Haplotype-resolved genome analyses of a heterozygous diploid potato

生物 倍性 遗传学 单倍型 基因组 等位基因 龙葵 基因 植物
作者
Qian Zhou,Die Tang,Wu Huang,Zhuo Yang,Yu Zhang,John Hamilton,Richard G. F. Visser,Christian W. B. Bachem,C. Robin Buell,Zhonghua Zhang,Chengqi Zhang,Sanwen Huang
出处
期刊:Nature Genetics [Nature Portfolio]
卷期号:52 (10): 1018-1023 被引量:111
标识
DOI:10.1038/s41588-020-0699-x
摘要

Potato (Solanum tuberosum L.) is the most important tuber crop worldwide. Efforts are underway to transform the crop from a clonally propagated tetraploid into a seed-propagated, inbred-line-based hybrid, but this process requires a better understanding of potato genome. Here, we report the 1.67-Gb haplotype-resolved assembly of a diploid potato, RH89-039-16, using a combination of multiple sequencing strategies, including circular consensus sequencing. Comparison of the two haplotypes revealed ~2.1% intragenomic diversity, including 22,134 predicted deleterious mutations in 10,642 annotated genes. In 20,583 pairs of allelic genes, 16.6% and 30.8% exhibited differential expression and methylation between alleles, respectively. Deleterious mutations and differentially expressed alleles were dispersed throughout both haplotypes, complicating strategies to eradicate deleterious alleles or stack beneficial alleles via meiotic recombination. This study offers a holistic view of the genome organization of a clonally propagated diploid species and provides insights into technological evolution in resolving complex genomes.

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