229 resultados para Laminaria hyperborea


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alpha-葡萄糖苷酶是一类能够催化碳水化合物alpha-1,4-糖苷键水解的酶,是动物体内许多代谢途径中的关键酶,具有多方面的靶向药理活性。研究表明,alpha-葡萄糖苷酶与糖尿病,艾滋病,恶性肿瘤、溶酶体贮积症等疾病的发生机制有重要关系,已经成为治疗这些疾病的重要靶点。 海带(Laminaria japonica) 属褐藻门、海带属植物。自二十世纪四十年代从日本引入中国以来,已成为中国沿海重要的海洋经济作物。海带藻体叶片部分大都用来提炼碘、甘露醇和藻酸盐,但其假根部分一直被当作化工工业和食品工业的废料,而未得到有效的利用。在中国的沿海一带,海带根作为一种抗糖尿病的民间药物,有很长的历史。因此从海带根中提取分离降血糖成分并研究其作用机制将具有重要的意义。 本论文第一部分进行了海带根中具有alpha-葡萄糖苷酶抑制作用的活性组分的筛选。首先我们按照海带根中所含成分的极性不同进行了提取分离,即将海带根乙醇提取物依次用石油醚、乙酸乙酯、正丁醇萃取。结果乙醇粗体物、石油醚部位、乙酸乙酯部位、正丁醇部位与水部位的酶抑制IC50分别为1589µg/L、970µg/L、 380µg/L、1616µg/L、1106µg/L。乙酸乙酯部位的酶抑制活性最强。 本论文第二部分对海带根乙酸乙酯部位的提取物的体内降糖活性进行了研究,结果表明乙酸乙酯部位可以降低糖尿病大鼠餐后血糖,与阴性对照差异极显著(P<0.01)。小鼠服药后表现出的生命体征与伺服拜糖平后表现出的生命体征类似。 在以上工作基础上我们以alpha-葡萄糖苷酶的抑制活性为导向,用天然产物化学的方法对活性成分进行追踪,通过光谱、波谱与理化性质鉴定出了具有显著alpha-葡萄糖苷酶抑制活性的化合物:丁基-异丁基-邻苯酸二甲酯,并对其进行了酶抑制动力学研究。研究表明丁基-异丁基-邻苯酸二甲酯对alpha-葡萄糖苷酶表现为非竞争性抑制类型,IC50达到13.6μg/mL,且Km=2.39 g/L 本研究工作为进一步研究海带根降血糖成分的作用机理提供了研究基础。

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本文验证了碘离子选择电极法作为准确测定新鲜海带碘含量的方法。第一次系统地测定了新鲜海带中碘的含量、分布以及有机碘和无机碘的比例,测定了新鲜海带中的游离氨基酸、结合氨基酸以及总氨基酸的含量,并首次利用单向纸色谱和红外光谱,纯化并检测了新鲜海带中的含碘氨基酸。结果表明,海带中碘的平均含量占鲜重的0.133%。同时发现海带中不同部位碘的含量不同,分布特点与海带的生命活动有关,代谢较旺盛的部位,富集碘的能力越强,但是有机碘的含量反而下降。

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在浅海养殖系统中,生源要素的形态和动态对滤食性贝类生长有着重要影响,与此同时,滤食性贝类对系统中的生源要素的动态也具有重要作用,国外学者对此研究的比较多,但在我国研究甚少。在本论文中利用室内模拟实验和海上调查的方法,研究滤食性贝类的生物过滤、生物沉积及排泄作用对浅海养殖系统中生源要素动态的影响。室内模拟实验部分:1998年4月至6月间,在烟台利用室内规格相同的水池,建立了栉孔贝扇(Chlamys farreri)不同养殖密度单养、栉孔扇贝和海带(Laminaria japonica)混养、栉孔扇贝和海带、刺参(Apostichopus japonicus)多元化养殖等三种养殖模式,九个养殖系统和一个对照系统,实验中各池的温度、光照、盐度和换水量基本一致,定期测定实验池中颗粒有机碳(POC)、颗粒氮(PN)和水体及沉积物中营养盐的含量。实验结果表明:1 栉孔扇贝大量滤食水体中的颗粒物质,导致水体中颗粒物质浓度的降低,水体中POC和PN的现存量与栉孔扇贝的放养密度负相关,水体中颗粒物的缺乏会限制栉孔扇贝的生长,当POC、PN的现存量分别降低到0.09mg/L、0.015mg/L时,就会限制栉孔扇贝的生长。2 栉孔扇贝排泄代谢产物增加了水体中无机营养盐的浓度,栉孔扇贝排泄的氮以NH_4~+-N为主,占三氮的93.5%;海带可为栉孔扇贝生长提供一部分饵料。3 实验期间硅浓度低于或近于2umol/L,限制了硅藻的生长,实验后期水体中氮盐浓度降低,氮磷比小于10,可能限制了浮游植物的生长,减少了栉孔扇贝的饵料生物,从而抑制了栉孔扇贝的生长。4 在栉孔扇贝单养和贝藻参混养系列中,沉积物中有机物、有机碳、有机氮、有机磷及总磷的含量随栉孔扇贝放养密度的增大而减少。5 在贝藻混养系列中的栉孔扇贝生长好于单养系列,在贝藻参混养系列中的海带生长速度快于贝藻混养系列;单养和贝藻参混养模式中栉栉孔扇贝的日产量均以放养密度中等的(20个/m~2)养殖系统较高。海上调查部分:于1997年冬季、1998年春季和夏季,在烟台四十里湾海区进行了三次野外调查,分别在养殖海区和非养殖海区取得沉积物柱状样,测定沉积物中有机质和间隙水中无机营养盐的含量。实验结果表明:6 养殖区沉积物中有机质的含量大于非养殖区,平均高约22%。7 养殖海区沉积物间隙水中营养盐的浓度大于非养殖海区,其中养殖区NH_4~+-N、PO_4~(3-)-P 的浓度分别高于非养殖区50%和200%-400%,NO_3~--N, NO_2~--N 的浓度差别不明显;沉积物间隙水中营养盐浓度冬季较小,而春夏季浓度较高;氮盐以NH_4~+-N 为主,占90%以上。8 养殖海区沉积物-海水界面间营养盐扩散通量大于非养殖海区,烟台四十里湾沉积物-海水界面间NH_4~+-N, PO_4~(3-)-P, NO_3~--N, NO_2~--N 冬、春、夏三季平均扩散通分别为249.99 umol/m~2/d、3.78 umol/m~2/d、5.24 umol/m~2/d、0.83mol/m~2/d。

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We conducted this study to assess the diversity of bacteria associated with the surfaces of algae based on 16S rDNA sequence analyses. Twelve strains of bacteria were obtained from the surfaces of the following four species of algae: Gracilaria textorii, Ulva pertusa, Laminaria japonica, and Polysiphonia urceolata. The isolated strains of bacteria can be divided into two groups: Halomonas and Vibrio, in physiology, biochemical characteristics and 16S rDNA sequence analyses. The phylogenetic tree constructed based on 16S rDNA sequences of the isolates shows four obvious clusters, Halomonas venusta, Vibrio tasmaniensis, Vibrio lentus, and Vibrio splendidus. Isolates from the surface of P. urceolata are more abundant and diverse, of which strains P9 and P28 have a 16S rDNA sequence very similar (97.5%-99.8%) to that of V. splendidus. On the contrary, the isolates from the surfaces of G textorii, U. pertusa and L. japonica are quite simple and distribute on different branches of the phylogenetic tree. In overall, the results of this study indicate that the genetic relationships among the isolates are quite close and display a certain level of host species specificity, and alga-associated bacteria species are algal species specific.

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The sorption and desorption of Cu and Cd by two species of brown macroalgae and five species of microalgae were studied. The two brown macroalgae, Laminaria japonica and Sargassum kjellmanianum, were found to have high capacities at pHs between 4.0 and 5.0 while for microalgae, optimum pH lay at 6.7. The presence of other cations in solution was found to reduce the sorption of the target cation, suggesting a competition for sorption sites on organisms. Sorption isotherms obeyed the Freundlich equation, suggesting involvement of a multiplicity of mechanisms and sorption sites. For the microalgae tested, Spirulina platensis had the highest capacity for Cd, followed by Nannochloropsis oculata, Phaeodactylum tricornutum, Platymonas cordifolia and Chaetoceros minutissimus. The reversibility of metal sorption by macroalgae was examined and the results show that both HCl and EDTA solutions were very effective in desorbing sorbed metal ions from macroalgae, with up to 99.5% of metals being recovered. The regenerated biomass showed undiminished sorption performance for the two metals studied, suggesting the potential of such material for use in water and wastewater treatment. (C) 1998 Elsevier Science Ltd. All rights reserved.

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Fucoidan, the sulphated polysaccharide extracted from brown seaweed, has various biological activities. The effect of fucoidan on the formation of proteinuria and renal functions in active Heymann nephritis was investigated in this study. Active Heymann nephritis was induced by administering brush border protein of rat proximal uriniferous tubules (FX1A). Fucoidan was administered by oral intubation to Heymann nephritis rats at three doses (50, 100 and 200 mg/kg) once daily for 4 weeks. The elevated urinary protein excretion and plasma creatinine due to the induction of Heymann nephritis were significantly reduced by fucoidan at doses of 100 and 200 mg/kg. The results indicated that fucoidan has a renoprotective effect on active Heymann nephritis and is a promising therapeutic agent for nephritis. Copyright (c) 2005 John Wiley F Sons, Ltd.

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The chemical species of iodine in seven marine algae Codium fragile, Ulva pertusa, Monostroma nitidum, Gracilaria confervoides, Sargassum Kjellmanianum, Dictyopteris divaricata and Laminaria japonica were studied using neutron activation analysis combined with chemical separation. The contents of total iodine, water-soluble iodine, soluble organic iodine, I- and IO3- were determined. The results indicate that the chemical species and contents of iodine in various algae are remarkably different. The highest iodine content of 734 mg/kg (wet basis) was found in Laminaria japonica, with 99.2% of the total iodine being water soluble. The iodine contents of the other six algae are lower and soluble iodine makes up 16-41% of the total. In the aqueous leachate, iodine is mainly I-, which amounts to 61-93% of total water-soluble iodine; the percentages of organic iodine making up 5.5-37.4%, while the contents of IO3- are the lowest, 1.4-4.5%. This result suggests that the mechanism of iodine enrichment is different for various algae and that its bioavailability varies as well. (C) 1997 Elsevier Science B.V.

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The sulfated polysaccharides extracted from algae possess excellent antioxidant activities. In this study, we prepared five polysaccharides extracted from five algae including one brown alga Laminaria japonica. one red alga Porphyra haitanensis and three green algae Ulva pertusa, Enteromorpha linza and Bryopsis plumose. And then the antioxidant activities of all the samples were investigated including scavenging effects of superoxide and hydroxyl radicals, and reducing power. The chemical analysis and FT-IR spectrum showed these extracts were polysaccharides. And in addition, we found that certain polysaccharide exhibited stronger antioxidant activity in certain antioxidant activity. Factors effecting and attributing to radical scavenging effect need to be further studied. (C) 2010 Elsevier Ltd. All rights reserved.

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Macroalgae (seaweeds) are a promising feedstock for the production of third generation bioethanol, since they have high carbohydrate contents, contain little or no lignin and are available in abundance. However, seaweeds typically contain a more diverse array of monomeric sugars than are commonly present in feedstocks derived from lignocellulosic material which are currently used for bioethanol production. Hence, identification of a suitable fermentative microorganism that can utilise the principal sugars released from the hydrolysis of macroalgae remains a major objective. The present study used a phenotypic microarray technique to screen 24 different yeast strains for their ability to metabolise individual monosaccharides commonly found in seaweeds, as well as hydrolysates following an acid pre-treatment of five native UK seaweed species (Laminaria digitata, Fucus serratus, Chondrus crispus, Palmaria palmata and Ulva lactuca). Five strains of yeast (three Saccharomyces spp, one Pichia sp and one Candida sp) were selected and subsequently evaluated for bioethanol production during fermentation of the hydrolysates. Four out of the five selected strains converted these monomeric sugars into bioethanol, with the highest ethanol yield (13 g L−1) resulting from a fermentation using C. crispus hydrolysate with Saccharomyces cerevisiae YPS128. This study demonstrated the novel application of a phenotypic microarray technique to screen for yeast capable of metabolising sugars present in seaweed hydrolysates; however, metabolic activity did not always imply fermentative production of ethanol.

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Field-collected specimens of three species of Laminaria and three species of subtidal red algae (Delesseria sanguinea, Plocamium cartilagineum and Phyllophora pseudoceranoides) were exposed to natural summer sunlight on Helgoland (southern North Sea) for up to 4 h at 15 °C. Dark-adapted variable fluorescence (Fv : Fm) was measured immediately after these treatments, and following 6, 24 and 48 h of recovery in moderate irradiances of white light. The response of plants to the full spectrum of natural sunlight was compared with that to PAR alone, UV-A + visible, UV-A + UV-B, or UV-A alone. The Fv : Fm values of all species were reduced to minimal values after 4 h in all of these treatments, but those of the more resistant species (Laminaria spp. and P. pseudoceranoides) were higher after shorter exposures to UV radiation alone than to PAR with or without UV. The recovery of Fv : Fm in all species was also more rapid in the two treatments that contained UV radiation alone than in those that included PAR. These results suggest that it is the high irradiances of PAR in natural sunlight which are responsible for the photoinhibition of photosynthesis of subtidal seaweeds and that the current ambient irradiances of UV radiation (either UV-B or UV-A) in northern temperate latitudes would not contribute significantly to this photoinhibition.

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Nitrate and phosphate uptake mechanisms have been characterised under conditions of 100 and 50% seawater in 3 common brown algae of NW Europe: Fucus vesiculosus, F. serratus and Laminaria digitata. Under low salinity, the growth rate and internal nitrate accumulation of F. serratus significantly increased (20 and 48%, respectively), but no significant changes were observed for F. vesiculosus and L. digitata. However, nitrate uptake rates were reduced in L. digitata, so that this species was less adaptable to low salinity than the Fucus species. Both F. vesiculosus and F. serratus reached a steady-state uptake rate after acclimation regardless of the salinity treatment. All 3 species had a high capacity for storing inorganic N and P intracellularly. The results for F. serratus pointed to a dual mechanism of adaptation to the special characteristics of the intertidal environment where it grows. Non-saturating (low affinity) nitrate uptake and biphasic (double Michaelis-Menten curve) phosphate uptake are adaptations to high nutrient concentrations. Temporal partition of cellular energy for carbon metabolism and nutrient uptake is also suggested as an adaptation to the transient nutrient inputs occurring in these environments.

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Nitrogen metabolism was examined in the intertidal seaweeds Fucus vesiculosus, Fucus serratus, Fucus spiralis and Laminaria digitata in a temperate Irish sea lough. Internal NO3- storage, total N content and nitrate reductase activity (NRA) were most affected by ambient NO3-, with highest values in winter, when ambient NO3- was maximum, and declined with NO3- during summer. In all species, NRA was six times higher in winter than in summer, and was markedly higher in Fucus species (e.g. 256 ± 33 nmol NO3- min1 g1 in F. vesiculosus versus 55 ± 17 nmol NO3- min1 g1 in L. digitata). Temperature and light were less important factors for N metabolism, but influenced in situ photosynthesis and respiration rates. NO3- assimilating capacity (calculated from NRA) exceeded N demand (calculated from net photosynthesis rates and C : N ratios) by a factor of 0.7–50.0, yet seaweeds stored significant NO3- (up to 40–86 µmol g1). C : N ratio also increased with height in the intertidal zone (lowest in L. digitata and highest in F. spiralis), indicating that tidal emersion also significantly constrained N metabolism. These results suggest that, in contrast to the tight relationship between N and C metabolism in many microalgae, N and C metabolism could be uncoupled in marine macroalgae, which might be an important adaptation to the intertidal environment.

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Burning seaweed to produce kelp, valued for its high potash and soda content, was formerly a significant industry in remote coastal areas of Scotland and elsewhere. Given the high concentrations of arsenic in seaweeds, up to 100 mg kg(-1), this study investigates the possibility that the kelp industry caused arsenic contamination of these pristine environments. A series of laboratory-scale seaweed burning experiments was conducted, and analysis of the products using HPLC ICP-MS shows that at least 40% of the arsenic originally in the seaweed could have been released into the fumes. The hypothesis that the burning process transforms arsenic from low toxicity arsenosugars in the original seaweeds (Fucus vesiculosus and Laminaria digitata) to highly toxic inorganic forms, predominantly arsenate, is consistent with As speciation analysis results. A field study conducted on Westray, Orkney, once a major centre for kelp production, shows that elevated arsenic levels (10.7+/-3.0 mg kg(-1), compared to background levels of 1.7+/-0.2 mg kg(-1)) persist in soils in the immediate vicinity of the kelp burning pits. A model combining results from the burning experiments with data from historical records demonstrates the potential for arsenic deposition of 47 g ha(-1) year(-1) on land adjacent to the main kelp burning location on Westray, and for arsenic concentrations exceeding current UK soil guideline values during the 50 year period of peak kelp production.

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For many coastal regions of the world, it has been common practice to apply seaweed to the land as a soil improver and fertilizer. Seaweed is rich in arsenosugars and has a tissue concentration of arsenic up to 100 micro/g g(-1). These arsenic species are relatively nontoxic to humans; however, in the environment they may accumulate in the soil and decompose to more toxic arsenic species. The aim of this study was to determine the fate and biotransformation of these arsenosugars in soil using HPLC-ICP-MS analysis. Data from coastal soils currently manured with seaweeds were used to investigate if arsenic was accumulating in these soils. Long-term application of seaweed increased arsenic concentrations in these soils up to 10-fold (0.35 mg of As kg(-1) for nonagronomic peat, 4.3 mg of As kg(-1) for seaweed-amended peat). The biotransformation of arsenic was studied in microcosm experiments in which a sandy (machair) soil, traditionally manured with seaweed, was amended with Laminaria digitata and Fucus vesiculosus. In both seaweed species, the arsenic occurs in the form of arsenosugars (85%). The application of 50 g of seaweed to 1 kg of soil leads to an increase of arsenic in the soils, and the dominating species found in the soil pore water were dimethylarsinic acid (DMA(V)) and the inorganic species arsenate (As(V)) and arsenite (As(III)) after the initial appearance of arsenosugars. A proposed decomposition pathway of arsenosugars is discussed in which the arsenosugars are transformed to DMA(V) and further to inorganic arsenic without appreciable amounts of methylarsonic acid (MA(V)). Commercially available seaweed-based fertilizers contain arsenic concentration between 10 and 50 mg kg(-1). The arsenic species in these fertilizers depends on the manufacturing procedure. Some contain mainly arsenosugars while others contain mainly DMA(V) and inorganic arsenic. With the application rates suggested by the manufacturers, the application of these fertilizers is 2 orders of magnitude lower than the maximum permissible sewage sludge load for arsenic (varies from 0.025 kg ha(-1) yr(-1) in Styria, Austria, to 0.7 kg ha(-1) yr(-1) in the U.K.), while a direct seaweed application would exceed the maximum arsenic load by at least a factor of 2.

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Gene flow in macroalgal populations can be strongly influenced by spore or gamete dispersal. This, in turn, is influenced by a convolution of the effects of current flow and specific plant reproductive strategies. Although several studies have demonstrated genetic variability in macroalgal populations over a wide range of spatial scales, the associated current data have generally been poorly resolved spatially and temporally. In this study, we used a combination of population genetic analyses and high-resolution hydrodynamic modelling to investigate potential connectivity between populations of the kelp Laminaria digitata in the Strangford Narrows, a narrow channel characterized by strong currents linking the large semi-enclosed sea lough, Strangford Lough, to the Irish Sea. Levels of genetic structuring based on six microsatellite markers were very low, indicating high levels of gene flow and a pattern of isolation-by-distance, where populations are more likely to exchange migrants with geographically proximal populations, but with occasional long-distance dispersal. This was confirmed by the particle tracking model, which showed that, while the majority of spores settle near the release site, there is potential for dispersal over several kilometres. This combined population genetic and modelling approach suggests that the complex hydrodynamic environment at the entrance to Strangford Lough can facilitate dispersal on a scale exceeding that proposed for L. digitata in particular, and the majority of macroalgae in general. The study demonstrates the potential of integrated physical–biological approaches for the prediction of ecological changes resulting from factors such as anthropogenically induced coastal zone changes.