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Kinetic studies of temperature-induced helix hand inversion in Bacillus subtilis macrofibers.

机译:枯草芽孢杆菌大纤维中温度诱导的螺旋手反转的动力学研究。

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摘要

The inversion of Bacillus subtilis macrofibers from right to left handedness induced by a temperature upshift was compared with inversion from left to right handedness induced by a temperature downshift. Following an upshift the new steady-state growth rate was achieved prior to inversion of helix orientation. There was no discernible perturbation of growth rate at the time of inversion. The time required after a temperature shift up or down for fiber rotation in the original sense to cease was dependent on the temperature to which the fibers were transferred and was always shortest when this temperature was highest. The results suggest a basic asymmetry in the two inversion processes. Cessation of rotation in the right-to-left inversion appeared to reflect contributions of the old and new wall materials that depended on their twist values, whereas the left-to-right inversion appeared to require that a specific amount of newly made wall material be inserted into the cell surface. The degree of twist of the newly inserted right-handed material appeared not to influence the timing of inversion.
机译:比较了由温度上升引起的枯草芽孢杆菌大纤维从右旋向左旋的转变与由温度下降引起的从左旋向右旋的转变。升档后,在螺旋取向反转之前达到了新的稳态增长率。倒置时没有明显的增长率扰动。温度从原始意义上的升高或降低到停止旋转之后所需的时间取决于纤维转移到的温度,并且在此温度最高时总是最短。结果表明在两个反演过程中基本不对称。从右向左反转的旋转停止似乎反映了新旧墙体材料的贡献,具体取决于它们的扭曲值,而从左向右反转似乎要求一定量的新制作的墙体材料插入细胞表面。新插入的右手材料的扭曲程度似乎不影响反转的时机。

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