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Relationship between cell coiling and motility of spirochetes in viscous environments.

机译:粘性环境中细胞卷曲与螺旋运动的关系。

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摘要

The lowest viscosity that stops translational motility of cells (minimum immobilizing viscosity [MIV] was determined for various spirochetes. The viscous agent used was polyvinylpyrrolidone, The MIV for either Spirochaeta halophila P1 or Spirochaeta aurantia J4T was approximately 1,000 centipoise (cp), and for Leptospira interrogans (biflexa) B16 the MIV was greater than 500 cp. In comparison, the MIV for the flagellated bacteria Escherichia coli and Spirillum serpens was 60 cp. MIV values for two S. halophila mutant strains lacking the characteristic cell coiling (Hel-mutants) were 70 and 120 cp, approximately one-tenth the MIV for the wild-type strain. MIV values for cells of S. aurantia strains with fewer coils than comparably long cells of S. aurantia J4T were 300 to 600 cp. The average velocity of strains of S. aurantia and S. halophila decreased at viscosities higher than 2 to 3 cp. At 2 cp the average velocity of S. halophila P1 was 16 micron/s, whereas the average velocities of Hel-mutant strains were 7 to 9 micron/s. This study indicates that the coiling of spirochetes plays a role in their ability to move through environments of realtively high viscosity. Among the spirochetes we investigated, this ability is greater in the more extensively coiled strains.
机译:确定了各种螺旋的最低的停止细胞翻译运动的粘度(最低固定粘度[MIV]。所用的粘性试剂是聚乙烯吡咯烷酮,嗜盐螺旋藻P1或极螺旋藻A4的MIV约为1,000厘泊(cp),对于钩端螺旋体(biflexa)B16的MIV大于500 cp。相比之下,鞭毛细菌大肠埃希氏菌和螺旋藻的MIV为60 cp。两种缺乏特征性细胞卷曲(Hel-mutants)的嗜盐链球菌突变株的MIV值)分别为70和120 cp,约为野生型菌株MIV的十分之一;螺旋形金合欢菌株比长链金合欢J4T长细胞少,其MIV值为300至600 cp。在高于2到3 cp的黏度下,S。aurantia和hal。a。菌株的下降速度在2 cp时,S。halophila P1的平均速度为16微米/ s,而Hel-突变株为7至9微米/秒。这项研究表明,螺线管的盘绕在它们具有较高粘度的环境中移动的能力中发挥了作用。在我们研究的螺旋体中,这种能力在更广泛的卷曲菌株中更大。

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