Nematode chromosomes.

IF 3.3 3区 生物学 Genetics Pub Date : 2022-05-05 DOI:10.1093/genetics/iyac014
Peter M Carlton, Richard E Davis, Shawn Ahmed
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引用次数: 9

Abstract

The nematode Caenorhabditis elegans has shed light on many aspects of eukaryotic biology, including genetics, development, cell biology, and genomics. A major factor in the success of C. elegans as a model organism has been the availability, since the late 1990s, of an essentially gap-free and well-annotated nuclear genome sequence, divided among 6 chromosomes. In this review, we discuss the structure, function, and biology of C. elegans chromosomes and then provide a general perspective on chromosome biology in other diverse nematode species. We highlight malleable chromosome features including centromeres, telomeres, and repetitive elements, as well as the remarkable process of programmed DNA elimination (historically described as chromatin diminution) that induces loss of portions of the genome in somatic cells of a handful of nematode species. An exciting future prospect is that nematode species may enable experimental approaches to study chromosome features and to test models of chromosome evolution. In the long term, fundamental insights regarding how speciation is integrated with chromosome biology may be revealed.

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线虫染色体。
秀丽隐杆线虫揭示了真核生物学的许多方面,包括遗传学,发育,细胞生物学和基因组学。秀丽隐杆线虫作为一种模式生物成功的一个主要因素是,自20世纪90年代末以来,我们获得了一个基本上没有空白且注释良好的核基因组序列,该序列分为6条染色体。本文对秀丽隐杆线虫染色体的结构、功能和生物学进行了综述,并对其他线虫物种的染色体生物学研究进行了展望。我们强调了可塑性染色体的特征,包括着丝粒、端粒和重复元件,以及显著的程序性DNA消除过程(历史上被描述为染色质减少),该过程会导致少数线虫物种体细胞中部分基因组的丢失。一个令人兴奋的未来前景是,线虫物种可能使实验方法研究染色体特征和测试染色体进化模型。从长远来看,关于物种形成如何与染色体生物学相结合的基本见解可能会得到揭示。
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
Genetics
Genetics 生物-遗传学
CiteScore
6.20
自引率
6.10%
发文量
177
期刊介绍: GENETICS is published by the Genetics Society of America, a scholarly society that seeks to deepen our understanding of the living world by advancing our understanding of genetics. Since 1916, GENETICS has published high-quality, original research presenting novel findings bearing on genetics and genomics. The journal publishes empirical studies of organisms ranging from microbes to humans, as well as theoretical work. While it has an illustrious history, GENETICS has changed along with the communities it serves: it is not your mentor''s journal. The editors make decisions quickly – in around 30 days – without sacrificing the excellence and scholarship for which the journal has long been known. GENETICS is a peer reviewed, peer-edited journal, with an international reach and increasing visibility and impact. All editorial decisions are made through collaboration of at least two editors who are practicing scientists. GENETICS is constantly innovating: expanded types of content include Reviews, Commentary (current issues of interest to geneticists), Perspectives (historical), Primers (to introduce primary literature into the classroom), Toolbox Reviews, plus YeastBook, FlyBook, and WormBook (coming spring 2016). For particularly time-sensitive results, we publish Communications. As part of our mission to serve our communities, we''ve published thematic collections, including Genomic Selection, Multiparental Populations, Mouse Collaborative Cross, and the Genetics of Sex.
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