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Clubroot resistance gene Rcr6 in Brassica nigra resides in a genomic region homologous to chromosome A08 in B. rapa
by
Chang, Adrian
, Gossen, Bruce D.
, Lamara, Mebarek
, Peng, Gary
, Yu, Fengqun
, Hu, Hao
, Parkin, Isobel A. P.
, Wei, Yangdou
in
Agriculture
/ alleles
/ B7 antigen
/ Binding sites
/ Bioinformatics
/ Biomedical and Life Sciences
/ Black mustard
/ Brassica
/ Brassica nigra
/ Brassica rapa
/ Bulked segregant RNA-sequencing
/ Canola
/ Chromosomes
/ class
/ Clubroot
/ Disease control
/ DNA sequencing
/ dominant genes
/ Evolution
/ Gene mapping
/ Gene sequencing
/ Genes
/ Genetic aspects
/ Genetic research
/ genetic resistance
/ Genetics and crop biotechnology
/ Genomes
/ Genomics
/ Homology
/ Interleukin 1
/ Interleukins
/ Leucine
/ Life Sciences
/ Mapping
/ Marker-assisted selection
/ Markers
/ Nucleotides
/ Plant Sciences
/ Plasmodiophora brassicae
/ Proteins
/ Rape plants
/ Research Article
/ resistance genes
/ Ribonucleic acid
/ RNA
/ RNA sequencing
/ Segregation
/ Single-nucleotide polymorphism
/ species
/ Target recognition
/ Tree Biology
/ Whole genome sequencing
2019
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Clubroot resistance gene Rcr6 in Brassica nigra resides in a genomic region homologous to chromosome A08 in B. rapa
by
Chang, Adrian
, Gossen, Bruce D.
, Lamara, Mebarek
, Peng, Gary
, Yu, Fengqun
, Hu, Hao
, Parkin, Isobel A. P.
, Wei, Yangdou
in
Agriculture
/ alleles
/ B7 antigen
/ Binding sites
/ Bioinformatics
/ Biomedical and Life Sciences
/ Black mustard
/ Brassica
/ Brassica nigra
/ Brassica rapa
/ Bulked segregant RNA-sequencing
/ Canola
/ Chromosomes
/ class
/ Clubroot
/ Disease control
/ DNA sequencing
/ dominant genes
/ Evolution
/ Gene mapping
/ Gene sequencing
/ Genes
/ Genetic aspects
/ Genetic research
/ genetic resistance
/ Genetics and crop biotechnology
/ Genomes
/ Genomics
/ Homology
/ Interleukin 1
/ Interleukins
/ Leucine
/ Life Sciences
/ Mapping
/ Marker-assisted selection
/ Markers
/ Nucleotides
/ Plant Sciences
/ Plasmodiophora brassicae
/ Proteins
/ Rape plants
/ Research Article
/ resistance genes
/ Ribonucleic acid
/ RNA
/ RNA sequencing
/ Segregation
/ Single-nucleotide polymorphism
/ species
/ Target recognition
/ Tree Biology
/ Whole genome sequencing
2019
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Clubroot resistance gene Rcr6 in Brassica nigra resides in a genomic region homologous to chromosome A08 in B. rapa
by
Chang, Adrian
, Gossen, Bruce D.
, Lamara, Mebarek
, Peng, Gary
, Yu, Fengqun
, Hu, Hao
, Parkin, Isobel A. P.
, Wei, Yangdou
in
Agriculture
/ alleles
/ B7 antigen
/ Binding sites
/ Bioinformatics
/ Biomedical and Life Sciences
/ Black mustard
/ Brassica
/ Brassica nigra
/ Brassica rapa
/ Bulked segregant RNA-sequencing
/ Canola
/ Chromosomes
/ class
/ Clubroot
/ Disease control
/ DNA sequencing
/ dominant genes
/ Evolution
/ Gene mapping
/ Gene sequencing
/ Genes
/ Genetic aspects
/ Genetic research
/ genetic resistance
/ Genetics and crop biotechnology
/ Genomes
/ Genomics
/ Homology
/ Interleukin 1
/ Interleukins
/ Leucine
/ Life Sciences
/ Mapping
/ Marker-assisted selection
/ Markers
/ Nucleotides
/ Plant Sciences
/ Plasmodiophora brassicae
/ Proteins
/ Rape plants
/ Research Article
/ resistance genes
/ Ribonucleic acid
/ RNA
/ RNA sequencing
/ Segregation
/ Single-nucleotide polymorphism
/ species
/ Target recognition
/ Tree Biology
/ Whole genome sequencing
2019
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Clubroot resistance gene Rcr6 in Brassica nigra resides in a genomic region homologous to chromosome A08 in B. rapa
Journal Article
Clubroot resistance gene Rcr6 in Brassica nigra resides in a genomic region homologous to chromosome A08 in B. rapa
2019
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Overview
Background
Clubroot, caused by
Plasmodiophora brassicae
Woronin, is a very important disease of
Brassica
species. Management of clubroot relies heavily on genetic resistance. In a cross of
Brassica nigra
lines PI 219576 (highly resistant, R) × CR2748 (highly susceptible, S) to clubroot, all F
1
plants were resistant to clubroot. There was a 1:1 ratio of R:S in the BC
1
and 3R:1S in the F
2
, which indicated that a single dominant gene controlled clubroot resistance in PI 219576. This gene was designated
Rcr6
. Mapping of
Rcr6
was performed using genome sequencing information from A-genome of
B. rapa
and B-genome of
B. nigra
though bulked segregant RNA sequencing (BSR-Seq) and further mapping with Kompetitive Allele Specific PCR (KASP) analysis.
Results
Reads of R and S bulks from BSR-Seq were initially aligned onto
B. rapa
(A-genome;
B. nigra
has the B-genome) where
Rcr6
was associated with chromosome A08. KASP analysis showed that
Rcr6
was flanked by SNP markers homologous to the region of 14.8–15.4 Mb of chromosome A08. There were 190 genes annotated in this region, with five genes (
Bra010552
,
Bra010588
,
Bra010589
,
Bra010590
and
Bra010663
) identified as encoding the toll-interleukin-1 receptor / nucleotide-binding site / leucine-rich-repeat (TIR-NBS-LRR; TNL) class of proteins. The reads from BSR-Seq were then aligned into a draft B-genome of
B. nigra
, where
Rcr6
was mapped on chromosome B3. KASP analysis indicated that
Rcr6
was located on chromosome B3 in a 0.5 Mb region from 6.1–6.6 Mb. Only one TNL gene homologous to the
B. rapa
gene
Bra010663
was identified in the target region. This gene is a likely candidate for
Rcr6
. Subsequent analysis of the
Rcr6
equivalent region based on a published
B. nigra
genome was performed. This gene is located into chromosome B7 of the published B-genome, homologous to
BniB015819
.
Conclusion
Rcr6
was the first gene identified and mapped in the B-genome of
Brassica
species. It resides in a genomic region homologous to chromosome A08 of A-genome. Based on this finding, it could possibly integrate into A08 of
B. napus
using marker assisted selection with SNP markers tightly linked to
Rcr6
developed in this study.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
Subject
/ alleles
/ Biomedical and Life Sciences
/ Brassica
/ Bulked segregant RNA-sequencing
/ Canola
/ class
/ Clubroot
/ Genes
/ Genetics and crop biotechnology
/ Genomes
/ Genomics
/ Homology
/ Leucine
/ Mapping
/ Markers
/ Proteins
/ RNA
/ Single-nucleotide polymorphism
/ species
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