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用于中国仓鼠参考基因组组装的染色体规模支架,以促进 CHO 表观基因组的研究。

Chromosome-scale scaffolds for the Chinese hamster reference genome assembly to facilitate the study of the CHO epigenome.

机构信息

Department of Chemical and Biomolecular Engineering, University of Delaware, Newark, Delaware.

出版信息

Biotechnol Bioeng. 2020 Aug;117(8):2331-2339. doi: 10.1002/bit.27432. Epub 2020 Jun 8.

Abstract

The Chinese hamster genome serves as a reference genome for the study of Chinese hamster ovary (CHO) cells, the preferred host system for biopharmaceutical production. Recent re-sequencing of the Chinese hamster genome resulted in the RefSeq PICR meta-assembly, a set of highly accurate scaffolds that filled over 95% of the gaps in previous assembly versions. However, these scaffolds did not reach chromosome-scale due to the absence of long-range scaffolding information during the meta-assembly process. Here, long-range scaffolding of the PICR Chinese hamster genome assembly was performed using high-throughput chromosome conformation capture (Hi-C). This process resulted in a new "PICRH" genome, where 97% of the genome is contained in 11 mega-scaffolds corresponding to the Chinese hamster chromosomes (2n = 22) and the total number of scaffolds is reduced by three-fold from 1,830 scaffolds in PICR to 647 in PICRH. Continuity was improved while preserving accuracy, leading to quality scores higher than recent builds of mouse chromosomes and comparable to human chromosomes. The PICRH genome assembly will be an indispensable tool for designing advanced genetic engineering strategies in CHO cells and enabling systematic examination of genomic and epigenomic instability through comparative analysis of CHO cell lines on a common set of chromosomal coordinates.

摘要

中国仓鼠基因组是研究中国仓鼠卵巢(CHO)细胞的参考基因组,CHO 细胞是生物制药生产的首选宿主系统。最近对中国仓鼠基因组进行了重新测序,得到了 RefSeq PICR 元组装,这是一组高度准确的支架,填补了之前组装版本中超过 95%的缺口。然而,由于在元组装过程中缺乏长程支架信息,这些支架没有达到染色体规模。在这里,使用高通量染色体构象捕获(Hi-C)对 PICR 中国仓鼠基因组组装进行了长程支架构建。这一过程产生了一个新的“PICRH”基因组,其中 97%的基因组包含在 11 个巨型支架中,对应于中国仓鼠的染色体(2n=22),并且支架的总数从 PICR 的 1830 个减少到了 PICRH 的 647 个。在保持准确性的同时提高了连续性,导致质量评分高于最近构建的小鼠染色体,与人类染色体相当。PICRH 基因组组装将是设计 CHO 细胞中高级遗传工程策略的不可或缺的工具,并通过在一组共同的染色体坐标上对 CHO 细胞系进行系统的基因组和表观基因组不稳定性比较分析来实现。

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