Kiss J Z, Giddings T H, Staehelin L A, Sack F D
Department of Plant Biology, Ohio State University, Columbus, USA.
Protoplasma. 1990;157:64-74. doi: 10.1007/BF01322639.
To circumvent the limitations of chemical fixation (CF) and to gain more reliable structural information about higher plant tissues, we have cryofixed root tips of Nicotiana and Arabidopsis by high pressure freezing (HPF). Whereas other freezing techniques preserve tissue to a relatively shallow depth, HPF in conjunction with freeze substitution (FS) resulted in excellent preservation of entire root tips. Compared to CF, in tissue prepared by HPF/FS: (1) the plasmalemma and all internal membranes were much smoother and often coated on the cytoplasmic side by a thin layer of stained material, (2) the plasmalemma was appressed to the cell wall, (3) organelle profiles were rounder, (4) the cytoplasmic, mitochondrial, and amyloplast matrices were denser, (5) vacuoles contained electron dense material, (6) microtubules appeared to be more numerous and straighter, with crossbridges observed between them, (7) cisternae of endoplasmic reticulum (ER) were wider and filled with material, (8) Golgi intercisternal elements were more clearly resolved and were observed between both Golgi vesicles and cisternae, and (9) larger vesicles were associated with Golgi stacks. This study demonstrates that HPF/FS can be used to successfully preserve the ultrastructure of relatively large plant tissues without the use of intracellular cryoprotectants.
为了克服化学固定(CF)的局限性,并获得有关高等植物组织更可靠的结构信息,我们通过高压冷冻(HPF)对烟草和拟南芥的根尖进行了冷冻固定。与其他冷冻技术只能将组织保存到相对较浅的深度不同,HPF结合冷冻置换(FS)能出色地保存整个根尖。与CF相比,在通过HPF/FS制备的组织中:(1)质膜和所有内膜更加光滑,并且在细胞质一侧常常覆盖有一层薄薄的染色物质;(2)质膜紧贴细胞壁;(3)细胞器轮廓更圆;(4)细胞质、线粒体和造粉体基质更致密;(5)液泡含有电子致密物质;(6)微管似乎更多且更直,并且在它们之间观察到有交叉桥;(7)内质网(ER)的潴泡更宽且充满物质;(8)高尔基体潴泡间元件更清晰可辨,并且在高尔基体小泡和潴泡之间都能观察到;(9)较大的小泡与高尔基体堆栈相关联。本研究表明,HPF/FS可用于成功保存相对较大植物组织的超微结构,而无需使用细胞内冷冻保护剂。