细菌鞭毛

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  • bacterial flagella
细菌鞭毛细菌鞭毛
  1. 目的发明一种新的细菌鞭毛镀银染色方法。

    Objective To develope a new technique for bacterial flagella staining .

  2. 细菌鞭毛研究概况及进展

    The Research Advances on the Bacterial Flagella

  3. 对改进的Blenden氏细菌鞭毛染色法的再改进

    Further Improvement to " the Improved Blenden 's Flagella Stain for Bacteria "

  4. 本文通过实验对改进的Blenden氏细菌鞭毛染色法作了再改进。

    Though experiments , we have made the further improvement to " the Improved Blenden 's Flagella Stain for Bacteria " .

  5. 拟南芥EFR蛋白是延伸因子Tu(EF-Tu)和细菌鞭毛蛋白的受体,植物体依赖受体激酶(EFR)来感应病原体入侵并启动免疫反应。

    Arabidopsis thaliana EFR protein is Tu elongation factor ( EF-Tu ) receptors and bacterial flagellin , plants depend on the receptor kinase ( EFR and FLS2 ) to pathogen invasion and the immune response .

  6. 细菌鞭毛染色的影响因素研究

    Germs whip hair influence factor that dye research

  7. 细菌鞭毛标本制作方法的改进

    Improvement of the preparation of Bacterial Flagellum Specimen

  8. 细菌鞭毛镀银染色法的创新

    A new silver-plating method for staining flagella

  9. 赖夫生染色法是细菌鞭毛染色的一种常用方法。

    The Leifson staining method is a common method of the flagellum staining of bacteria .

  10. 细菌鞭毛染色方法的改进

    The Improvement of Bacterium Flagellum Staining Way

  11. 为进一步研究细菌鞭毛的抗原性及其他功能提供参考。

    These results provided reference for research on antigenicity and other function of flic of bacteria .

  12. 鞭毛马达(flagellarmotor)是一种分子旋转马达,它在细菌鞭毛的结构与功能中起着中心作用。

    Flagellar motor is a molecular rotary motor , it plays central role on the structures and functions of bacterial flagella .

  13. 在不同培养时间染色显示,培养18&24小时,细菌鞭毛染色效果好。

    At different educate time to dye to show , and educate 18-24 hours , germs whip the hair to dye effective .

  14. 结论细菌鞭毛染色过程中菌悬液的浓度、菌悬液的处理时间、制片方法以及染色时间的长短等条件影响鞭毛染色效果。

    Conclusion The concentration and handing time of suspension , slide-making method and staining time are important factors for an ideal flagellum staining .

  15. 在细胞壁内部,和细菌鞭毛有相同结构的轴向细丝包绕细胞质并使之螺旋化。

    An axial filament , with a similar structure to a bacterial flagellum , is spirally wound about the protoplast inside the cell wall .

  16. 方法:创用玻璃渣高速振动法打脱细菌鞭毛,可提高鞭毛抗原得率,然后分二步离心去掉细菌,再收集鞭毛。

    Methods A high speed vibration method using a fragment of glass was created to desquamate the flagellin of S. typhi , it could increase the yield of flagellin antigen . By two centrifuging steps , bacterial debris was removed , and the flagellin was collected .

  17. 不少细菌没有鞭毛,因而不能自己行进。还有些细菌却能通过某些鲜为人知的机制沿物体表面滑动。

    Many bacteria lack flagella and cannot move about by their own power , while others can glide along over surfaces by some little-understood mechanism .

  18. 群集运动是指在培养基表面某些运动细菌依赖鞭毛的群体迁移行为,涉及繁殖体细胞分化成群集细胞,发生形态、代谢以及蛋白表达等显著变化。

    Swarming motility , a flagella-dependent surface motility , is migratory of bacterial cells from inoculation point as a group on the surface of solid medium .

  19. 从形态上看EECP的尾部仿佛为一个具有柔性的结构,类似细菌的单鞭毛,给人一种噬菌体能借助该尾部进行运动的印象。

    The tail of EECP seems to be flexible and can swing as bacterial flagella , which make it possible that EECP can move depend on the flap of the tail .

  20. 生物学:有些细菌会以鞭毛(像鞭子一样的尾巴)驱动自己前进。

    BIOLOGY : Certain bacteria propel themselves using a flagellum , a whiplike tail .

  21. 科学家们知道这种炎症小体就好像是细胞内部的巡逻部队,侦查多种危险信号比如细菌RNA或者细菌鞭毛蛋白。

    Scientists know that inflammasomes act like a sort of roving security force inside the cell , detecting a variety of danger signals such as bacterial RNA or bits of bacterial flagellin .

  22. 研究人员发现,发酵性细菌能利用其鞭毛与特定的古甲烷菌产生互作。

    We found that a fermentative bacterium used its flagellum for interaction with a specific methanogenic archaeon .

  23. 使用特殊的着色剂后,你会发现有的细菌上长着不少波状的毛发即鞭毛,而有的细菌只有一根鞭毛。

    Using special stains , one can see that some bacteria have attached to them wavy-looking hairs called flagella . Others have only one flagellum .

  24. 使用特殊的着色剂后,你会发现有的细菌上长着不少波状的“毛发”即鞭毛,而有的细菌只有一根鞭毛。

    Using special stains , one can see that some bacteria have attached to them wavy-looking " hairs " called flagella . Others have only one flagellum .