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首页> 外文期刊>Journal of Structural Biology >Complementary visualization of mitotic barley chromatin by field-emission scanning electron microscopy and scanning force microscopy
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Complementary visualization of mitotic barley chromatin by field-emission scanning electron microscopy and scanning force microscopy

机译:场发射扫描电子显微镜和扫描力显微镜对有丝分裂大麦染色质的互补观察

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摘要

The surface structure of mitotic barley chromatin was studied by field-emission scanning electron microscopy (FESEM) and scanning force microscopy (SFM). Different stages of the cell cycle were accessible after a cell suspension was dropped onto a glass surface, chemical fixed, and critically point dried. Imaging was carried out with metal-coated specimen or uncoated specimen (only for SFM). The spatial contour of the chromatin could be resolved by SFM correlating to FESEM data. The experimentally determined volume of the residue chromatin during mitosis was within the range of 65-85 mu m(3). A comparison with the theoretically calculated volume indicated a contribution of about 40% of internal cavities, Decondensation of chromosomes by proteinase K led to a drastic decrease in the chromosome volume, and a 3-D netlike architecture of the residue nucleoprotein material, similar to that in the intact chromosome, was obvious. Incubation of metaphase chromosomes in citrate buffer permitted access to different levels of chromatin packing. We imaged intact chromosomes in liquid by SFM: without any intermediate drying step. A granular surface was obvious but with an appreciably lower resolution. Under similar imaging conditions proteinase R-treated chromosomes exhibited low topographic contrast but were susceptible to plastic deformations. (C) 2000 Academic Press. [References: 37]
机译:通过场发射扫描电子显微镜(FESEM)和扫描力显微镜(SFM)研究了有丝分裂大麦染色质的表面结构。将细胞悬液滴到玻璃表面上,化学固定,并进行临界点干燥后,可以进入细胞周期的不同阶段。成像是用金属涂层标本或未涂层标本进行的(仅适用于SFM)。染色质的空间轮廓可以通过与FESEM数据相关的SFM解析。实验确定的有丝分裂过程中残留染色质的体积在65-85μm(3)的范围内。与理论计算体积的比较表明,内腔的贡献约为40%,蛋白酶K使染色体解聚导致染色体体积急剧减少,并且残基核蛋白材料的3-D网状结构类似于在完整的染色体上,是明显的。在柠檬酸盐缓冲液中孵育中期染色体可以进入不同水平的染色质堆积。我们通过SFM对液体中的完整染色体进行成像:无需任何中间干燥步骤。颗粒表面很明显,但分辨率明显较低。在相似的成像条件下,蛋白酶R处理的染色体显示出较低的形貌对比度,但容易发生塑性变形。 (C)2000学术出版社。 [参考:37]

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