Chromosome evolution and the genetic basis of agronomically important traits in greater yam
0301 basic medicine
570
Science
Quantitative Trait Loci
Veterinary and Food Sciences
VIRUS DISEASES
Article
Chromosomes
DIOSCOREA-ALATA L
03 medical and health sciences
name=General Biochemistry,Genetics and Molecular Biology
Genetics
Humans
580
2. Zero hunger
Agricultural
0303 health sciences
/dk/atira/pure/subjectarea/asjc/1300/1300
agronomy
Dioscorea
Human Genome
Q
GENOME SEQUENCE
Biological Sciences
15. Life on land
Horticultural Production
Plant Breeding
Plant Tubers
name=General Physics and Astronomy
orphan crops
Dioscorea/genetics
/dk/atira/pure/subjectarea/asjc/3100/3100
Generic health relevance
Quantitative Trait Loci/genetics
name=General Chemistry
/dk/atira/pure/subjectarea/asjc/1600/1600
DOI:
10.1038/s41467-022-29114-w
Publication Date:
2022-04-14T10:02:54Z
AUTHORS (33)
ABSTRACT
AbstractThe nutrient-rich tubers of the greater yam,Dioscorea alataL., provide food and income security for millions of people around the world. Despite its global importance, however, greater yam remains an orphan crop. Here, we address this resource gap by presenting a highly contiguous chromosome-scale genome assembly ofD. alatacombined with a dense genetic map derived from African breeding populations. The genome sequence reveals an ancient allotetraploidization in theDioscorealineage, followed by extensive genome-wide reorganization. Using the genomic tools, we find quantitative trait loci for resistance to anthracnose, a damaging fungal pathogen of yam, and several tuber quality traits. Genomic analysis of breeding lines reveals both extensive inbreeding as well as regions of extensive heterozygosity that may represent interspecific introgression during domestication. These tools and insights will enable yam breeders to unlock the potential of this staple crop and take full advantage of its adaptability to varied environments.
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