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多变鱼腥藻藻胆体的分离和荧光鉴定其完整性与解离程度 总被引:6,自引:0,他引:6
完整藻胆体的室温荧光峰位于678nm附近,而不完整藻胆体其峰位于673nm以下。在液氮温度下,完整藻胆体的F686与F666相对荧光强度比值超过10,F686与F655之比值超过20。不完整藻胆体的F686与F666和F686与F655之比值远低于完整藻胆体。可用室温荧光峰的波长位置和液氮温度下F686与F655和F666的相对荧光强度比值来判断藻胆体的完整性和解离程度。而液氮温度下F686与F655,F666之比值是更灵敏的指标。 相似文献
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利用鱼腥藻作为饲料的研究 总被引:2,自引:0,他引:2
鱼腥藻粉作为肉鸡、全雌鲤、青虾和对虾的饲料研究结果表明:2%的鱼腥藻粉替代鱼粉作为肉鸡饲料试验,肉鸡的个体平均增重效果与对照相当,屠宰率、半净膛率和全净膛率都有所提高;同时还具有改善肉质色泽的效果。对重金属的含量分析发现,食鱼腥藻的鸡除锌的含量略高外,铜、铁、锰、镉及铝的含量都低于对照组。添加2%的鱼腥藻粉在网箱中进行小试和大面积试验,结果都表明鱼腥藻粉对全雌鲤的生长有明显的效果,并能提高全雌鲤鱼种的成活率和降低饵料系数,利用鱼腥藻粉配合饲料在网箱和大面积养殖青虾试验表明,具有促进生长,提高产量的作用.对虾试验结果表明,在饵料中添加2%的鱼腥藻粉,饲喂45d后,对虾的体长增加了14.49%;体重增加了10.43%。这些研究结果表明利用鱼腥藻作为家禽及水产养殖动物的饲料具有相当大的应用前景。 相似文献
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固定化固氮鱼腥藻细胞的固氮放氢 总被引:1,自引:0,他引:1
以2%海藻酸钙包埋鱼腥藻细胞进行固定化培养,鱼腥藻的固氮、放氢和吸氢活性均明显提高。固定化培养的鱼腥藻生长速度减缓,较高固氮活性维持的时间增长,对氧和铵的敏感度降低。以2%GaCl_2固化5min制成的胶珠较为理想。 相似文献
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我国鱼腥藻的新记录种——粘质鱼腥藻 总被引:2,自引:0,他引:2
蓝藻是淡水水体的重要组成类群,而鱼腥藻又是水华蓝藻的一个重要种属.但由于该属种类较多,国内文献报导的不到世界分布的四分之一.该文利用染色和显微镜镜检方法对采自广东省高州水库蓝藻水华的样品进行观察,经鉴定,确认一个我国鱼腥藻属的新记录种--粘质鱼腥藻Anabaena mucosa, J. Komarkova-Legnerova & P. Eloranta ,1992 .对该属及该属一个新记录种的主要形态学特征进行了描述,提供了相应的形态照片,并对相似种进行了形态学比较研究. 相似文献
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亚硫酸氢钠对鱼腥藻生长的影响 总被引:4,自引:0,他引:4
在不同条件下研究了光呼吸抑制剂——亚硫酸氢钠对鱼腥藻(Anabaena)生长的影响。结果表明亚硫酸氢钠的浓度在1—10μg/ml时都提高了鱼腥藻的生物量,浓度在2.5和5.0μg/ml的效果优于其他浓度。亚硫酸氢钠提高了鱼腥藻叶绿素a的含量,但是,对蛋白质的含量没有的影响。亚硫酸氢钠用于增加鱼腥藻生物产量是有意义的。 相似文献
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六种鱼腥藻在大量培养中的生产率和适应性与营养成分比较 总被引:2,自引:0,他引:2
连续两年对鱼腥藻的六个品系进行了大量培养比较研究,在长江中下游气候条件下,HB1042和HB1105具有稳定的生产性能,5月下旬至九月中旬123d内,平均有效生长分别为114和100d;其次是HB1058,HB686和HB1017,平均有效生长天分别为73,58和71d;HB13适应性较差。生物量生产率在5月下旬、6月中旬至9月中旬较高,除HB13外,平均都在10g干重/m~2/d以上或接近10g/m~2/d。在不同的季节它们表现出了各自的最高生物量生产率。据此,提出了逐月逐旬采取藻种搭配生产,以获得最高生物量生产率的配合关系。营养成分分析表明它们的蛋白质含量在40%左右;氨基酸组成合理,除某些种类的含硫氨基酸略低外,都符合FAO/WHO的标准。 相似文献
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Eliška Zapomělová Jitka Jezberová Pavel Hrouzek Daniel Hisem Klára Řeháková Jaroslava Komárková 《Journal of phycology》2009,45(6):1363-1373
Occurrences of rare cyanobacteria Anabaena reniformis Lemmerm. and Aphanizomenon aphanizomenoides (Forti) Horecká et Komárek were recently detected at several localities in the Czech Republic. Two monoclonal strains of An. reniformis and one strain of Aph. aphanizomenoides were isolated from distant localities and different sampling years. They were characterized by a combination of morphological, genetic, and biochemical approaches. For the first time, partial 16S rRNA gene sequences were obtained for these morphospecies. Based on this gene, all of these strains clustered separately from other planktonic Anabaena and Aphanizomenon strains. They appeared in a cluster with Cylindrospermopsis Seenaya et Subba Raju and Raphidiopsis F. E. Fritsch et M. F. Rich, clustered closely together with two An. kisseleviana Elenkin strains available from GenBank. A new generic entity was defined (Sphaerospermum gen. nov., with the type species S. reniforme, based on the traditional species An. reniformis). These results contribute significantly to the knowledge base about genetic heterogeneity among planktonic Anabaena–like and Aphanizomenon–like morphospecies. Accordingly, the subgenus Dolichospermum, previously proposed for the group of planktonic Anabaena, should be revaluated. Secondary metabolite profiles of the An. reniformis and Aph. aphanizomenoides strains differed considerably from 17 other planktonic Anabaena strains of eight morphospecies isolated from Czech water bodies. Production of puwainaphycin A was found in both of the An. reniformis strains. Despite the relatively short phylogenetic distance from Cylidrospermopsis, the production of cylindrospermopsin was not detected in any of our strains. 相似文献
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Light intensity and temperature interactions have a complex effect on the physiological process rates of the filamentous bluegreen alga Anabaena variabilis Kütz. The optimum temperature for photosynthesis increased with increasing light intensity from 10°C at 42 μE·m?2·s?1 to 35°C at 562 μE·m?2·s?1. The light saturation parameter, IK, increased with increasing temperatures. The maximum photosynthetic rate (2.0 g C·g dry wt.?1·d?1) occurred at 35°C and 564 μE·m?2·s?1. At 15°C, the maximum rate was 1.25 g C·g dry wt.?1·d?1 at 332 μE·m?2·s?1. The dark respiration rate increased exponentially with temperature. Under favorable conditions of light intensity and temperature the percent of extracellular release of dissolved organic carbon was less than 5% of the total C fixed. This release increased to nearly 40% under combinations of low light intensity and high temperature. A mathematical model was developed to simulate the interaction of light intensity and temperature on photosynthetic rate. The interactive effects were represented by making the light-saturation parameters a function of temperature. 相似文献
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应用溶菌酶处理,超声破碎细胞,通过差异离心和解离剂处理,将细胞的不同部分分开。以水解α-酪蛋白反应检测蛋白水解酶活性,结果表明,在细胞的可溶部分、内细胞质膜、外膜及胞浆周围区均存在蛋白水解酶活性。异形胞可溶部分的蛋白酶活比营养细胞可溶的蛋白酶活高4—5倍。在固氮条件下,营养细胞可溶性蛋白酶反应最适温度为50—55℃,65℃时,酶活迅速下降。有Ca^2 5mmol/l时,蛋白酶在60℃稳定,无Ca^2 存在下,酶液在60℃预处理10分钟,酶活性丧失80%以上。酶反应的最适pH为8—10。而且氮饥饿之后,培养基的pH值对细胞蛋白酶活水平有明显影响,氮饥饿24小时内,蛋白酶活迅速增加,但在碱性条件下,酶活水平比在中性条件下要高得多。邻菲哕啉对蛋白酶活性有严重的抑制,EDTA仅有轻微抑制,而PMSF对细胞蛋白酶活的抑制作用,与细胞氮饥饿时间有关。 相似文献
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分离了有固氮活性的异形胞,它的可溶部分和膜部分的吸收光谱与营养细胞明显不同。SDS凝胶电泳图谱表明,营养细胞中存在的可溶蛋白,在异形胞中有一半左右被降解,最明显的是藻蓝蛋白。异形孢具有与营养细胞共同的肽带,但也合成了一些新的多肽。异形胞可溶蛋白有五条最主要的肽带,表观分子量约为73K,54K,48K,4lK和34K。膜蛋白中至少有2个多肽带(4lK,35K)在营养细胞膜蛋白中是缺少的。 相似文献
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Robert F. McGuire 《Journal of phycology》1984,20(4):454-460
Thirty characteristics of 14 Nostoc and 10 Anabaena species were analyzed from previously published data. Using standard numerical taxonomic methods, simple matching coefficients were calculated and a phenogram drawn. The analysis revealed that some of the central characteristics of Nostoc are: a punctiforme stage; motile reproductive stage; plant mass with a dull to shiny luster, non-veined surface, and nonfimbriate margin; some spherical vegetative cells; no cylindrical heterocysts; and some spherical, but no cylindrical akinetes. Some of the central characteristics of Anabaena that were revealed are: no punctiforme stage; a motile vegetative stage; plant mass with a shiny luster, veined surface, and fimbriate margin; no spherical vegetative cells; some cylindrical heterocysts; and some cylindrical, but no spherical, akinetes. In general, Anabaena has larger akinetes and vegetative cells than Nostoc. Based on 30 morphological characteristics and the clustering data of the phenogram, keys were constructed for the Nostoc and Anabaena species studied. The data clearly support two separate and distinct, though similar genera and, less sharply, the separation of the 24 species. The more useful characteristics for separation of the species are size and shape of akinetes, vegetative cells, and heterocysts; color and luster of plant mass; veined plant mass surface; margin fimbriate; and shape of plant mass in nature. 相似文献
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Courtney D. Gress Ron G. Treble Carlyn J. Matz Harold G. Weger 《Journal of phycology》2004,40(5):879-886
Iron acquisition from various ferric chelates and colloids was studied using iron‐limited cells of Anabaena flos‐aquae (Lyng.) Brèb UTEX 1444, a cyanobacterial strain that produces high levels of siderophores under iron limitation. Various chelators of greatly varying affinity for Fe3+ (HEDTA, EDDHA, desferrioxamine mesylate, HBED, 8‐hydroxyquinoline) were assayed for the degree of iron acquisition by iron‐limited cyanobacterial cells. Iron uptake rates (measured by graphite furnace atomic absorption spectrometry) varied approximately inversely with calculated [Fe3+] (calculated as pFe) and decreased with increasing chelator‐to‐iron ratio. No iron uptake was observed when Fe3+ was chelated with HBED, the strongest of the tested chelators. Iron‐limited Anabaena cells were able to take up iron from 8‐hydroxyquinoline (oxine or 8HQ), a compound sometimes used to quantify aquatic iron bioavailability. Iron bound to purified humic acid was poorly available but did support some growth at high humic acid concentrations. These results suggest that for cyanobacteria, even tightly bound iron is biologically available, including to a limited extent iron bound to humic acids. However, iron bound to some extremely strong chelators (e.g. HBED) is likely to be biologically unavailable. 相似文献