Analyses of African common bean (Phaseolus vulgaris L.) germplasm using a SNP fingerprinting platform: diversity, quality control and molecular breeding

被引:0
|
作者
Bodo Raatz
Clare Mukankusi
Juan David Lobaton
Alan Male
Virginia Chisale
Berhanu Amsalu
Deidré Fourie
Floride Mukamuhirwa
Kennedy Muimui
Bruce Mutari
Susan Nchimbi-Msolla
Stanley Nkalubo
Kidane Tumsa
Rowland Chirwa
Mywish K. Maredia
Chunlin He
机构
[1] International Center for Tropical Agriculture (CIAT),Bean Program
[2] International Centre for Tropical Agriculture (CIAT),School of Environmental and Rural Sciences
[3] University of New England,Chitedze Research Station
[4] Department of Agricultural Research Services (DARS),Melkassa Agricultural Research Center
[5] Ethiopian Institute of Agricultural Research (EIAR),Misamfu Regional Research Station
[6] ARC-Grain Crops Institute,Crop Breeding Institute
[7] Rwanda Agriculture Board (RAB),Genotyping Support Services (GSS)
[8] Zambia Agriculture Research Institute (ZARI),undefined
[9] Department of Research and Specialist Services (DR&SS),undefined
[10] Sokoine University of Agriculture,undefined
[11] National Crops Resources Research Institute (NaCRRI)-Namulonge,undefined
[12] International Centre for Tropical Agriculture (CIAT),undefined
[13] Michigan State University,undefined
[14] Generation Challenge Programme (GCP),undefined
[15] Noble Research Institute,undefined
[16] LLC,undefined
来源
Genetic Resources and Crop Evolution | 2019年 / 66卷
关键词
DNA fingerprinting; SNP genotyping; Diversity analysis; Germplasm purity; Marker assisted selection;
D O I
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学科分类号
摘要
Common bean (Phaseolus vulgaris L.) is an important staple crop for smallholder farmers, particularly in Eastern and Southern Africa. To support common bean breeding and seed dissemination, a high throughput SNP genotyping platform with 1500 established SNP assays has been developed at a genotyping service provider which allows breeders without their own genotyping infrastructure to outsource such service. A set of 708 genotypes mainly composed of germplasm from African breeders and CIAT breeding program were assembled and genotyped with over 800 SNPs. Diversity analysis revealed that both Mesoamerican and Andean gene pools are in use, with an emphasis on large seeded Andean genotypes, which represents the known regional preferences. The analysis of genetic similarities among germplasm entries revealed duplicated lines with different names as well as distinct SNP patterns in identically named samples. Overall, a worrying number of inconsistencies was identified in this data set of very diverse origins. This exemplifies the necessity to develop and use a cost-effective fingerprinting platform to ensure germplasm purity for research, sharing and seed dissemination. The genetic data also allows to visualize introgressions, to identify heterozygous regions to evaluate hybridization success and to employ marker-assisted selection. This study presents a new resource for the common bean community, a SNP genotyping platform, a large SNP data set and a number of applications on how to utilize this information to improve the efficiency and quality of seed handling activities, breeding, and seed dissemination through molecular tools.
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页码:707 / 722
页数:15
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