glutamate dehydrogenase is observed. Its activity does not change depending on the nitrogen nutrition conditions. In the cells of the thermophylic Chlorella strain Chlorella sp. K. ammomium induces a de novo synthesis of NADP-specific glutamate dehydrogenase in addition to the constitutive double specific glutamate dehydrogenase. Thus, the algae tested contain constitutive double specific glutamate dehydrogenase. The NADP-specific enzyme is absent in two Chlorella strains, is constitutive in A. braunii and S. obliquus, and is ammonium-inducible in three thermophylic Chlorella strains.

Chlorophyta↗

[Algae as the cause of irritation cough].

Cases of irritation-cough in personnel and patients of a physiotherapeutical department during treatment by under-water massage were found out as to be due to mass vegetation of a population of Staurastrum gracile Ralfs 1848 in the raw water a no-contaminated surface water. Algae passed the filter element. Outbreak of such an illness in man caused by green algae were unknown hitherto.

Chlorophyta↗

[Comparative study of the anticoagulant activity of sulfated polysaccharides from marine brown algae].

A comparative study of the anticoagulant activity of fucoidan, sulfated polysaccharides of brown sea algae, was carried out during in vitro and in vivo experiments. Among the compounds of this class of nonlinear polyanions of sea algae there were detected the substances possessing a low toxicity and anticoagulant activity comparable with that of heparin. However the mechanism of action of the studied compounds differs from that of heparin.

Animals↗

Cytotoxic action and cell cycle effects of ALGA, a peptidic derivative of the antileukemic drug amsacrine.

4'-(9-acridinylamino) methanesulfon-m-anisidide (amsacrine or AMSA), an antitumor drug which has been tested in clinical trials, is known to bind to DNA by the intercalation of its 9-amino acridine moiety between DNA base pairs. Like AMSA, a peptidic derivative of 4-(9-acridinylamino) aniline, 4-(9-acridinylamino)-N-(lysylglycyl) aniline (ALGA) binds to DNA by intercalation and its affinity for the target was found to be higher than the parent drug. The antitumor effect of AMSA and ALGA has been monitored by drug exposure assays on EMT 6 cells. AMSA showed a slightly higher cytotoxic activity. The cell cycle effects of both drugs were studied using flow cytofluorimetry; an accumulation of cells in the S phase followed by a cycle arrest in the G2 phase, characteristic of intercalating drugs, was observed.

Amsacrine↗

Motility in the siphonous green alga Bryopsis. I. Spatial organization of the cytoskeleton and organelle movements.

In the giant marine green alga Bryopsis the chloroplasts are attached with their flattened, ventral sides to the inner surface of the cortical cytoplasm. They move at speeds up to 60 microns/min in the direction of the long axis of the cell either in a coordinated fashion or independently of each other. Intracellular sedimentation of chloroplasts by centrifugation leaves an intact cell cortex in which the movement of mitochondria and nuclei--normally obscured by chloroplasts--can be observed. Mitochondria display a saltatory type of movement alongside an extensive, two-dimensional system of phase-translucent channels. Nuclei appear to be entangled in the channel system and move in an unusual, rolling fashion. With a new technique involving the microsurgical removal of the chemically fixed cytoplasm from the confinement of the cell wall, this unique cell type is made accessible to immunocytochemical procedures. Microtubules (MT) can be visualized using a variety of tubulin antibodies, while actin only reacts with one monoclonal antibody out of several antibodies tested. Microtubules form a dense, two-dimensional palisade of bundles extending longitudinally in the cortical cytoplasm. Parallel arrays of actin fibers closely, but not exclusively, colocalize with the MT bundles. Particularly strong actin staining is observed near converging MT bundles underneath the tip regions of the chloroplasts. Because of the extensive superposition of actin and MTs, both cytoskeletal elements could potentially cooperate in creating the diversity of organelle movements in this alga. The respective roles of MTs and actin in chloroplast movement are experimentally tested in the accompanying paper.

Cell Nucleus↗

Effects of amiloride on the transport of sodium and other ions in the alga Hydrodictyon reticulatum.

The diuretic amiloride, an almost specific inhibitor of sodium transport in animal cells and tissues, appears to produce a number of effects in the alga Hydrodictyon reticulatum. At 1 mmol/l concentration it markedly reduces the influx of sodium ions (but not their active outflux), the influxes of potassium, chloride as well as of bicarbonate ions, and causes a profound decrease in the plasmalemma membrane potential. This plurality of inhibitory effects suggests that individual transport processes in the alga are mutually coupled.

Amiloride↗

[Structure and cell division of the blue-green alga Plectonema boryanum].

Our data on the structure of the blue-green alga Plectonema boryanum, as well as the analysis of the data of other authors, show that its cells resemble bacterial cells in the basic features of their fine structure (the cell wall, cytoplasmic membrane, nucleoid, membraneous formations, ribosomal apparatus). Besides the organelles typical of blue-green algae, organelles similar to mesosomes and formations looking like lysosomes were found in Pl. boryanum. Data obtained in the course of the formation of cell partitions evidently speak in favour of the many-sided activity of the lamellae of the photosynthetic apparatus (the parachromatophore) of Pl. boryanum.

Cell Membrane↗

[Atmosphere regeneration characteristics in enclosed spaces using the photosynthesis of single-cell algae].

Systems of biological air regeneration using photosynthesis of unicellular algae show an oxygen-carbon dioxide mismatch associated with the difference in gas exchange coefficients of man and algae. The value and vector of the mismatch depend on the degree of the above difference. In the system balanced with respect to oxygen consumption and carbon dioxide production, the rate of the mismatch equals to 1 per cent of either process per each unit of the difference of the gas exchange coefficients in the second decimal point. The paper present methods for regulating the algal assimilation coefficient based on the use of various nitrogen forms for algal nutrition and controlled biosynthesis. The paper also describes optimal variants of gas exchange balance in the semi-closed biological life support systems.

Animals↗

[Comparative study of the anticoagulant activity of sulfated polysaccharides from red marine algae].

Experiments in vitro and in vivo were made to study and compare anticoagulant activity and acute toxicity of a great number of sulfate polysaccharides isolated from red sea algae. Polysaccharides were identified, producing an appreciable anticoagulant effect similar to that of heparin. The heparin-like effect of polysaccharides from red sea algae depends on the structure of the carbohydrate chain and the degree of macromolecule sulfation.

Animals↗

Studies on the utilization of octane by algae.

The objective of this study was to investigate the influence of various octane concentrations on a mixed culture of Scenedesmus obliquus, Chlorella vulgaris and Oscillatoria sp. and the ability of these algae to utilize octane as the sole source of organic carbon in the medium. The same investigations were carried out for a mixed culture consisting of algae and the strain Acinetobacter calcoaceticus, and for A. calcoaceticus alone. The results obtained show that all of the strains under study, both algal and bacterial, can grow even at high octane concentrations and that they are able to utilize octane.

Acinetobacter↗