@ARTICLE{TreeBASE2Ref27363,
author = {Kebede Tadesse Muleta and Matthew N Rouse and Shery Rynearson and Xianming Chen and Bedada G Buta and Michael Pumphrey},
title = {Characterization of molecular diversity and genome-wide mapping of loci associated with resistance to stripe rust and stem rust in Ethiopian bread wheat accessions},
year = {2017},
keywords = {Bread wheat, stripe rust, stem rust, genetic resistance, genetic diversity, association mapping},
doi = {},
url = {http://},
pmid = {},
journal = {BMC Plant Biology},
volume = {},
number = {},
pages = {},
abstract = {Background: The narrow genetic basis of resistance in modern wheat cultivars and the strong selection response of pathogen populations have been responsible for periodic and devastating epidemics of the wheat rust diseases. Characterizing new sources of resistance and incorporating multiple genes into elite cultivars is the most widely accepted current mechanism to achieve durable varietal performance against changes in pathogen virulence. Here, we report a high-density molecular characterization and genome-wide association study (GWAS) of stripe rust and stem rust resistance in 190 Ethiopian bread wheat lines based on phenotypic data from multi-environment field trials and seedling resistance screening experiments. A total of 24,281 single nucleotide polymorphism (SNP) markers filtered from the wheat 90K iSelect genotyping assay was used to survey Ethiopian germplasm for population structure, genetic diversity and marker-trait associations.
Results: Upon screening for field resistance to stripe rust in the Pacific Northwest of the United States and Ethiopia over multiple growing seasons; and against multiple races of stripe rust and stem rust at seedling stage, eight accessions displayed resistance to all tested races of stem rust and field resistance to stripe rust at all environments. Our GWAS results show 15 loci were significantly associated with seedling and adult plant resistance to stripe rust at false discovery rate (FDR)-adjusted probability (P) <0.10. GWAS also detected 9 additional genomic regions significantly associated (FDR-adjusted P <0.10) with seedling resistance to stem rust in the Ethiopian wheat accessions. Many of the identified resistance loci were mapped close to previously identified rust resistance genes; however, three on the short arms of chromosomes 5A and 7B for stripe rust resistance and two on chromosomes 3B and 7B for stem rust resistance may be novel.
Conclusion: Our results demonstrate that considerable genetic variation resides within the landrace accessions that can be utilized to broaden the genetic base of rust resistance in wheat breeding germplasm. The molecular markers identified in this study should be useful in efficiently targeting the associated resistance loci in marker-assisted breeding for rust resistance in Ethiopia and other countries.
}
}
Taxa for matrix 58070 of Study 21219

Citation title:
"Characterization of molecular diversity and genome-wide mapping of loci associated with resistance to stripe rust and stem rust in Ethiopian bread wheat accessions".

Study name:
"Characterization of molecular diversity and genome-wide mapping of loci associated with resistance to stripe rust and stem rust in Ethiopian bread wheat accessions".

This study is part of submission 21219
(Status: Published).
Taxa
Return to matrix row view
ID |
Taxon Label |
NCBI taxid |
uBIO namebankID |
4365873 |
Auriculariopsis ampla AF141873_FCUG_1803 |
97359
|
3066109
|
4366220 |
Auriculariopsis ampla MH013190_ALV14009 |
97359
|
3066109
|
4365933 |
Fistulina antarctica DQ486702_CBS701.85 |
234802
|
3098163
|
4366314 |
Porodisculus pendulus AY572009 |
181680
|
3277068
|
4366247 |
Schizophyllum commune AF348142_CBS_340.81 |
5334
|
3109865
|
4365898 |
Schizophyllum commune AF350925_CBS_405.96 |
5334
|
3109865
|
4366237 |
Schizophyllum commune MH854681_CBS_103.20 |
5334
|
3109865
|
4365974 |
Schizophyllum commune MH857703_CBS_227.57 |
5334
|
3109865
|
4365995 |
Schizophyllum commune MH857808_CBS_342.58 |
5334
|
3109865
|
4365907 |
Schizophyllum commune MH859297_CBS_249.69 |
5334
|
3109865
|
4366183 |
Schizophyllum commune MH861350_CBS_340.81 |
5334
|
3109865
|
4366219 |
Schizophyllum commune MH861655_CBS_579.83 |
5334
|
3109865
|
4366259 |
Schizophyllum commune MH862583_CBS_405.96 |
5334
|
3109865
|
4366418 |
Schizophyllum commune MH863418_CBS_124811 |
5334
|
3109865
|
4366313 |
Schizophyllum fasciatum L43385_CBS_267.60 |
160053
|
3109613
|
4365917 |
Schizophyllum radiatum AY571060_CBS_301.32 |
181676
|
3107612
|
4366142 |
Schizophyllum radiatum MH855328_CBS_301.32 |
181676
|
3107612
|
4366526 |
Schizophyllum sp. CSN1160 ITS4 CS30 |
|
|
4365903 |
Schizophyllum sp. PMM2087 ITS1 |
|
|
4366498 |
Schizophyllum sp. PMM2088 ITS1 |
|
|
4365982 |
Schizophyllum umbrinum AF249391_FL02.1 |
142141
|
3107731
|
4366235 |
Schizophyllum umbrinum HQ377288_UFMGCB_1835 |
142141
|
3107731
|
4366158 |
Schizophyllum umbrinum KR261612_BDNA2316 |
142141
|
3107731
|
4366307 |
Schizophyllum umbrinum MK578040_CCG019 |
142141
|
3107731
|
4365916 |
Schizophyllum umbrinum MK578041_CCG020 |
142141
|
3107731
|