大肠杆菌B/r细胞在营养下移过程中的尺寸重排。

A Zaritsky, C L Woldringh, C E Helmstetter, N B Grover
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引用次数: 25

摘要

为了寻找细菌尺寸变化的机制,葡萄糖类似物甲基α -d -葡萄糖苷被用于通过竞争性抑制葡萄糖摄取(即所谓的营养下移)来快速降低大肠杆菌的质量生长率。1 h后细胞质量和体积达到新的稳态,在此期间细胞分裂速率保持不变;然而,线性尺寸(细胞长度,直径)的重新排列需要额外的2小时,并导致细胞长度下降,这与大肠杆菌改变其直径缓慢的观点一致。将结果与营养上移后发生的细胞长度超调进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dimensional rearrangement of Escherichia coli B/r cells during a nutritional shift-down.

In a search for the mechanism underlying dimensional changes in bacteria, the glucose analogue methyl alpha-D-glucoside was used to effect a rapid reduction in the mass growth rate of Escherichia coli by competitively inhibiting glucose uptake, a so-called nutritional shift-down. The new steady-state cell mass and volume were reached after 1 h, during which the rate of cell division was maintained; rearrangement of the linear dimensions (cell length, diameter), however, required an additional 2 h and caused an undershoot in cell length, consistent with the view that E. coli is slow to modify its diameter. The results are compared with the overshoot in cell length that occurs following nutritional shift-up.

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