Brassica gravinae Assembly & Annotation

Overview

Analysis Name Brassica gravinae Assembly & Annotation
Sequencing technology 10x or stLFR for linked-reads, PacBio
Assembly method 10x: supernova assembler v2.1.1, Long Ranger v2.2.2,
PacBio: Canu v1.8,LINKS v1.8.7-ARCS v1.1.1,
ONT: Guppy v5.0.11, LINKS v1.8.7, NanoFilt v2.6.0
Release Date 2023-07-11
Reference Publication(s)

Guerreiro R, Bonthala VS, Schlüter U, Hoang NV, Triesch S, Schranz ME, Weber APM, Stich B. A genomic panel for studying C3-C4 intermediate photosynthesis in the Brassiceae tribe. Plant Cell Environ. 2023 Nov;46(11):3611-3627. doi: 10.1111/pce.14662.

Abstract

Research on C4 and C3-C4 photosynthesis has attracted significant attention because the understanding of the genetic underpinnings of these traits will support the introduction of its characteristics into commercially relevant crop species. We used a panel of 19 taxa of 18 Brassiceae species with different photosynthesis characteristics (C3 and C3-C4) with the following objectives: (i) create draft genome assemblies and annotations, (ii) quantify orthology levels using synteny maps between all pairs of taxa, (iii) ⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠⁠describe the phylogenetic relatedness across all the species, and (iv) track the evolution of C3-C4 intermediate photosynthesis in the Brassiceae tribe. Our results indicate that the draft de novo genome assemblies are of high quality and cover at least 90% of the gene space. Therewith we more than doubled the sampling depth of genomes of the Brassiceae tribe that comprises commercially important as well as biologically interesting species. The gene annotation generated high-quality gene models, and for most genes extensive upstream sequences are available for all taxa, yielding potential to explore variants in regulatory sequences. The genome-based phylogenetic tree of the Brassiceae contained two main clades and indicated that the C3-C4 intermediate photosynthesis has evolved five times independently. Furthermore, our study provides the first genomic support of the hypothesis that Diplotaxis muralis is a natural hybrid of D. tenuifolia and D. viminea. Altogether, the de novo genome assemblies and the annotations reported in this study are a valuable resource for research on the evolution of C3-C4 intermediate photosynthesis.

Assembly statistics

SpeciesB. gravinae
Scaffolds49 186
Assembly size (bp)448 675 291
N50 (bp)16 594
L50 (bp)7247
BUSCO complete91%

Assembly

The Brassica gravinae Assembly file is available in FASTA format.

Downloads

Chromosomes (FASTA file) b_gravinae.fasta.zip

Gene Predictions

The Brassica gravinae genome gene prediction files are available in GFF3 and FASTA format.

Downloads

Genes (GFF3 file) b_gravinae.gff.zip
CDS sequences (FASTA file) bgrav.cds.fa.gz
Protein sequences (FASTA file) bgrav.pep.fa.gz

Functional Analysis

Functional annotation for the Brassica gravinae is available for download below. The proteins were analyzed using InterProScan to assign InterPro domains(Pfam).

Downloads

Domain from InterProScan Brassica_gravinae.Pfam.tsv.gz

S genes

Summary

QueryScaffoldSize(bp)CoordinatesBLASTp HitBLASTp %ID
SRK219443284518478-9774,10571-10699,10739-10977,
11053-11263,11353-11576,11688-11858,
12579-12914
sp|Q09092|SRK6_BRAOV77
SCR244716288681290-1359,972-1192XP_018438641.189

Nucleotide

Protein

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