169 resultados para SPONGE PHORBAS SP


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记述了早更新世的江川猕猴和早全新世的短尾猴和菲氏叶猴。江川猕猴是联系西瓦立克地区和华北地区的早期猕猴类型, 为南方早更新世猕猴种的首次记录。表2参30

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结果显示,水绵细胞分裂间期的核仁为近球形,由核仁颗粒区和立体网状的核仁纤维区组成。水绵在含有10uci/ml的3H-Thymidine培养基培养1400h后,受到细胞内外,细胞核内外3H的 辐射作用,分裂间期核仁增大,核仁中小部分纤能区或颗粒区的物质成团离开核仁,在核中,核仁旁形成"微核仁"。这种微核仁与通常用普通显微镜观察到 的"微核不同"。图3参15

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A rosy-pigmented Gram-negative, thermophilic bacterium with an optimum growth temperature of about 55degreesC was isolated from Tengchong hot springs in Yunnan province, China. Its growth scarcely occurred below 40degreesC or above 70degreesC. Phylogenetic and secondary structural analyses of 16S rRNA and DNA-DNA hybridization showed that the organism represented a new species of the genus Meiothermus. This new species could be distinguished easily from other species of the genus Meiothermus by the following phenotypic characteristics: rosy pigment, expanded body, sucrose and maltose were not utilized, gelatin and starch were not hydrolyzed. On the basis of the above data, the name Meiothermus rosaceus sp. nov. was proposed for the species represented by the strain RH9901(T)(CCTCC-AB200291). (C) 2002 Federation of European Microbiological Societies. Published by Elsevier Science B.V. All rights reserved.

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A yellow-pigmented strain of the genus Thermus, with optimum growth temperatures about 65-70 degreesC, was isolated from the hot springs in Rehai of Tengchong, Yunnan Province, China. Morphological, physiological and biochemical characteristics, pigment analysis of RH99-GF7504 strain and its phylogenetic analysis of 16S rDNA showed that this organism represented a new species of the genus Thermus(1)). This strain had maximum temperatures for growth below 80 degreesC. The new isolate from Rehai of Tengchong could be distinguished from other strains of the genus Thermus by its special structure and by its inability to hydrolyze gelatin and starch. On the basis of phylogenetic analysis, morphological, physiological and biochemical characteristics, the name Thermus rehai sp nov is proposed for the species, represented by strain RH99-GF7504 (CCTCC-AB200292).

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研究了不同Pb2+浓度(0.1、1、10、50、100、200、400 mg/L)处理对绿球藻(Chlorococcum sp.)生长、形态结构及生理特性的影响。与对照BG11培养的绿球藻比较,Pb2+浓度≤50 mg/L条件下培养的绿球藻细胞壁无明显增厚,色素变化不大;而暴露到Pb2+浓度>50 mg/L条件下培养,绿球藻细胞壁明显增厚,蛋白核消失。低浓度Pb2+(0.1~10 mg/L)对绿球藻生长基本没有影响;浓度在50 mg/L时,绿球藻仍能维持一定的生长速率;但当Pb2+浓度≥100 mg/L时

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二苯并呋喃(DF)是研究二英类化合物生物降解的模式化合物之一。本文报道了一种降解菌Janibacter sp.对活性污泥降解二苯并呋喃的强化作用,以及对其降解基因的分析结果。向反应器中添加5%的降解菌,与活性污泥共同作用,可在48h内将约56mg/L剂量的DF几乎完全降解,提高降解率28%以上。利用PCR方法,克隆和测序分析证明有DF降解基因丛的存在,并且发现以丰富培养基在高温下培养可去除该基因丛;丢失该基因丛的突变株同时失去利用DF作为唯一碳源进行生长的能力,显示其很可能位于一个大质粒上。

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CO2浓度提高时,微拟球藻吸收醋酸钠的速率增加2倍。混养生长的藻细胞最大光合作用速率、光合作用效率、无机碳半饱和常数和无机碳饱和的光合作用速率均显著低于光自养条件下生长的。

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以单细胞蓝藻聚球藻Synechococcussp.PCC7942为材料,利用甲基磺酸乙酯(EMS)进行化学诱变获得了一个高CO2 需求突变株。它能在 4%CO2 下生长而不能在空气中生长。对突变株的初检表明:其回复突变率约为 10 -7。该突变株从高CO2 条件下转到空气中后,细胞在 2~ 3d内逐渐趋于死亡;其光合作用对外源无机碳的依赖性高于野生型细胞,碳酸酐酶活性也低于野生型细胞。在超微结构水平,突变株细胞内出现了不同类型的异常羧体:有的为棒状;有的为不规则状;有的为 空羧体",而且,类囊体周围糖原颗

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将蓝藻培养于含 0 .0 5 mol/ L Na Cl的液体培养基 ,3d后细胞结构改变 ,出现无色透明区 .将此材料经溶菌酶处理形成原生质球 ,然后降低渗透压 ,原生质球破裂 ,液泡释放 .此液泡为极为标准的园球状 ,完全透明 ,泡体内无可辩物质 .电镜检查表明为一个单一膜所包围 ,泡内没有内囊体等细胞内物质 ,该膜亦显示典型三明治状单位膜结构 .

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在丝状蓝藻Anabaena sp.PCC7120细胞粗提液的碳酸酐酶(CA)分析中,发现了两种形式的CA活性.高CO_2下生长的细胞,在35μmol/L EZ(Ethoxyzolamide,碳酸酐酶的抑制剂)存在的情况下,CA总活性的85%左右被抑制,其半抑制浓度I_(50)为7.4μmol/L;随着EZ浓度的继续增加,CA活性在EZ浓度达到约150μmol/L处出现了第二个抑制峰,在250μmol/L处抑制程度达到最大,使CA总活性的15%被抑制,其半抑制浓度I_(50)为190μmol/L。在空气条件

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比较了红球藻HB748株在MCM,BBM及BG-11.3种培养基中的生长.结果表明:HB748在这3种培养基中前4d的平均生长速率分别为0.97d-1,0.77d-1和0.63d-1,存在显著差异;然而,在BBM和BG-11中添加MCM中所含等量VB12后,748株在3种培养基中的生长速率趋于一致,表明VB12,是HB748维持较好的前期生长的必需成分;在VB12的需求满足后.3种培养基无机组分的差异对HB748前期生长影响甚微.

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研究分析了混合鱼腥藻粉的营养成分,结果表明混合鱼腥藻粉蛋白质含量为40.5%;氨基酸组成符合联合国粮农卫生组织(FAO/WHO)规定的标准;并含有较丰富的糖类、脂肪酸、无机元素和色素。证实了鱼腥藻可以作为蛋白饲料资源开发和利用。