High-quality genome assembly of Huazhan and Tianfeng, the parents of an elite rice hybrid Tian-you-hua-zhan

Sci China Life Sci. 2022 Feb;65(2):398-411. doi: 10.1007/s11427-020-1940-9. Epub 2021 Jun 28.

Abstract

High-quality rice reference genomes have accelerated the comprehensive identification of genome-wide variations and research on functional genomics and breeding. Tian-you-hua-zhan has been a leading hybrid in China over the past decade. Here, de novo genome assembly strategy optimization for the rice indica lines Huazhan (HZ) and Tianfeng (TF), including sequencing platforms, assembly pipelines and sequence depth, was carried out. The PacBio and Nanopore platforms for long-read sequencing were utilized, with the Canu, wtdbg2, SMARTdenovo, Flye, Canu-wtdbg2, Canu-SMARTdenovo and Canu-Flye assemblers. The combination of PacBio and Canu was optimal, considering the contig N50 length, contig number, assembled genome size and polishing process. The assembled contigs were scaffolded with Hi-C data, resulting in two "golden quality" rice reference genomes, and evaluated using the scaffold N50, BUSCO, and LTR assembly index. Furthermore, 42,625 and 41,815 non-transposable element genes were annotated for HZ and TF, respectively. Based on our assembly of HZ and TF, as well as Zhenshan97, Minghui63, Shuhui498 and 9311, comprehensive variations were identified using Nipponbare as a reference. The de novo assembly strategy for rice we optimized and the "golden quality" rice genomes we produced for HZ and TF will benefit rice genomics and breeding research, especially with respect to uncovering the genomic basis of the elite traits of HZ and TF.

Keywords: Nanopore; PacBio; de novo genome assembly; high-quality; rice; variation.

MeSH terms

  • Chromosome Mapping
  • Genes, Plant
  • Genome Size
  • Genome, Plant / genetics*
  • Genomic Structural Variation
  • Genomics
  • High-Throughput Nucleotide Sequencing
  • Molecular Sequence Annotation
  • Nanopore Sequencing
  • Oryza / genetics*
  • Plant Breeding
  • Sequence Analysis, DNA