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高压冷冻大豆根瘤可改善超微结构的保存。

High-pressure freezing of soybean nodules leads to an improved preservation of ultrastructure.

机构信息

Laboratorium für Elektronenmikroskopie I, Eidgenössische Technische Hochschule, Schmelzbergstrasse 7, CH-8092, Zürich, Switzerland.

出版信息

Planta. 1992 Sep;188(2):155-63. doi: 10.1007/BF00216809.

Abstract

High-pressure freezing of chemically untreated nodules of soybean (Glycine max (L.) Merr.), in sharp contrast to chemical fixation and prefixation, appears to preserve the ultrastructure close to the native state. This is supported by the observation that the peribacteroid membrane of high-pressure-frozen samples is tightly wrapped around the bacteroids, a finding that is fully consistent with the current views on the physiology of oxygen and metabolite transport between plant cytosol and bacteroids. In soybean root nodules, the plant tissue and the enclosed bacteria are so dissimilar that conventional aldehyde-fixation procedures are unable to preserve the overall native ultrastructure. This was demonstrated by high-pressure freezing of nodules that had been pre-fixed in glutaraldehyde at various buffer molalities: no buffer strength tested preserved all ultrastructural aspects that could be seen after high-pressure freezing of chemically untreated nodules.

摘要

与化学固定和预固定相比,化学未处理的大豆(Glycine max (L.) Merr.)结节的高压冷冻似乎更能接近自然状态保存超微结构。这一观察结果得到了支持,即高压冷冻样品的周质体膜紧紧地包裹着类菌体,这一发现与目前关于植物胞质溶胶和类菌体之间氧气和代谢物运输生理学的观点完全一致。在大豆根瘤中,植物组织和封闭的细菌如此不同,以至于常规的醛固定程序无法保存整体的天然超微结构。这通过高压冷冻已经在各种缓冲摩尔浓度下用戊二醛预固定的根瘤进行了证明:没有任何测试过的缓冲强度能够保存在未经化学处理的根瘤高压冷冻后能够看到的所有超微结构方面。

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