Solanum arcanum 'LA2157 (cultivar)' ASM2778914v1 Assembly & Annotation

Overview

Analysis Name Solanum arcanum 'LA2157 (cultivar)' ASM2778914v1 Assembly & Annotation
Sequencing technology Oxford Nanopore PromethION; Illumina HiSeq
Assembly method NextDenovo v. 2.0
Release Date 2023-01-13
Reference Publication(s)

Jiang L, Ling J, Zhao J, Yang Y, Yang Y, Li Y, Jiao Y, Mao Z, Wang Y, Xie B. Chromosome-scale genome assembly-assisted identification of Mi-9 gene in Solanum arcanum accession LA2157, conferring heat-stable resistance to Meloidogyne incognita. Plant Biotechnol J. 2023 Jul;21(7):1496-1509. doi: 10.1111/pbi.14055.

Abstract

Root-knot nematodes (RKNs) are infamous plant pathogens in tomato production, causing considerable losses in agriculture worldwide. Mi-1 is the only commercially available RKN-resistance gene; however, the resistance is inactivated when the soil temperature is over 28 °C. Mi-9 in wild tomato (Solanum arcanum LA2157) has stable resistance to RKNs under high temperature but has not been cloned and applied. In this study, a chromosome-scale genome assembly of S. arcanum LA2157 was constructed through Nanopore and Hi-C sequencing. Based on molecular markers of Mi-9 and comparative genomic analysis, the localization region and candidate Mi-9 genes cluster consisting of seven nucleotide-binding sites and leucine-rich repeat (NBS-LRR) genes were located. Transcriptional expression profiles confirmed that five of the seven candidate genes were expressed in root tissue. Moreover, virus-induced gene silencing of the Sarc_034200 gene resulted in increased susceptibility of S. arcanum LA2157 to Meloidogyne incognita, and genetic transformation of the Sarc_034200 gene in susceptible Solanum pimpinellifolium conferred significant resistance to M. incognita at 25 °C and 30 °C and showed hypersensitive responses at nematode infection sites. This suggested that Sarc_034200 is the Mi-9 gene. In summary, we cloned, confirmed and applied the heat-stable RKN-resistance gene Mi-9, which is of great significance to tomato breeding for nematode resistance.

Assembly statistics

Genome size 861.1 Mb
Number of chromosomes 12
Number of scaffolds 149
Scaffold N50 69.6 Mb
Scaffold L50 6
Number of contigs 300
Contig N50 10.7 Mb
Contig L50 27
GC percent 34.5
Assembly level Chromosome

Assembly

The Solanum arcanum 'LA2157 (cultivar)' ASM2778914v1 Assembly file is available in FASTA format.

Downloads

Chromosomes (FASTA file) GCA_027789145.1_ASM2778914v1_genomic.fna.gz

Gene Predictions

The Solanum arcanum 'LA2157 (cultivar)' ASM2778914v1 genome gene prediction files are not available.

Downloads

Genes (GFF3 file) -
CDS sequences (FASTA file) -
Protein sequences (FASTA file) -

Functional Analysis

Functional annotation for the Solanum arcanum 'LA2157 (cultivar)' ASM2778914v1 is not available.

Downloads

Domain from InterProScan -

S genes

Summary

QueryChromosomeSize(bp)CoordinatesBLASTn HitBLASTn %IDDomain
SLF15CM050933.1106,941,0002559553-2558294Solanum lycopersicum
SL2.31, SLF15
97.857F-box domain
SLF16CM050933.1106,941,0003199511-3198330Solanum lycopersicum
SL2.31, SLF16
98.816F-box domain
SLF22CM050933.1106,941,00052319667-52318534Solanum pennellii
BK009218.1, SLF22
99.206F-box domain
SLF1CM050933.1106,941,00054413017-54411842Solanum pennellii
KJ814858.1, SLF1
92.863F-box domain
SLF17CM050933.1106,941,00054807033-54805852Solanum peruvianum
KU987615.1, SLF17
95.601F-box domain
SLF23CM050933.1106,941,00055051578-55050421Solanum arcanum
MG266244.1, SLF23
99.8F-box domain
SLF13CM050933.1106,941,00059324315-59325517Solanum peruvianum
KJ814856.1, SLF13
98.836F-box domain
SLF12CM050933.1106,941,00060157463-60158626Solanum peruvianum
KJ814855.1, SLF12
99.313F-box domain
SLF11CM050933.1106,941,00062182766-62183938Solanum pennellii
NM_001323461.1, SLF11
99.488F-box domain
SLF9CM050933.1106,941,00064616716-64617858Solanum pimpinellifolium
KJ814875.1, SLF9
98.6F-box domain
SLF21CM050933.1106,941,00065720012-65721313Solanum peruvianum
KU960914.1, SLF21
99.004F-box domain
SLF20CM050933.1106,941,00066171424-66172590Solanum peruvianum
KU960913.1, SLF20
98.458F-box domain
SLF6ΨCM050933.1106,941,00066264850-66265990Solanum tuberosum
DM8.1, SLF6
89.295-
SLF7CM050933.1106,941,00066304940-66306109Solanum habrochaites
KJ814923.1, SLF7-S1
98.803F-box domain
SLF6-2CM050933.1106,941,00066989761-66990906Solanum peruvianum
KJ814850.1, SLF6
98.604F-box domain
SLF5CM050933.1106,941,00067026472-67027641Solanum habrochaites
KJ814915.1, SLF5-S1
96.667F-box domain
SLF4CM050933.1106,941,00067111648-67112814Solanum pimpinellifolium
KJ814871.1, SLF4
95.973F-box domain
SLF2CM050933.1106,941,00068077308-68076127Solanum habrochaites
KJ814908.1, SLF2-S1
98.223F-box domain
S-RNaseCM050933.1106,941,00069142587-69142342,
69142228-69141803
Solanum peruvianum
Z26581.1, Sn-RNase
100Ribonuclease T2 family
SLF14ΨCM050933.1106,941,00070933172-70932066Solanum lycopersicum
KJ814903.1, SLF14
98.193-
SLF18CM050933.1106,941,00083183260-83184375Solanum lycopersicum
SL2.31, SLF18
99.104F-box domain
SLF19CM050933.1106,941,00083200173-83199064Solanum lycopersicum
SL2.31, SLF19
98.559F-box domain

Nucleotide

Protein

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