高质量的单倍型阶段基因组重建揭示了珍珠牡蛎中意想不到的单倍型多样性。

Takeshi Takeuchi, Yoshihiko Suzuki, Shugo Watabe, Kiyohito Nagai, Tetsuji Masaoka, Manabu Fujie, Mayumi Kawamitsu, Noriyuki Satoh, Eugene W Myers
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引用次数: 7

摘要

二倍体基因组中的同源染色体被认为包含相同的遗传信息,但这一普遍概念尚未在具有高杂合性的动物基因组中得到充分验证。本文利用高保真(HiFi)长读数和染色体构象捕获数据,报道了珍珠牡蛎(Pinctada fucata)近完整的单倍型阶段基因组组装。该装配包括14对长支架(>38 Mb),对应于染色体(2n = 28)。通过对k-mers的分析,该组装的准确度估计为99.99997%。单倍型中完整BUSCO基因和单拷贝BUSCO基因的比例分别为95.2%和95.9%,显示了组装的高质量。转座子占该组合的53.3%,是结构变异的主要贡献者。尽管单倍型之间总体共线性,但其中一个染色体支架包含超大规模的非同型区域,这在传统的单倍型合并组装中必须从未被检测和解决。这些区域编码扩展的NACHT、DZIP3/ hrul138样HEPN和免疫球蛋白结构域的基因家族,增加了免疫基因库,我们假设这对珍珠牡蛎的先天免疫能力很重要。珍珠牡蛎基因组提供了对动物显著的单倍型多样性的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A high-quality, haplotype-phased genome reconstruction reveals unexpected haplotype diversity in a pearl oyster.

A high-quality, haplotype-phased genome reconstruction reveals unexpected haplotype diversity in a pearl oyster.

A high-quality, haplotype-phased genome reconstruction reveals unexpected haplotype diversity in a pearl oyster.

A high-quality, haplotype-phased genome reconstruction reveals unexpected haplotype diversity in a pearl oyster.

Homologous chromosomes in the diploid genome are thought to contain equivalent genetic information, but this common concept has not been fully verified in animal genomes with high heterozygosity. Here we report a near-complete, haplotype-phased, genome assembly of the pearl oyster, Pinctada fucata, using hi-fidelity (HiFi) long reads and chromosome conformation capture data. This assembly includes 14 pairs of long scaffolds (>38 Mb) corresponding to chromosomes (2n = 28). The accuracy of the assembly, as measured by an analysis of k-mers, is estimated to be 99.99997%. Moreover, the haplotypes contain 95.2% and 95.9%, respectively, complete and single-copy BUSCO genes, demonstrating the high quality of the assembly. Transposons comprise 53.3% of the assembly and are a major contributor to structural variations. Despite overall collinearity between haplotypes, one of the chromosomal scaffolds contains megabase-scale non-syntenic regions, which necessarily have never been detected and resolved in conventional haplotype-merged assemblies. These regions encode expanded gene families of NACHT, DZIP3/hRUL138-like HEPN, and immunoglobulin domains, multiplying the immunity gene repertoire, which we hypothesize is important for the innate immune capability of pearl oysters. The pearl oyster genome provides insight into remarkable haplotype diversity in animals.

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