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但是在鸡的基因组模型中,着丝粒去哪儿了呢?

But where did the centromeres go in the chicken genome models?

作者信息

Piégu Benoît, Arensburger Peter, Guillou Florian, Bigot Yves

机构信息

PRC, UMR INRA0085, CNRS 7247, Centre INRA Val de Loire, 37380, Nouzilly, France.

Biological Sciences Department, California State Polytechnic University, Pomona, CA, 91768, USA.

出版信息

Chromosome Res. 2018 Dec;26(4):297-306. doi: 10.1007/s10577-018-9585-0. Epub 2018 Sep 17.

DOI:10.1007/s10577-018-9585-0
PMID:30225548
Abstract

The chicken genome was the third vertebrate to be sequenced. To date, its sequence and feature annotations are used as the reference for avian models in genome sequencing projects developed on birds and other Sauropsida species, and in genetic studies of domesticated birds of economic and evolutionary biology interest. Therefore, an accurate description of this genome model is important to a wide number of scientists. Here, we review the location and features of a very basic element, the centromeres of chromosomes in the galGal5 genome model. Centromeres are elements that are not determined by their DNA sequence but by their epigenetic status, in particular by the accumulation of the histone-like protein CENP-A. Comparison of data from several public sources (primarily marker probes flanking centromeres using fluorescent in situ hybridization done on giant lampbrush chromosomes and CENP-A ChIP-seq datasets) with galGal5 annotations revealed that centromeres are likely inappropriately mapped in 9 of the 16 galGal5 chromosome models in which they are described. Analysis of karyology data confirmed that the location of the main CENP-A peaks in chromosomes is the best means of locating the centromeres in 25 galGal5 chromosome models, the majority of which (16) are fully sequenced and assembled. This data re-analysis reaffirms that several sources of information should be examined to produce accurate genome annotations, particularly for basic structures such as centromeres that are epigenetically determined.

摘要

鸡基因组是第三个被测序的脊椎动物基因组。迄今为止,其序列和特征注释被用作鸟类及其他蜥形纲物种基因组测序项目中鸟类模型的参考,以及具有经济和进化生物学意义的家养鸟类遗传研究的参考。因此,准确描述这个基因组模型对众多科学家来说至关重要。在此,我们回顾一个非常基本的元素——galGal5基因组模型中染色体着丝粒的位置和特征。着丝粒不是由其DNA序列决定,而是由其表观遗传状态决定,特别是由组蛋白样蛋白CENP - A的积累决定。将来自几个公共来源的数据(主要是使用荧光原位杂交技术对巨大灯刷染色体上着丝粒侧翼的标记探针以及CENP - A ChIP - seq数据集)与galGal5注释进行比较后发现,在16个描述了着丝粒的galGal5染色体模型中,有9个的着丝粒可能定位不当。核型分析数据证实,染色体上主要CENP - A峰的位置是在25个galGal5染色体模型中定位着丝粒的最佳方法,其中大多数(16个)已完全测序和组装。这种数据重新分析再次证实,应检查多种信息来源以生成准确的基因组注释,特别是对于表观遗传决定的基本结构如着丝粒。

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1
But where did the centromeres go in the chicken genome models?但是在鸡的基因组模型中,着丝粒去哪儿了呢?
Chromosome Res. 2018 Dec;26(4):297-306. doi: 10.1007/s10577-018-9585-0. Epub 2018 Sep 17.
2
On the positions of centromeres in chicken lampbrush chromosomes.关于鸡灯刷染色体着丝粒的位置
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High-resolution mapping and transcriptional activity analysis of chicken centromere sequences on giant lampbrush chromosomes.鸡巨染色体着丝粒序列的高分辨率图谱绘制和转录活性分析。
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Acetylation of histone H4 lysine 5 and 12 is required for CENP-A deposition into centromeres.组蛋白 H4 赖氨酸 5 和 12 的乙酰化对于 CENP-A 沉积到着丝粒中是必需的。
Nat Commun. 2016 Nov 4;7:13465. doi: 10.1038/ncomms13465.
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Characterization of chicken CENP-A and comparative sequence analysis of vertebrate centromere-specific histone H3-like proteins.鸡着丝粒蛋白A的表征及脊椎动物着丝粒特异性组蛋白H3样蛋白的比较序列分析
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Chromosomes. CENP-C reshapes and stabilizes CENP-A nucleosomes at the centromere.染色体。着丝粒蛋白C(CENP-C)重塑并稳定着丝粒处的着丝粒蛋白A(CENP-A)核小体。
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Decoding the centromeric nucleosome through CENP-N.通过 CENP-N 解码着丝粒核小体。
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CENP-A Is Dispensable for Mitotic Centromere Function after Initial Centromere/Kinetochore Assembly.在初始着丝粒/动粒组装后,CENP-A对于有丝分裂着丝粒功能是可有可无的。
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Molecules. 2019 Jan 22;24(3):402. doi: 10.3390/molecules24030402.

引用本文的文献

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Evolutionary analysis of a complete chicken genome.鸡全基因组的进化分析。
Proc Natl Acad Sci U S A. 2023 Feb 21;120(8):e2216641120. doi: 10.1073/pnas.2216641120. Epub 2023 Feb 13.
2
DNA Organization along Pachytene Chromosome Axes and Its Relationship with Crossover Frequencies.粗线期染色体轴上的 DNA 组织及其与交叉频率的关系。
Int J Mol Sci. 2021 Feb 27;22(5):2414. doi: 10.3390/ijms22052414.
3
Mapping of the chicken cleft primary palate mutation on chromosome 11 and sequencing of the 4.9 Mb linked region.鸡腭裂原发突变的染色体 11 定位及 4.9Mb 连锁区域的测序。

本文引用的文献

1
How complete are "complete" genome assemblies?-An avian perspective.“完整”基因组组装的完整性如何?——鸟类视角。
Mol Ecol Resour. 2018 Nov;18(6):1188-1195. doi: 10.1111/1755-0998.12933. Epub 2018 Aug 16.
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Piercing the dark matter: bioinformatics of long-range sequencing and mapping.穿透暗物质:长程测序和图谱的生物信息学。
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Karyotype Evolution in Birds: From Conventional Staining to Chromosome Painting.鸟类的核型进化:从传统染色到染色体涂染
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Single-molecule sequencing resolves the detailed structure of complex satellite DNA loci in .单分子测序解析了复杂卫星DNA位点在……中的详细结构。
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Combination of short-read, long-read, and optical mapping assemblies reveals large-scale tandem repeat arrays with population genetic implications.短读长、长读长和光学图谱组装的组合揭示了具有群体遗传学意义的大规模串联重复阵列。
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Dynamics of genome size evolution in birds and mammals.鸟类和哺乳动物基因组大小进化的动态变化
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Evolution of bird genomes-a transposon's-eye view.鸟类基因组的进化——转座子视角
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Constitutive centromere-associated network controls centromere drift in vertebrate cells.组成型着丝粒相关网络控制脊椎动物细胞中的着丝粒漂移。
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