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Long-read sequencing reveals intra-species tolerance of substantial structural variations and new subtelomere formation in C. elegans

亚端粒 生物 康蒂格 遗传学 端粒 基因组 比较基因组学 染色体 基因组学 DNA测序 计算生物学 顺序装配 进化生物学 基因 转录组 基因表达
作者
Chuna Kim,Jun Kim,Sung‐Hyun Kim,Daniel E. Cook,Kathryn S. Evans,Erik C. Andersen,Junho Lee
出处
期刊:Genome Research [Cold Spring Harbor Laboratory]
卷期号:29 (6): 1023-1035 被引量:96
标识
DOI:10.1101/gr.246082.118
摘要

Long-read sequencing technologies have contributed greatly to comparative genomics among species and can also be applied to study genomics within a species. In this study, to determine how substantial genomic changes are generated and tolerated within a species, we sequenced a C. elegans strain, CB4856, which is one of the most genetically divergent strains compared to the N2 reference strain. For this comparison, we used the Pacific Biosciences (PacBio) RSII platform (80×, N50 read length 11.8 kb) and generated de novo genome assembly to the level of pseudochromosomes containing 76 contigs (N50 contig = 2.8 Mb). We identified structural variations that affected as many as 2694 genes, most of which are at chromosome arms. Subtelomeric regions contained the most extensive genomic rearrangements, which even created new subtelomeres in some cases. The subtelomere structure of Chromosome VR implies that ancestral telomere damage was repaired by alternative lengthening of telomeres even in the presence of a functional telomerase gene and that a new subtelomere was formed by break-induced replication. Our study demonstrates that substantial genomic changes including structural variations and new subtelomeres can be tolerated within a species, and that these changes may accumulate genetic diversity within a species.

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