Imaging the inner structure of chromosomes: contribution of focused ion beam/scanning electron microscopy to chromosome research.

IF 2.4 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Chromosome Research Pub Date : 2021-03-01 Epub Date: 2021-02-15 DOI:10.1007/s10577-021-09650-9
Astari Dwiranti, Fendi Sofyan Arifudin, Toshiyuki Wako, Kiichi Fukui
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Abstract

Visualization of the chromosome ultrastructure has revealed new insights into its structural and functional properties. The use of new methods for revealing not only the surface but also the inner structure of the chromosome has been emerged. Some methods have long been used, such as conventional transmission electron microscopy (TEM). Although it has indispensably contributed to the revelation of the ultrastructure of the various biological samples, including chromosomes, some challenges have also been encountered, such as laborious sample preparation, limited view areas, and loss of information on some parts due to ultramicrotome sectioning. Therefore, a more advanced method is needed. Scanning electron microscopy (SEM) is also advantageous in the surface visualization of chromosome samples. However, it is limited by accessibility to gain the inner structure information. Focused ion beam/scanning electron microscopy (FIB/SEM) provides a way to investigate the inner structure of the samples in a direct slice-and-view manner to observe the ultrastructure of the inner part of the sample continuously and further construct a three-dimensional image. This method has long been used in the material science field, and recently, it has also been applied to biological research, such as in showing the inner structure of chromosomes. This review article presents the contributions of this new method to chromosome research and its recent developments in the inner structure of chromosome and discusses its current and potential applications to the high-resolution imaging of chromosomes.

染色体内部结构成像:聚焦离子束/扫描电镜对染色体研究的贡献。
染色体超微结构的可视化揭示了其结构和功能特性的新见解。揭示染色体表面和内部结构的新方法已经出现。一些方法早已被使用,如传统的透射电子显微镜(TEM)。虽然它对揭示包括染色体在内的各种生物样品的超微结构做出了不可缺少的贡献,但也遇到了一些挑战,如样品制备费力,观察区域有限,以及由于超微切片导致某些部分的信息丢失。因此,需要一种更先进的方法。扫描电子显微镜(SEM)在染色体样品的表面可视化方面也具有优势。然而,获取内部结构信息受到可访问性的限制。聚焦离子束/扫描电子显微镜(FIB/SEM)提供了一种以直接切片观察的方式研究样品内部结构的方法,可以连续观察样品内部的超微结构,并进一步构建三维图像。这种方法早已应用于材料科学领域,最近,它也被应用于生物学研究,例如显示染色体的内部结构。本文综述了这一新方法对染色体研究的贡献及其在染色体内部结构方面的最新进展,并讨论了其在染色体高分辨率成像方面的现状和潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chromosome Research
Chromosome Research 生物-生化与分子生物学
CiteScore
4.70
自引率
3.80%
发文量
31
审稿时长
1 months
期刊介绍: Chromosome Research publishes manuscripts from work based on all organisms and encourages submissions in the following areas including, but not limited, to: · Chromosomes and their linkage to diseases; · Chromosome organization within the nucleus; · Chromatin biology (transcription, non-coding RNA, etc); · Chromosome structure, function and mechanics; · Chromosome and DNA repair; · Epigenetic chromosomal functions (centromeres, telomeres, replication, imprinting, dosage compensation, sex determination, chromosome remodeling); · Architectural/epigenomic organization of the genome; · Functional annotation of the genome; · Functional and comparative genomics in plants and animals; · Karyology studies that help resolve difficult taxonomic problems or that provide clues to fundamental mechanisms of genome and karyotype evolution in plants and animals; · Mitosis and Meiosis; · Cancer cytogenomics.
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