Nicotiana benthamiana gwh_assembly 5285 Assembly & Annotation

Overview

Analysis Name Nicotiana benthamiana gwh_assembly 5285 Assembly & Annotation
Sequencing technology PacBio HiFi
Assembly method Hifiasm v0.16.1-r375
Release Date 2023-03-21
Reference Publication(s)

Wu Y, Li D, Hu Y, Li H, Ramstein GP, Zhou S, Zhang X, Bao Z, Zhang Y, Song B, Zhou Y, Zhou Y, Gagnon E, Särkinen T, Knapp S, Zhang C, Städler T, Buckler ES, Huang S. Phylogenomic discovery of deleterious mutations facilitates hybrid potato breeding. Cell. 2023 May 25;186(11):2313-2328.e15. doi: 10.1016/j.cell.2023.04.008.

Summary

Hybrid potato breeding will transform the crop from a clonally propagated tetraploid to a seed-reproducing diploid. Historical accumulation of deleterious mutations in potato genomes has hindered the development of elite inbred lines and hybrids. Utilizing a whole-genome phylogeny of 92 Solanaceae and its sister clade species, we employ an evolutionary strategy to identify deleterious mutations. The deep phylogeny reveals the genome-wide landscape of highly constrained sites, comprising ∼2.4% of the genome. Based on a diploid potato diversity panel, we infer 367,499 deleterious variants, of which 50% occur at non-coding and 15% at synonymous sites. Counterintuitively, diploid lines with relatively high homozygous deleterious burden can be better starting material for inbred-line development, despite showing less vigorous growth. Inclusion of inferred deleterious mutations increases genomic-prediction accuracy for yield by 24.7%. Our study generates insights into the genome-wide incidence and properties of deleterious mutations and their far-reaching consequences for breeding.

Assembly statistics

Genome size (bp) 2,849,622,328
GC content 38.09%
Scaffold sequence No. 305
Maximum scaffold sequence length (bp) 182,992,192
Minimum scaffold sequence length (bp) 4,002
Average scaffold sequence length (bp) 9,343,024
Scaffold N50 (bp) 139,975,305
Scaffold N90 (bp) 130,104,658
Assembly level Scaffold

Assembly

The Nicotiana benthamiana gwh_assembly 5285 Assembly file is available in FASTA format.

Downloads

Chromosomes (FASTA file) GWHBKBG00000000.genome.fasta.gz

Gene Predictions

The Nicotiana benthamiana gwh_assembly 5285 genome gene prediction files are available in GFF3 and FASTA format.

Downloads

Genes (GFF3 file) GWHBKBG00000000.gff.gz
CDS sequences (FASTA file) GWHBKBG00000000.CDS.fasta.gz
Protein sequences (FASTA file) GWHBKBG00000000.Protein.faa.gz

Functional Analysis

Functional annotation for the Nicotiana benthamiana gwh_assembly 5285 is available for download below. The proteins were analyzed using InterProScan to assign InterPro domains(Pfam).

Downloads

Domain from InterProScan Nicotiana_benthamiana_gwh_5285.Pfam.tsv.gz

S genes

Summary

QueryScaffoldSize(bp)CoordinatesBLASTn HitBLASTn %IDDomain
S-RNaseGWHBKBG0000000316254781220273157-20272935,
20272889-20272396
Nicotiana alata
U08861.1, NaS6-RNase
78.1Ribonuclease T2 family
SLF-1GWHBKBG0000000316254781220427995-20429164Nicotiana alata
EF420255.1, NaDD5-S2
84.1F-box domain
SLF-2GWHBKBG0000000316254781220650696-20649527Nicotiana alata
EF420255.1, NaDD5-S2
83.9F-box domain

Nucleotide

Protein

© 2023 National Genomics Data Center, China National Center for Bioinformation / Beijing Institute of Genomics, Chinese Academy of Sciences