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冷冻蚀刻技术观察温度对粪链球菌膜颗粒分布的影响。

Effect of temperature on the distribution of membrane particles in Streptococcus faecalis as seen by the freeze-fracture technique.

作者信息

Tsien H C, Higgins M L

出版信息

J Bacteriol. 1974 May;118(2):725-34. doi: 10.1128/jb.118.2.725-734.1974.

Abstract

When cells of Streptococcus faecalis ATCC 9790 were incubated at temperatures above 10 C before being frozen for freeze-fracture, a random distribution of particles was observed on the outer fracture face of the freeze-cleaved cell membrane. However, when cells were incubated below 10 C before freezing, particleless patches were seen on this membrane surface. The size of the patches produced on chilling could be increased by centrifugation or by storing the chilled cells overnight at about 3 C. Patch formation appeared readily reversible, since the medium and large patches that formed on chilling could not be observed in cells warmed for 10 s at 25 C. However, during the transition from the patch to patchless state, smaller patches not seen in the chilled cells were observed. This suggested that the smaller patches might have been intermediate forms produced by the fragmentation of larger patches on warming.

摘要

当粪肠球菌ATCC 9790的细胞在冷冻用于冷冻断裂之前于10℃以上的温度下孵育时,在冷冻断裂的细胞膜外断裂面上观察到颗粒的随机分布。然而,当细胞在冷冻前于10℃以下孵育时,在该膜表面上可见无颗粒斑块。通过离心或在约3℃下将冷冻细胞过夜储存,可以增加冷却时产生的斑块大小。斑块形成似乎很容易逆转,因为在25℃下温热10秒的细胞中未观察到冷却时形成的中大型斑块。然而,在从斑块状态转变为无斑块状态的过程中,观察到了在冷冻细胞中未见的较小斑块。这表明较小的斑块可能是温热时较大斑块破碎产生的中间形式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0a6/246807/4ab7593e5b62/jbacter00341-0421-a.jpg

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