趋磁细菌

qū cí xì jūn
  • magnetotactic bacterium
趋磁细菌趋磁细菌
  1. 对从黄海冷水团附近海域的底泥中分离到的一株新型海洋趋磁细菌YSC-1的磁特性进行了分析。

    Magnetic properties of a novel marine magnetotactic bacterium YSC-1 , which was isolated from sediments near cold mass of the Yellow Sea , was analyzed in this study .

  2. 趋磁细菌与磁小体的研究

    The studying of magnetotactic bacterium and magnetosomes

  3. 趋磁细菌(MB)属变形菌纲,为简单的原核细胞。

    Magnetotactic bacteria ( MB ) belongs to Mycetozoan class with simple prokaryotic cell .

  4. 趋磁细菌WD-1的超微结构及批量培养方法

    Ultrastructure and batch culture of magnetotactic bacteria strain WD-1

  5. 趋磁细菌研究Ⅳ.好氧趋磁细菌HM-1的分离及生物学特性研究

    Isolation of a aerobic magnetotactic bacterium HM 1 and studies on its biological characterstics

  6. 趋磁细菌和磁小体在地质体中的分布及其研究意义

    Distribution of magnetotactic bacteria and magnetosomes in geologic bodies and its significance

  7. 中国黄土剖面趋磁细菌的组成特征与生态意义

    Compositional Features of Magnetotactic Bacteria in Loess of China and Their Ecological Significance

  8. 趋磁细菌及其应用于生物导航的研究进展

    Research on Magnetotactic Bacteria and the Application in Bio-navigation

  9. 趋磁细菌对金属离子的吸附特性研究

    Study on Adsorption of Metal Ions by Magnetotactic Bacteria

  10. 趋磁细菌及磁小体对黄土-古土壤序列磁化率贡献的模拟实验研究

    Simulation experiments of MB and MSS contributions to the magnetic susceptibility of Chinese loess-paleosol sequences

  11. 初步结果显示了趋磁细菌对潮间带环境的适应性。

    This finding suggests the adaptation of the magnetotactic bacterial population to the marine tide .

  12. 趋磁细菌&生物地球化学作用的范例

    Magnetotactic bacteria : an example of Biogeochemistry

  13. 海洋趋磁细菌研究进展

    The progress of marine magnetotactic bacterium

  14. 抗弧菌海洋细菌的分离筛选及其抗菌作用测定高磁性与无磁性趋磁细菌的获得及磁小体释放技术研究

    Isolation of Marine Bacteria Against Vibrio and Detection of Antimicrobial Activity Cultivating technology of high-magnetic and non-magnetic AMB-1

  15. 因此,趋磁细菌是研究生物响应地磁场机理和生物矿化的理想模式微生物。

    MTB , therefore , are ideal model organisms to study biological response mechanism of the magnetic field and microbial biomineralization .

  16. 70年代发现的分布在趋磁细菌体内的磁性纳米颗粒,将生物与磁的关系确切地联系起来。

    Magnetic nano particles found in the body of magnetic bacteria in the 1970 's provide definite proof of the relationship between magnetite and biology .

  17. 趋磁细菌细胞内合成的纳米磁小体具有颗粒均匀,晶型稳定的特点,每个磁小体有脂膜包被。

    Magnetotactic bacteria can form uniform nanometer sized magnetic particles ( megnetosomes ) within the bacterial cells and each particle is enveloped in a membrane .

  18. 黄土剖面中微生物与有机质的古气候记录&趋磁细菌对磁化率的贡献及其特征生物标志物研究

    Paleoclimatic information recorded by microbes and organic matter in Chinese Loess & studies on the contributions to the magnetic susceptibility of magnetotactic bacteria and the characteristic biomarkers

  19. 研究人员从趋磁细菌上获得了灵感,由于该细菌内部存在磁性颗粒(氧化铁的一种),所以对地球磁场非常敏感。

    The researchers took their inspiration from Magnetospirillum magneticum , a bacterium that is sensitive to the Earth 's magnetic field thanks to the presence within its cells of flecks of magnetite , a form of iron oxide .

  20. 在84001碳酸盐边缘出现的磁铁矿颗粒与地球上形成的、具趋磁特性细菌的细胞内磁铁矿晶粒进行了对比。

    Magnetite grains present in the rims of the ALH84001 carbonates ( Fig.1.1.2.3b ) were compared to intracellular magnetite crystals ( 'magnetosomes ' ) formed by terrestrial magnetotactic bacteria .

  21. 其中有一条序列和德国的一株未培养趋磁球菌CF23序列相似性高达99%,说明趋磁细菌种群在全世界的分布不但具有多样性,还具有相似性。

    One of these sequences was 99 % similarity to uncultured magnetotactic cocci from Germany .

  22. 与湖沼中的趋磁菌相比,它在菌体形态、磁小体的数量与排列方式上有很大差异,因而中国西北黄土地区的趋磁细菌是典型的生态物种。

    They are obviously different from magnetotactic bacteria in the lake and swamp in shape , quantity and arrangement of magnetosomes , and hence the magnetotactic bacteria in loessial region of Northwest China constitute a typical ecological species .